Parkinson's disease is a progressive disorder caused by degeneration of nerve cells in the part of the brain that controls movement. The diagnosis of Parkinson's disease depends on the presence of one or more of the four most common motor symptoms of the disease, namely: resting tremor, slow movement, rigidity and postural instability. Secondary and non motor symptoms are increasingly recognized by doctors as important to treating Parkinson’s disease.
Showing posts with label PD medications. Show all posts
Showing posts with label PD medications. Show all posts
Saturday, October 29, 2011
THE FIRST PINOY PD CONVENTION, A SUCCESS!
The first annual convention of the Pinoy Parkinson's Disease (Pinoy PD) on Healing of Parkinson's Disease thru G-MEN (God, Medicine, Exercise and Nutrition) has been successfully launched last October 22, 2011 at the Multi-purpose Hall, Paseo Parkview Suites, Makati City. It was also the Feast Day of Blessed John Paul II.
Father Joey Paras, SDB, officiated the Thanksgiving Mass with Miss Rowena Bicaldo as Lector while the trio of Eufe and Mary Rose Tantia and Marie Ness Cabahug led the choir. In his homily, Fr. Paras emphasized the virtues of Blessed John Paul II and the latter's love for the Blessed Virgin Mary. He said that the family and the caregivers of those with Parkinson's disease were in a privileged position because they can see the face of Jesus everyday in the face of those suffering from PD.
His Excellency, Most Reverend Patricio A. Buzon, SDB, and Chairman of the Episcopal Commission on Health Care conveyed his inspirational message from the Diocese of Kabankalan, Kabankalan City, Negros Occidental. He stated that the healing of Parkinson's disease resides in God and in Man. "God is the source of life. Life is a gift from above. Man is also another source of healing. Life is also a responsibility. We have our own part to play for healing to happen. The human counterpart of healing is thru MEN - Medicine, Exercise and Nutrition. Do your part and God will do His."
Brother Michael Angelo F. Lobrin gave an animated talk on Spiritual Healing of Parkinson's Disease. He is a graduate of Bachelor of Arts, Major in Classical Philosophy in San Carlos Seminary Guadalupe. He has obtained units in Master of Arts in Theology from the same institution. He was a professor of Theology at the De La Salle University, Manila Doctors College and St. Paul University, Quezon City. He is currently a professor of Philosophy at the Entrepreneur School of Asia in Quezon City and serves as Adviser for Religious Affairs to a number of local and national politicians. Brother Michael is – in more ways than one – a prolific and sought-after inspirational speaker. He is also the best selling author of “Laugh with God Today!”
After his talk, Brother Michael Angelo prayed over those with Parkinson's disease. He also loaned the relic of Blessed John Paul II so the participants of the convention can touch it after reciting the "Prayer for Healing of Parkinson's Disease through the Intercession of Blessed John Paul II.
Read more ....www.pinoyparkinsonsdisease.blogspot.com
Wednesday, October 12, 2011
HEALING OF PARKINSON'S DISEASE THRU MEDICINE (COMT INHIBITORS)
It is a known fact that Parkinson’s disease has no cure. In the early stages of uncomplicated Parkinson’s disease, use of pharmacological agents is still the primary mode of treatment. One of the drugs being used in the treatment of PD is the catechol- O - methyltransferase (COMT) inhibitors like entacapone and tolcapone.
MECHANISM OF ACTION:
COMT INHIBITORS reduce the metabolism of levodopa, extending its plasma half - life and prolonging the action of each levodopa dose. Therapeutic dose of entacapone only acts peripherally and does not alter cerebral COMT activity. It is administered together with each dose of levodopa and is not approved for use in early (uncomplicated) and non- fluctuating PD patients.
SYMPTOMATIC TREATMENT:
SYMPTOMATIC TREATMENT:
Symptomatic treatment of parkinsonism using COMT inhibitors as monotherapy is not applicable hence COMT inhibitors should always be given with levodopa. In some studies done on COMT inhibitors, all trials showed a small benefit in the control of the symptoms of parkinsonism, mostly reflected in the activities of daily living but the results were not consistent.
When the initiation of treatment with levodopa/carbidopa/entacapone was compared to that with levodopa/carbidopa, no difference was found between the two treatment arms as to the prevention of motor fluctuations and dyskinesia. There are no studies available on the symptomatic treatment of non-motor problems.
SAFETY:
COMT inhibitors increase levodopa bioavailability, so they can increase the incidence of dopaminergic adverse reactions, including nausea, and cardiovascular and neuropsychiatric complications. Diarrhea and urine discoloration are the most frequently reported non-dopaminergic adverse reactions. The combination with selective MAO-B inhibitors (selegiline) is allowed if the dose of MAO-B inhibitor does not exceed the recommended dose.
ENTACAPONE (COMTAN)
The commercially available preparation of a COMT inhibitor in the Philippines is ENTACAPONE (COMTAN) manufactured by NOVARTIS HEALTHCARE. The indications, dosage, manner of administration, contraindication and special precautions are the following:
INDICATIONS: Adjunct to levodopa/benserazide or levodopa/carbidopa treatment in patients with Parkinson's disease and end-of-dose motor fluctuations, who cannot be stabilized on those combinations.
DOSAGE:
One 200-mg tab with each levodopa or dopa decarboxylase inhibitor dose. Maximum: 2 g/day
ADMINISTRATION:
May be taken with or without meals.
CONTRAINDICATIONS: Pregnancy and lactation
Pheochromocytoma
Concommitant use with nonselective MAO inhibitors (MAO-A and MAO-B) or with a selective MAO-A plus a selective MAO-B inhibitor.
Liver impairment
History of neuroleptic malignant syndrome &/or nontraumatic rhabdomyolysis
Pheochromocytoma
Concommitant use with nonselective MAO inhibitors (MAO-A and MAO-B) or with a selective MAO-A plus a selective MAO-B inhibitor.
Liver impairment
History of neuroleptic malignant syndrome &/or nontraumatic rhabdomyolysis
SPECIAL PRECAUTIONS:
Dosage of L-dopa and other antiparkinsonism drugs(e.g. dopamine agonists) may need to be adjusted.
L-dopa induced orthostatic hypotension may be aggravated.
Effects of medicinal products metabolized by catechol-O-methyl transferase may be potentiated.
Caution when discontinuing treatment, when driving or operating machines due to potential sudden sleep onset episodes.
Dosage of L-dopa and other antiparkinsonism drugs(e.g. dopamine agonists) may need to be adjusted.
L-dopa induced orthostatic hypotension may be aggravated.
Effects of medicinal products metabolized by catechol-O-methyl transferase may be potentiated.
Caution when discontinuing treatment, when driving or operating machines due to potential sudden sleep onset episodes.
To get an update in the diagnosis and management of Parkinson's disease, Pinoy Parkinson's Disease or Pinoy PD is holding its First Annual Convention on October 22, 2011 in Makati City.
P.S. FINAL EXTENSION OF FREE REGISTRATION! Register for FREE on or before OCTOBER 15, 2011.
P.P.S. Register for a GUARANTEED SEAT and SLOT in the workshop to a LIMITED NUMBER of participants on or before OCTOBER 15, 2011 including LUNCH, 2 SNACKS and SEMINAR KIT.
P.P.P.S. Submit REGISTRATION DETAILS (Name, Age, Contact number and E-mail address) on or before OCTOBER 15, 2011 to avail of FREE REGISTRATION and send via email to drajoy31@yahoo.com / drajoy31@gmail.com
Tuesday, September 27, 2011
HEALING OF PARKINSON'S DISEASE THRU MEDICINE (DOPAMINE AGONIST)
It is a known fact the Parkinson’s disease or PD has no cure. In the early stages of uncomplicated Parkinson’s disease, the use of pharmacological agents is still the primary mode of treatment and also the most common therapy for PD. Aside from levodopa, dopamine agonists are the other recommended antiparkinson drugs during the early stages of the disease. There are 3 dopamine agonists which are commercially available in the Philippines, namely:
BROMOCRIPTINE MESYLATE
NOVARTIS HEALTHCARE
[ZUELLIG] {P141.50}
PRAMIPEXOLE diHCl
(SIFROL)
BOEHRINGER INGELHEIM
[METRO DRUG]
{P151.00} of 1 mg/tab
PIRIBEDIL
(TRIVASTAL RETARD 50)
SERVIER
[ZUELLIG]
{P38.50}
LEGEND:
GENERIC NAME
(BRAND NAME)
MANUFACTURER
[DISTRIBUTOR]
{SUGGESTED RETAIL PRICE}
However, I will only discuss one of the three dopamine agonists , PRAMIPEXOLE, which is a non-ergot derivative.
What are the INDICATIONS for the use of pramipexole?
1. Treatment of signs and symptoms of idiopathic Parkinson's disease
2. As monotherapy or in combination with levodopa
3. Symptomatic treatment of idiopathic restless leg syndrome
What is the usual DOSAGE of pramipexole?:
1. Parkinson's disease
Week 1 - 0.125 mg 3x a day
Week 2 - 0.25 mg 3x a day
Week 3 - 0.5 mg 3x a day
Maximum 4.5 mg/day
2. Restless Leg Syndrome
Step 1: 0.125 mg
Step 2: 0.25 mg
Step 3: 0.5 mg
Step 4: 0.75 mg (Maximum dose)
All doses taken once daily 2-3 hours before bedtime. If needed, titrate to each step every 4-7 days.
How do you ADMINISTER oral Pramipexole?
Pramipexole may also be taken with meals to minimize gastrointestinal upset.
What are the SPECIAL PRECAUTIONS in the use of parmipexole?
The dose must be reduced in patients with renal impairment or creatinine clearance (CrCl) of less
than 50 ml/min.
What are the ADVERSE REACTIONS of pramipexole? (DiCoFISHPEN)
1. Dizziness
2. Dyskinesia
3. Constipation
4. Confusion
5. Falling asleep during activities of daily living
6. Insomnia
7. Somnolence
8. Hallucination
9. Peripheral edema
10. Nausea
What are the PREPARATIONS of pramipexole?
Pramipexole is available in either 250 mcg/tab or 1 mg/tab.
To learn more about the recent updates in the diagnosis and management of Parkinson's disease, attend the first annual convention of Pinoy PD, entitled: "HEALING OF PARKINSON'S DISEASE THRU G-MEN (GOD, MEDICINE, EXERCISE and NUTRITION).
P.S. Register for FREE on or before September 30, 2011.
P.P.S. Register for a GUARANTEED SEAT and SLOT in the workshop to a LIMITED NUMBER of participants on or before September 30, 2011.
P.P.P.S. Submit REGISTRATION DETAILS (Name, Age, Contact number and E-mail address) on or before September 30, 2011 to avail of FREE REGISTRATION and send via email to drajoy31@yahoo.com / drajoy31@gmail.com
Sunday, September 4, 2011
HEALING OF PARKINSON'S DISEASE THRU MEDICATIONS (LEVODOPA)
The most common treatment for Parkinson's disease is the use of medications. The goal of therapy is to provide the brain chemical (neurotransmitter), dopamine, in adequate amounts so as to prevent the symptoms of Parkinson's disease. An antiparkinson drug is usually started when symptoms become disabling or disrupt a person's daily activities.
There are specific instructions in taking the drugs for Parkinson's disease. It is important to follow your doctor's prescriptions about how and when to take your drugs so that they will be effective and safe. You cannot increase, decrease or change the drug without your doctor's knowledge because it may cause more problems in the control of symptoms.
Therapy depends on a person's symptoms and age and how the person responds to a certain drug. Medications often improve symptoms, but they also may cause side effects. It may take awhile to find the best combination of drugs for each particular individual. Several drugs may be used to treat Parkinson's disease at different stages of the disease.
The treatment of early Parkinson's starts with one or more of these medicines, which are commercially available in the Philippines:
Levodopa and carbidopa
Dopamine agonists (pramipexole, bromocriptine mesylate, piribedil)
COMT inhibitors (entacapone)
MAO-B inhibitors (selegiline)
Amantadine
Anticholinergic agents (biperiden Hcl)
Levodopa is thought to be the most effective drug for controlling symptoms of Parkinson's disease and for many years was the preferred drug for treating newly diagnosed patients. However, long-term use of levodopa at high dosages often leads to motor complications that can be difficult to manage. The decision about whether it is better to use levodopa or other antiparkinson drug like a dopamine agonist as the first treatment has not been fully resolved. The decision on the drug of choice will most likely be different for each person. It is imperative to consult your doctor to find the medicines that work the best for you.
LEVODOPA/CARBIDOPA
(SINEMET) MSD/INVIDA [ZUELLIG] {P 49.00}
(TIDOMET/TIDOMET CR) TORRENT [METRO DRUG] {P 49.75}
LEGEND: (BRAND NAME) MANUFACTURER [DISTRIBUTOR] {SRP: levodopa 100mg/carbidopa 25 mg TAB}
PREPARATION/CONTENTS per tablet:
Levodopa 100 mg/carbidopa 25 mg
Levodopa 250 mg/carbidopa 25 mg
Levodopa 200 mg/carbidopa 50 mg(CR) or Controlled Release
INDICATIONS: Treatment of symptoms of idiopathic Parkinson's disease(paralysis agitans) Treatment of symptoms of postencephalitic parkinsonism, which follows injury to nervous system by carbon monoxide and manganese intoxication Patients who are taking vitamin preparations containing vit. B6 Reduce "offtime" in patients previously treated with levodopa/ decarboxylase inhibitor preparations
DOSAGE:
FOR SINEMET: Sinemet 25/100 1 tab TID. Maximum: 8 tabs Sinemet 25/250 1/2 tab once-BID. Maximum: 8 tabs Transfer from levodopa: Stop levodopa 12 hr before Sinemet is started (24 hr for CR preparation) Patient taking > 1,500 mg levodopa: Initially 1 tab Sinemet TID-QID Patient taking < 1,500 mg levodopa: Initially 1 tab Sinemet 25/100 TID-QID. Sinemet CR 1 CR tab BID-TID, maximum dose 600 mg/day of levodopa or to be given at intervals < 6 hrs.
FOR TIDOMET: Individualized dosage
ADMINISTRATION OF ORAL DOSAGE/PRE- & POST-PRANDIAL ADVICE: Take on an empty stomach if possible. If GI distress occurs, take with food. CT tab: Swallow whole, do not chew/crush. 50/200 CR tab may be halved along the score-line only.
CONTRAINDICATIONS:
Narrow-angle glaucoma
Undiagnosed skin lesions or history of melanoma
Hypersensitivity to any component of this product
SPECIAL PRECAUTIONS: Treatment of drug-induced extrapyramidal reactions. Monitor for melanomas frequently and on a regular basis. Perform periodic skin exam. Patients previously treated with levodopa alone. CV disease including history of MI or arrhythmias or pulmonary disease, bronchial asthma, renal, hepatic or endocrine disease, history of psychoses or convulsions, or wide-angle glaucoma. History of active peptic ulcer. Absorption of L-dopa may be impaired in some patients on a high protein diet. Not recommended for children < 18 yrs. Pregnancy, lactation.
ADVERSE REACTIONS:
SINEMET: Dyskinesia including choreiform, dystonic and other involuntary movements and nausea. Pathological gambling, hypersexuality and increased libido. Very rarely, excessive daytime somnolence and sudden sleep onset episodes, paresthesia, psychotic episodes. Muscle twitching and blepharospasm. Syncope, chest pain, anorexua, CV, GI, hematologic, hypersensitivity, nervous/psychiatric, resp., dermatological and urogenital effects.
TIDOMET Choreiform, dystonia, involuntary movements, mental changes, depression w/ or w/o development of suicidal tendencies and dementia. Nausea, orthostatic hypotension, brsadykinetic episodes, anorexia, vomiting and dizziness.
DRUG INTERACTIONS: Discontinue MAOIs 2 weeks prior to therapy with Sinemet(except low doses of selective MAO-B inhibitors), tricyclic antidepressants, antihypertensives, phenothiazines, butyrophenones, phenytoin, papavarine, INH.
REFERENCES:
1. http://www.webmd.com/parkinsons-disease/guide/parkinsons-disease-medications
2. MIMS.com
There are specific instructions in taking the drugs for Parkinson's disease. It is important to follow your doctor's prescriptions about how and when to take your drugs so that they will be effective and safe. You cannot increase, decrease or change the drug without your doctor's knowledge because it may cause more problems in the control of symptoms.
Therapy depends on a person's symptoms and age and how the person responds to a certain drug. Medications often improve symptoms, but they also may cause side effects. It may take awhile to find the best combination of drugs for each particular individual. Several drugs may be used to treat Parkinson's disease at different stages of the disease.
The treatment of early Parkinson's starts with one or more of these medicines, which are commercially available in the Philippines:
Levodopa and carbidopa
Dopamine agonists (pramipexole, bromocriptine mesylate, piribedil)
COMT inhibitors (entacapone)
MAO-B inhibitors (selegiline)
Amantadine
Anticholinergic agents (biperiden Hcl)
Levodopa is thought to be the most effective drug for controlling symptoms of Parkinson's disease and for many years was the preferred drug for treating newly diagnosed patients. However, long-term use of levodopa at high dosages often leads to motor complications that can be difficult to manage. The decision about whether it is better to use levodopa or other antiparkinson drug like a dopamine agonist as the first treatment has not been fully resolved. The decision on the drug of choice will most likely be different for each person. It is imperative to consult your doctor to find the medicines that work the best for you.
LEVODOPA/CARBIDOPA
(SINEMET) MSD/INVIDA [ZUELLIG] {P 49.00}
(TIDOMET/TIDOMET CR) TORRENT [METRO DRUG] {P 49.75}
LEGEND: (BRAND NAME) MANUFACTURER [DISTRIBUTOR] {SRP: levodopa 100mg/carbidopa 25 mg TAB}
PREPARATION/CONTENTS per tablet:
Levodopa 100 mg/carbidopa 25 mg
Levodopa 250 mg/carbidopa 25 mg
Levodopa 200 mg/carbidopa 50 mg(CR) or Controlled Release
INDICATIONS: Treatment of symptoms of idiopathic Parkinson's disease(paralysis agitans) Treatment of symptoms of postencephalitic parkinsonism, which follows injury to nervous system by carbon monoxide and manganese intoxication Patients who are taking vitamin preparations containing vit. B6 Reduce "offtime" in patients previously treated with levodopa/ decarboxylase inhibitor preparations
DOSAGE:
FOR SINEMET: Sinemet 25/100 1 tab TID. Maximum: 8 tabs Sinemet 25/250 1/2 tab once-BID. Maximum: 8 tabs Transfer from levodopa: Stop levodopa 12 hr before Sinemet is started (24 hr for CR preparation) Patient taking > 1,500 mg levodopa: Initially 1 tab Sinemet TID-QID Patient taking < 1,500 mg levodopa: Initially 1 tab Sinemet 25/100 TID-QID. Sinemet CR 1 CR tab BID-TID, maximum dose 600 mg/day of levodopa or to be given at intervals < 6 hrs.
FOR TIDOMET: Individualized dosage
ADMINISTRATION OF ORAL DOSAGE/PRE- & POST-PRANDIAL ADVICE: Take on an empty stomach if possible. If GI distress occurs, take with food. CT tab: Swallow whole, do not chew/crush. 50/200 CR tab may be halved along the score-line only.
CONTRAINDICATIONS:
Narrow-angle glaucoma
Undiagnosed skin lesions or history of melanoma
Hypersensitivity to any component of this product
SPECIAL PRECAUTIONS: Treatment of drug-induced extrapyramidal reactions. Monitor for melanomas frequently and on a regular basis. Perform periodic skin exam. Patients previously treated with levodopa alone. CV disease including history of MI or arrhythmias or pulmonary disease, bronchial asthma, renal, hepatic or endocrine disease, history of psychoses or convulsions, or wide-angle glaucoma. History of active peptic ulcer. Absorption of L-dopa may be impaired in some patients on a high protein diet. Not recommended for children < 18 yrs. Pregnancy, lactation.
ADVERSE REACTIONS:
SINEMET: Dyskinesia including choreiform, dystonic and other involuntary movements and nausea. Pathological gambling, hypersexuality and increased libido. Very rarely, excessive daytime somnolence and sudden sleep onset episodes, paresthesia, psychotic episodes. Muscle twitching and blepharospasm. Syncope, chest pain, anorexua, CV, GI, hematologic, hypersensitivity, nervous/psychiatric, resp., dermatological and urogenital effects.
TIDOMET Choreiform, dystonia, involuntary movements, mental changes, depression w/ or w/o development of suicidal tendencies and dementia. Nausea, orthostatic hypotension, brsadykinetic episodes, anorexia, vomiting and dizziness.
DRUG INTERACTIONS: Discontinue MAOIs 2 weeks prior to therapy with Sinemet(except low doses of selective MAO-B inhibitors), tricyclic antidepressants, antihypertensives, phenothiazines, butyrophenones, phenytoin, papavarine, INH.
REFERENCES:
1. http://www.webmd.com/parkinsons-disease/guide/parkinsons-disease-medications
2. MIMS.com
Monday, August 1, 2011
MEDICAL TREATMENT OF PARKINSON'S DISEASE
Although it is a known fact the Parkinson’s disease has no cure, through the years, there have been various recommendations in the treatment of PD. Some studies show promising results but others have unacceptable side effects, complications and even no therapeutic value. Thus, an international task force of the Movement Disorder Society conducted a systematic review of all articles and clinical reports published until September 2009 which has been the basis for the 2010 update.
An evidenced based scientific explanation is still the most reliable and acceptable standard for patient care. However, the physician is still expected to exercise his own clinical judgment as to the best treatment options for a PD patient based on the latter’s perception of his own impairment and disability
In the early stages of uncomplicated Parkinson’s disease, use of pharmacological agents is still the primary mode of treatment. The different drugs used in the therapy of PD will be discussed based on the mechanism of action (MOA), symptomatic treatment (monotherapy), adjunctive therapy, prevention of motor complications, symptomatic treatment of non-motor problems and safety.
These are the different pharmacological agents available in the market, namely:
1. LEVODOPA
2. ANTICHOLINERGICS
3. AMANTADINE
4. MAO-B INHIBITORS
5. COMT INHIBITORS
6. DOPAMINE AGONISTS
LEVODOPA
Levodopa is the most effective treatment to improve the motor symptoms during the initial stages of PD. It is available in 2 formulations, namely (1) standard and (2) controlled-release (CR).
Mechanism of Action:
The standard levodopa formulation exerts its symptomatic benefits through conversion to dopamine, and is routinely administered in combination with a decarboxylase inhibitor (benserazide, carbidopa) to prevent its peripheral conversion to dopamine with the resultant nausea and vomiting. Levodopa passes the blood – brain barrier – in contrast to dopamine. It has a short half - life, which eventually results in short - duration responses with a wearing - off (end- of- dose) effect. Controlled - release (CR) formulations aim to prolong the effect of a single dose of levodopa, and reduce the number of daily doses.
Symptomatic Treatment of Parkinsonism ( monotherapy):
The effiacy of levodopa is firmly established from more than 30 years of use in clinical practice. Sytematic reviews show that levodopa monotherapy, in general, produced lower UPDRS (Unified Parkinson’s Disease Rating Scale) scores than cabergoline, pramipexole, ropinirole, bromocriptine, lisuride, and pergolide. Standard and CR levodopa maintain a similar level of control in de novo PD after 5 years and also in more advanced PD with a duration of about 10 years and without motor fluctuations.
Adjunctive Therapy:
Supplementation of levodopa to other antiparkinsonian medications in stable PD is common clinical practice to improve symptomatic control.
Prevention of Motor Complications:
The motor complications like fluctuations and dyskinesia are actually caused by levodopa. Usually, levodopa is started three times daily, which offers symptomatic control throughout the day, but after several months or years of chronic treatment, these motor complications may arise. However, by carefully shortening the dose interval to compensate for shortening of the duration of effect of each levodopa dose (wearing - off), and by reducing the dose of each levodopa intake to reduce the magnitude of the effect (peak dose dyskinesia), the clinical emergence of these motor problems may be postponed. CR levodopa has no significant preventive effect on the incidence of motor fluctuations or dyskinesia, as compared with standard levodopa.
Symptomatic Treatment of Non-motor Problems:
Off - period psychiatric symptoms (anxiety, panic attacks, depression) and other non - motor symptoms (drenching sweats, pain, fatigue, and akathisia) may be alleviated by modifying the treatment schedule of levodopa.
Safety:
Peripheral side effects of levodopa include gastrointestinal and cardiovascular dysfunction. Central adverse effects include levodopa motor problems such as fluctuations, dyskinesia, and dystonia, and psychiatric side effects such as confusion, hallucinations, and sleep disorders. There is a 40 % likelihood of developing motor fluctuations and dyskinesias after 4 – 6 years of levodopa therapy and up to 80-90% in later years. Neuropsychiatric complications occur in less than 5% of de novo patients on levodopa monotherapy.
ANTICHOLINERGICS (Bornaprine, Benzhexol, Benzotropine, Biperiden)
Mechanism of Action:
Anticholinergics are believed to act by correcting the disequilibrium between striatal dopamine and acetylcholine neurotransmission. Some anticholinergics, e.g. benzotropine, can also block dopamine uptake in central dopaminergic neurons. The anticholinergics used to treat PD specifically block muscarinic receptors.
Symptomatic Treatment of Parkinsonism (monotherapy):
The results are consistent with reviews concluding that anticholinergics have only a small effect on PD symptoms, and that evidence for a special effect on tremor is inconclusive.
Adjunctive Therapy:
The two reviews indicate that adjunctive anticholinergics have only a minor effect on PD symptoms in patients on levodopa therapy, and that the tremor - specific data are inconclusive.
Prevention of Motor Complications:
No studies are available.
Symptomatic Treatment of Non- motor Problems:
Because of the risk of side effects, centrally acting anticholinergics are usually not advised for the therapy of non - motor, i.e. autonomic, dysfunctions.
Safety:
The clinical use of anticholinergics has been limited by their side- effect profiles and contraindications. The most commonly reported side effects are blurred vision,urinary retention, nausea, constipation (rarely leading to paralytic ileus), and dry mouth. The incidence of reduced sweating, particularly in those patients on neuroleptics, can lead to fatal heat stroke. Anticholinergics are contraindicatedin patients with narrow-angle glaucoma, tachycardia, hypertrophy of the prostate, gastrointestinal obstruction, and megacolon. Impaired mental function (mainly immediate memory and memory acquisition) and acute confusional state are a well documented central side effect that resolves after drug withdrawal. Therefore, if dementia is present, the use of anticholinergics is contraindicated. The abrupt withdrawal of anticholinergics may lead to a rebound effect with marked deterioration of parkinsonism. Consequently, anticholinergics should be discontinued gradually and with caution.
AMANTADINE
Mechanism of Action:
The mechanism of action of amantadine appears to be multiple. A blockade of NMDA glutamate receptors and an anticholinergic effect are proposed, whereas other evidence suggests an amphetamine - like action to release presynaptic dopamine stores.
Symptomatic Treatment of Parkinsonism (monotherapy):
Some studies and reviews show that amantadine induces symptomaticimprovement.
Adjunctive Therapy:
The addition of amantadine to anticholinergic agents is superior to placebo, with the improvement more pronounced in severely affected patients. Over 9 weeks, amantadine was beneficial as an adjunctive treatment to levodopa with a more noticeable improvement in patients on low levodopa doses .Together with the results of low class evidence studies, data suggest that amantadine is probably effective as adjunct therapy, with an unproven long - term duration of effect.
Prevention of Motor Complications:
No studies available.
Symptomatic Treatment of Non- motor Problems:
Not applicable.
Safety:
Side effects are generally mild, most frequently including dizziness, anxiety, impaired coordination and insomnia ( > 5%), nausea and vomiting (5-10%), peripheral distal edema (unresponsive to diuretics), and headache, nightmares, ataxia, confusion/agitation, drowsiness, constipation/diarrhoea, anorexia, xerostomia, and livedo reticularis ( < 5%). Less common side effects include psychosis, abnormal thinking, amnesia, slurred speech, hyperkinesia, epileptic seizures (rarely, and at higher doses), hypertension, urinary retention, decreased libido, dyspnea, rash, and orthostatic hypotension (during chronic administration).
MAO-B INHIBITORS (Selegiline and Rasagiline)
Mechanism of Action:
Selegiline and rasagiline inhibit the action of monoamine oxidase isoenzyme type B (MAO - B). MAO - B inhibition prevents the breakdown of dopamine, producing greater dopamine availability. Mechanisms besides MAO-B inhibition may also contribute to the clinical effects. Unlike selegiline, rasagiline is not metabolized to amphetamine, and has no sympathomimetic activity.
Symptomatic Treatment of Parkinsonism (monotherapy):
Five of six studies with a typical follow-up period of 3 - 12 months and a meta-analysis showed a small symptomatic effect of selegiline monotherapy. Two large scale placebo - controlled trials with rasagiline monotherapy in early PD with a follow-up of 6 – 9 months demonstrated consistent and significant results for a modest symptomatic benefit of early use of 1 mg and 2 mg/daily to early de novo PD patients.
Adjunctive Therapy:
The addition of selegiline to other antiparkinsonian therapies (mainly levodopa), showed no consistent beneficial effect on the core symptoms of PD in non-fluctuating patients. Rasagiline has not been studied in this context.
Prevention of Motor Complications:
Selegiline has shown no effect in preventing motor fluctuations including wearing- off, ON– OFF fluctuations, and dyskinesia. Rasagiline has not been studied in this context.
Symptomatic Treatment of Non-motor Problems:
A study detected no effect of selegiline on depression in PD. MAO - B inhibitors have not been investigated for the treatment of other non-motor problems.
Safety:
Like any dopaminergic drug, MAO - B inhibitors can induce a variety of dopaminergic adverse reactions. At the daily doses of selegiline currently recommended, the risk of tyramine - induced hypertension (the ‘ cheese effect ’ ) is low. The tyramine - effect does not need to be taken into consideration when using rasagiline. Concerns that the selegiline/levodopa combination increased mortality rates have been allayed.
COMT INHIBITORS (Entacapone and Tolcapone)
Mechanism of action:
Catechol- O - methyltransferase (COMT) inhibitors reduce the metabolism of levodopa, extending its plasma half - life and prolonging the action of each levodopa dose. Therapeutic dose of entacapone only acts peripherally and does not alter cerebral COMT activity. It is administered together with each dose of levodopa and is not approved for use in early (uncomplicated) and non- fluctuating PD patients. Tolcapone (a second-line drug) also acts peripherally but with a small central effect. Due to its stronger and longer action, tolcapone is recommended to be taken three times a day. Tolcapone is also not approved for use in early (uncomplicated) and non-fluctuating PD patients.
Symptomatic Treatment of Parkinsonism (monotherapy):
Not applicable (COMT inhibitors should always be given with levodopa).
Adjunctive Therapy:
All trials showed a small benefit in the control of the symptoms of parkinsonism, mostly reflected in the activities of daily living but the results were not consistent. In two recent trials, levodopa/cerbidopa/entacapone showed only borderline significance when compared to levodopa/carbidopa alone in patients with no or minimal fluctuations. In a 39 - week, randomized, double - blind, multicentre study, the efficacy, safety, and tolerability of levodopa/carbidopa/entacapone (LCE, Stalevo ® ) was compared with levodopa/carbidopa (LC, Sinemet IR) in patients with early, de novo PD with note of a significant difference in the motor experiences of daily living and motor examinations combined.
Prevention of Motor Complications:
When the initiation of treatment with levodopa/carbidopa/entacapone was compared to that with levodopa/carbidopa, no difference was found between the two treatment arms as to the prevention of motor fluctuations and dyskinesia.
Symptomatic Treatment of Non-motor Problems:
No studies available.
Safety:
COMT inhibitors increase levodopa bioavailability, so they can increase the incidence of dopaminergic adverse reactions, including nausea, and cardiovascular and neuropsychiatric complications. Diarrhea and urine discoloration are the most frequently reported non-dopaminergic adverse reactions. The combination with selective MAO-B inhibitors (selegiline) is allowed if the dose of MAO-B inhibitor does not exceed the recommended dose.
DOPAMINE AGONISTS
Mechanism of Action:
Of the ten dopamine agonists available in the market for treatment of PD, five are ergot derivatives (bromocriptine, cabergoline, dihydroergocryptine, lisuride, and pergolide) and five are non-ergot derivatives (apomorphine, piribedil, pramipexole, ropinirole, and rotigotine).
It is generally accepted that the shared D 2 - like receptor agonistic activity produces the symptomatic antiparkinsonian effect. This D 2 effect also explains peripheral (gastrointestinal – nausea and vomiting), cardiovascular (orthostatic hypotension), and neuropsychiatric (somnolence, psychosis, and hallucinations) side effects. In addition, dopamine agonists have other properties (e.g. anti - apoptotic effect) that have prompted their testing as putative neuroprotective agents. Apart from apomorphine or rotigotine, which are used via the subcutaneous (penject and pumps) or transdermal (patch) routes respectively , all dopamine agonists are used orally. A once - daily controlled – release formulation of ropinirole has recently became available ,while one such formulation for pramipexole is currently under development .
Symptomatic Treatment of Parkinsonism ( monotherapy):
Based on some studies on dopamine agonists vs, placebo in the treatment of early PD, the following are found effective: dihydroergocryptine, pergolide, pramipexole, ropinirole, piribedil, and rotigotine; whereas bromocriptine and cabergoline are probably effective while lisuride is possibly effective.
However, on studies on dopamine agonists vs. levodopa, it has been found that levodopa is more efficacious than any orally active dopamine agonist monotherapy. The number of patients able to remain on agonist monotherapy falls progressively over time after 5 years of treatment as in the case of using any of these: bromocriptine, cabergoline, pergolide, pramipexole, and ropinirole. After a few years of treatment, most patients who initially use a dopamine agonist monotherapy will receive levodopa as a replacement or adjunct treatment to control motor Parkinsonian signs. Over the past decade, a commonly tested strategy has been to start with an agonist and to add levodopa later if worsening of symptoms cannot be controlled with the agonist alone. However, previously, it was common practice to combine an agonist like bromocriptine or lisuride with levodopa within the first months of treatment ( ‘ early combination strategy ’ ).
Adjunctive Therapy:
Most agonists have been shown to be effective in improving the cardinal motor signs of parkinsonism in patients already treated with levodopa such as: apomorphine, bromocriptine, cabergoline, pergolide, piribedil, pramipexole, and ropinirole.
Prevention of motor complications:
Early use of an agonist can reduce the incidence of motor complications versus levodopa which has been observed in the studies on cabergoline, pramipexole, pergolide, ropinirole and bromocriptine. The risk of dyskinesia reappears once levodopa is adjunct to initial agonist monotherapy.
Symptomatic Treatment of Non- motor Problems:
Dopamine agonists like pramipexole may improve depression, as observed in clinical trials conducted in non – parkinsonian subjects with major or bipolar depression.
Safety:
Dopamine agonists and all other active dopamine - mimetic medications share a common safety profile reflecting dopamine stimulation. Side effects such as nausea, vomiting, orthostatic hypotension, confusion, psychosis, and somnolence may occur with administration of any of these agents. Peripheral leg edema, hallucinations and somnolence are more frequent with some agonists than with levodopa, even in healthy subjects, in the case of somnolence. A recent meta – analysis suggested that while frequencies of somnolence, hallucination, or anxiety cases were higher with non - ergot DAs, incidence of vomiting, arterial hypotension, or depression was higher with ergots. The rare but severe risks of pleuropulmonary/retroperitoneal fibrosis and valvular heart disorders are greater with ergot agonists than with non- ergot agonists. As pergolide and cabergoline have been the most frequently reported drugs at the present time, they are only used as a second - line alternative option, when other agonists have not provided an adequate response. If employed, regular monitoring of heart valves by ultrasound is mandatory.
Impulse - control disorders have recently been identified as a common adverse drug reaction to dopamine agonists with prevalence rates ranging from 5-15% depending on the author. The principal risk factor is treatment with dopamine agonists, although they can occur on levodopa as well. Other risk factors implicated are personal traits, disturbed decision-making abilities, younger age, comorbidities, cognitive impairment, disease severity, and polytherapy.
An evidenced based scientific explanation is still the most reliable and acceptable standard for patient care. However, the physician is still expected to exercise his own clinical judgment as to the best treatment options for a PD patient based on the latter’s perception of his own impairment and disability
In the early stages of uncomplicated Parkinson’s disease, use of pharmacological agents is still the primary mode of treatment. The different drugs used in the therapy of PD will be discussed based on the mechanism of action (MOA), symptomatic treatment (monotherapy), adjunctive therapy, prevention of motor complications, symptomatic treatment of non-motor problems and safety.
These are the different pharmacological agents available in the market, namely:
1. LEVODOPA
2. ANTICHOLINERGICS
3. AMANTADINE
4. MAO-B INHIBITORS
5. COMT INHIBITORS
6. DOPAMINE AGONISTS
LEVODOPA
Levodopa is the most effective treatment to improve the motor symptoms during the initial stages of PD. It is available in 2 formulations, namely (1) standard and (2) controlled-release (CR).
Mechanism of Action:
The standard levodopa formulation exerts its symptomatic benefits through conversion to dopamine, and is routinely administered in combination with a decarboxylase inhibitor (benserazide, carbidopa) to prevent its peripheral conversion to dopamine with the resultant nausea and vomiting. Levodopa passes the blood – brain barrier – in contrast to dopamine. It has a short half - life, which eventually results in short - duration responses with a wearing - off (end- of- dose) effect. Controlled - release (CR) formulations aim to prolong the effect of a single dose of levodopa, and reduce the number of daily doses.
Symptomatic Treatment of Parkinsonism ( monotherapy):
The effiacy of levodopa is firmly established from more than 30 years of use in clinical practice. Sytematic reviews show that levodopa monotherapy, in general, produced lower UPDRS (Unified Parkinson’s Disease Rating Scale) scores than cabergoline, pramipexole, ropinirole, bromocriptine, lisuride, and pergolide. Standard and CR levodopa maintain a similar level of control in de novo PD after 5 years and also in more advanced PD with a duration of about 10 years and without motor fluctuations.
Adjunctive Therapy:
Supplementation of levodopa to other antiparkinsonian medications in stable PD is common clinical practice to improve symptomatic control.
Prevention of Motor Complications:
The motor complications like fluctuations and dyskinesia are actually caused by levodopa. Usually, levodopa is started three times daily, which offers symptomatic control throughout the day, but after several months or years of chronic treatment, these motor complications may arise. However, by carefully shortening the dose interval to compensate for shortening of the duration of effect of each levodopa dose (wearing - off), and by reducing the dose of each levodopa intake to reduce the magnitude of the effect (peak dose dyskinesia), the clinical emergence of these motor problems may be postponed. CR levodopa has no significant preventive effect on the incidence of motor fluctuations or dyskinesia, as compared with standard levodopa.
Symptomatic Treatment of Non-motor Problems:
Off - period psychiatric symptoms (anxiety, panic attacks, depression) and other non - motor symptoms (drenching sweats, pain, fatigue, and akathisia) may be alleviated by modifying the treatment schedule of levodopa.
Safety:
Peripheral side effects of levodopa include gastrointestinal and cardiovascular dysfunction. Central adverse effects include levodopa motor problems such as fluctuations, dyskinesia, and dystonia, and psychiatric side effects such as confusion, hallucinations, and sleep disorders. There is a 40 % likelihood of developing motor fluctuations and dyskinesias after 4 – 6 years of levodopa therapy and up to 80-90% in later years. Neuropsychiatric complications occur in less than 5% of de novo patients on levodopa monotherapy.
ANTICHOLINERGICS (Bornaprine, Benzhexol, Benzotropine, Biperiden)
Mechanism of Action:
Anticholinergics are believed to act by correcting the disequilibrium between striatal dopamine and acetylcholine neurotransmission. Some anticholinergics, e.g. benzotropine, can also block dopamine uptake in central dopaminergic neurons. The anticholinergics used to treat PD specifically block muscarinic receptors.
Symptomatic Treatment of Parkinsonism (monotherapy):
The results are consistent with reviews concluding that anticholinergics have only a small effect on PD symptoms, and that evidence for a special effect on tremor is inconclusive.
Adjunctive Therapy:
The two reviews indicate that adjunctive anticholinergics have only a minor effect on PD symptoms in patients on levodopa therapy, and that the tremor - specific data are inconclusive.
Prevention of Motor Complications:
No studies are available.
Symptomatic Treatment of Non- motor Problems:
Because of the risk of side effects, centrally acting anticholinergics are usually not advised for the therapy of non - motor, i.e. autonomic, dysfunctions.
Safety:
The clinical use of anticholinergics has been limited by their side- effect profiles and contraindications. The most commonly reported side effects are blurred vision,urinary retention, nausea, constipation (rarely leading to paralytic ileus), and dry mouth. The incidence of reduced sweating, particularly in those patients on neuroleptics, can lead to fatal heat stroke. Anticholinergics are contraindicatedin patients with narrow-angle glaucoma, tachycardia, hypertrophy of the prostate, gastrointestinal obstruction, and megacolon. Impaired mental function (mainly immediate memory and memory acquisition) and acute confusional state are a well documented central side effect that resolves after drug withdrawal. Therefore, if dementia is present, the use of anticholinergics is contraindicated. The abrupt withdrawal of anticholinergics may lead to a rebound effect with marked deterioration of parkinsonism. Consequently, anticholinergics should be discontinued gradually and with caution.
AMANTADINE
Mechanism of Action:
The mechanism of action of amantadine appears to be multiple. A blockade of NMDA glutamate receptors and an anticholinergic effect are proposed, whereas other evidence suggests an amphetamine - like action to release presynaptic dopamine stores.
Symptomatic Treatment of Parkinsonism (monotherapy):
Some studies and reviews show that amantadine induces symptomaticimprovement.
Adjunctive Therapy:
The addition of amantadine to anticholinergic agents is superior to placebo, with the improvement more pronounced in severely affected patients. Over 9 weeks, amantadine was beneficial as an adjunctive treatment to levodopa with a more noticeable improvement in patients on low levodopa doses .Together with the results of low class evidence studies, data suggest that amantadine is probably effective as adjunct therapy, with an unproven long - term duration of effect.
Prevention of Motor Complications:
No studies available.
Symptomatic Treatment of Non- motor Problems:
Not applicable.
Safety:
Side effects are generally mild, most frequently including dizziness, anxiety, impaired coordination and insomnia ( > 5%), nausea and vomiting (5-10%), peripheral distal edema (unresponsive to diuretics), and headache, nightmares, ataxia, confusion/agitation, drowsiness, constipation/diarrhoea, anorexia, xerostomia, and livedo reticularis ( < 5%). Less common side effects include psychosis, abnormal thinking, amnesia, slurred speech, hyperkinesia, epileptic seizures (rarely, and at higher doses), hypertension, urinary retention, decreased libido, dyspnea, rash, and orthostatic hypotension (during chronic administration).
MAO-B INHIBITORS (Selegiline and Rasagiline)
Mechanism of Action:
Selegiline and rasagiline inhibit the action of monoamine oxidase isoenzyme type B (MAO - B). MAO - B inhibition prevents the breakdown of dopamine, producing greater dopamine availability. Mechanisms besides MAO-B inhibition may also contribute to the clinical effects. Unlike selegiline, rasagiline is not metabolized to amphetamine, and has no sympathomimetic activity.
Symptomatic Treatment of Parkinsonism (monotherapy):
Five of six studies with a typical follow-up period of 3 - 12 months and a meta-analysis showed a small symptomatic effect of selegiline monotherapy. Two large scale placebo - controlled trials with rasagiline monotherapy in early PD with a follow-up of 6 – 9 months demonstrated consistent and significant results for a modest symptomatic benefit of early use of 1 mg and 2 mg/daily to early de novo PD patients.
Adjunctive Therapy:
The addition of selegiline to other antiparkinsonian therapies (mainly levodopa), showed no consistent beneficial effect on the core symptoms of PD in non-fluctuating patients. Rasagiline has not been studied in this context.
Prevention of Motor Complications:
Selegiline has shown no effect in preventing motor fluctuations including wearing- off, ON– OFF fluctuations, and dyskinesia. Rasagiline has not been studied in this context.
Symptomatic Treatment of Non-motor Problems:
A study detected no effect of selegiline on depression in PD. MAO - B inhibitors have not been investigated for the treatment of other non-motor problems.
Safety:
Like any dopaminergic drug, MAO - B inhibitors can induce a variety of dopaminergic adverse reactions. At the daily doses of selegiline currently recommended, the risk of tyramine - induced hypertension (the ‘ cheese effect ’ ) is low. The tyramine - effect does not need to be taken into consideration when using rasagiline. Concerns that the selegiline/levodopa combination increased mortality rates have been allayed.
COMT INHIBITORS (Entacapone and Tolcapone)
Mechanism of action:
Catechol- O - methyltransferase (COMT) inhibitors reduce the metabolism of levodopa, extending its plasma half - life and prolonging the action of each levodopa dose. Therapeutic dose of entacapone only acts peripherally and does not alter cerebral COMT activity. It is administered together with each dose of levodopa and is not approved for use in early (uncomplicated) and non- fluctuating PD patients. Tolcapone (a second-line drug) also acts peripherally but with a small central effect. Due to its stronger and longer action, tolcapone is recommended to be taken three times a day. Tolcapone is also not approved for use in early (uncomplicated) and non-fluctuating PD patients.
Symptomatic Treatment of Parkinsonism (monotherapy):
Not applicable (COMT inhibitors should always be given with levodopa).
Adjunctive Therapy:
All trials showed a small benefit in the control of the symptoms of parkinsonism, mostly reflected in the activities of daily living but the results were not consistent. In two recent trials, levodopa/cerbidopa/entacapone showed only borderline significance when compared to levodopa/carbidopa alone in patients with no or minimal fluctuations. In a 39 - week, randomized, double - blind, multicentre study, the efficacy, safety, and tolerability of levodopa/carbidopa/entacapone (LCE, Stalevo ® ) was compared with levodopa/carbidopa (LC, Sinemet IR) in patients with early, de novo PD with note of a significant difference in the motor experiences of daily living and motor examinations combined.
Prevention of Motor Complications:
When the initiation of treatment with levodopa/carbidopa/entacapone was compared to that with levodopa/carbidopa, no difference was found between the two treatment arms as to the prevention of motor fluctuations and dyskinesia.
Symptomatic Treatment of Non-motor Problems:
No studies available.
Safety:
COMT inhibitors increase levodopa bioavailability, so they can increase the incidence of dopaminergic adverse reactions, including nausea, and cardiovascular and neuropsychiatric complications. Diarrhea and urine discoloration are the most frequently reported non-dopaminergic adverse reactions. The combination with selective MAO-B inhibitors (selegiline) is allowed if the dose of MAO-B inhibitor does not exceed the recommended dose.
DOPAMINE AGONISTS
Mechanism of Action:
Of the ten dopamine agonists available in the market for treatment of PD, five are ergot derivatives (bromocriptine, cabergoline, dihydroergocryptine, lisuride, and pergolide) and five are non-ergot derivatives (apomorphine, piribedil, pramipexole, ropinirole, and rotigotine).
It is generally accepted that the shared D 2 - like receptor agonistic activity produces the symptomatic antiparkinsonian effect. This D 2 effect also explains peripheral (gastrointestinal – nausea and vomiting), cardiovascular (orthostatic hypotension), and neuropsychiatric (somnolence, psychosis, and hallucinations) side effects. In addition, dopamine agonists have other properties (e.g. anti - apoptotic effect) that have prompted their testing as putative neuroprotective agents. Apart from apomorphine or rotigotine, which are used via the subcutaneous (penject and pumps) or transdermal (patch) routes respectively , all dopamine agonists are used orally. A once - daily controlled – release formulation of ropinirole has recently became available ,while one such formulation for pramipexole is currently under development .
Symptomatic Treatment of Parkinsonism ( monotherapy):
Based on some studies on dopamine agonists vs, placebo in the treatment of early PD, the following are found effective: dihydroergocryptine, pergolide, pramipexole, ropinirole, piribedil, and rotigotine; whereas bromocriptine and cabergoline are probably effective while lisuride is possibly effective.
However, on studies on dopamine agonists vs. levodopa, it has been found that levodopa is more efficacious than any orally active dopamine agonist monotherapy. The number of patients able to remain on agonist monotherapy falls progressively over time after 5 years of treatment as in the case of using any of these: bromocriptine, cabergoline, pergolide, pramipexole, and ropinirole. After a few years of treatment, most patients who initially use a dopamine agonist monotherapy will receive levodopa as a replacement or adjunct treatment to control motor Parkinsonian signs. Over the past decade, a commonly tested strategy has been to start with an agonist and to add levodopa later if worsening of symptoms cannot be controlled with the agonist alone. However, previously, it was common practice to combine an agonist like bromocriptine or lisuride with levodopa within the first months of treatment ( ‘ early combination strategy ’ ).
Adjunctive Therapy:
Most agonists have been shown to be effective in improving the cardinal motor signs of parkinsonism in patients already treated with levodopa such as: apomorphine, bromocriptine, cabergoline, pergolide, piribedil, pramipexole, and ropinirole.
Prevention of motor complications:
Early use of an agonist can reduce the incidence of motor complications versus levodopa which has been observed in the studies on cabergoline, pramipexole, pergolide, ropinirole and bromocriptine. The risk of dyskinesia reappears once levodopa is adjunct to initial agonist monotherapy.
Symptomatic Treatment of Non- motor Problems:
Dopamine agonists like pramipexole may improve depression, as observed in clinical trials conducted in non – parkinsonian subjects with major or bipolar depression.
Safety:
Dopamine agonists and all other active dopamine - mimetic medications share a common safety profile reflecting dopamine stimulation. Side effects such as nausea, vomiting, orthostatic hypotension, confusion, psychosis, and somnolence may occur with administration of any of these agents. Peripheral leg edema, hallucinations and somnolence are more frequent with some agonists than with levodopa, even in healthy subjects, in the case of somnolence. A recent meta – analysis suggested that while frequencies of somnolence, hallucination, or anxiety cases were higher with non - ergot DAs, incidence of vomiting, arterial hypotension, or depression was higher with ergots. The rare but severe risks of pleuropulmonary/retroperitoneal fibrosis and valvular heart disorders are greater with ergot agonists than with non- ergot agonists. As pergolide and cabergoline have been the most frequently reported drugs at the present time, they are only used as a second - line alternative option, when other agonists have not provided an adequate response. If employed, regular monitoring of heart valves by ultrasound is mandatory.
Impulse - control disorders have recently been identified as a common adverse drug reaction to dopamine agonists with prevalence rates ranging from 5-15% depending on the author. The principal risk factor is treatment with dopamine agonists, although they can occur on levodopa as well. Other risk factors implicated are personal traits, disturbed decision-making abilities, younger age, comorbidities, cognitive impairment, disease severity, and polytherapy.
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