Gene/Protein Disease Symptom Drug Enzyme Compound
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Query: UMLS:C0030567 (Parkinson's disease)
63,064 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

GI motility changes little--if at all--with age in healthy patients. However, a variety of diseases, including diabetes and Parkinson's disease, may cause autonomic neuropathy that is manifest as a motility disorder in the GI tract. Autonomic neuropathy can cause dysmotility in the esophagus, stomach, and gut. Symptoms are often nonspecific, including difficulty in swallowing, nausea, vomiting, heartburn, indigestion, diarrhea, and constipation. Nonpharmacologic treatment includes management of underlying diseases, avoidance of anticholinergic medications, and dietary changes. Agents with prokinetic action are the therapy of choice when drug treatment is indicated.
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PMID:GI motility disorders: diagnostic workup and use of prokinetic therapy. 790 Nov 29

Constipation, a frequent symptom in Parkinson's disease (PD), is probably caused by degeneration of the autonomic nervous system, particularly the myenteric plexus. Cisapride is a drug that causes increased release of acetylcholine in the myenteric plexus. In a pilot study, cisapride therapy was investigated in 20 PD patients, 10 women and 10 men, who suffered from delayed intestinal transit. In all cases, cisapride therapy was associated with a significant acceleration of colonic transit, as measured by radioopaque pellets viewed on radiographs. Pellet count fell from a mean of 53.8 pretreatment to 30.4 after cisapride treatment. No adverse reaction and no "overshoot affects," such as diarrhea, were seen. Our findings suggest that cisapride may alleviate the constipation associated with Parkinson's disease.
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PMID:Cisapride treatment of constipation in Parkinson's disease. 834 Dec 99

Autonomic dysfunction is responsible for much of the morbidity associated with frequently encountered neurological disorders, such as Parkinson's disease, multiple sclerosis, cerebrovascular disease, and peripheral neuropathies, as well as with the rarer primary autonomic nervous system degenerations. We review the treatment of those aspects of autonomic dysfunction that often present to the neurologist, including orthostatic hypotension, urinary incontinence and retention, and bowel dysmotility syndromes. Pathophysiology is discussed in each instance as it relates to a rational approach to therapy. For management of orthostatic hypotension, we review the use of mineralocorticoids, direct and indirect sympathomimetic agents, other pressors, dopamine-blocking agents, vasopressin receptor agonists, and others. Treatment of urinary incontinence and retention is addressed, with attention to drugs that modulate bladder contractility and bladder outlet resistance. Therapies for bowel dysmotility syndromes (such as gastroparesis, diarrhea, and fecal incontinence) are described, including bulk agents, laxatives, prokinetic agents, and antidiarrheal drugs.
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PMID:The treatment of autonomic dysfunction. 845 96

The use of ondansetron, a selective serotonin 5-HT3 receptor antagonist, is well established in patients with nausea and vomiting associated with cancer chemotherapy, radiotherapy or anaesthesia and surgery. The wide distribution of 5-HT3 receptors in the body and the role of these receptors in disease have provided the rationale for investigation of ondansetron in novel applications. Preliminary data have shown ondansetron to have clinical benefit in patients with nausea and vomiting associated with drug overdosage or poisoning, anti-infective or antidepressant therapies, uraemia or neurological trauma, and in patients with pruritus. Patients with gastrointestinal motility disorders (e.g. carcinoid syndrome, irritable bowel syndrome, diarrhoea associated with cryptosporidiosis or diabetes, and chronic refractory diarrhoea) have also shown some improvement when treated with ondansetron, as have patients with certain pain or CNS-related disorders [e.g. alcohol (ethanol) dependence, opiate withdrawal, vertigo, cerebellar tremor and Parkinson's disease treatment-related psychosis]. In contrast to conventional antiemetics, ondansetron is generally well tolerated with a lower incidence of sedation and only isolated case reports of extrapyramidal reactions. Furthermore, unlike dopamine receptor-blocking neuroleptics, ondansetron does not appear to worsen the symptoms of Parkinson's disease. Thus, in addition to its established indications, preliminary results suggest that ondansetron may be beneficial in a number of novel applications. This drug may represent a treatment alternative in patients with refractory disease, or an effective treatment of conditions for which current therapies are either poorly tolerated or not available. Further investigation of ondansetron in a range of potential new applications appears to be warranted.
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PMID:Ondansetron. A review of its pharmacology and preliminary clinical findings in novel applications. 911 22

The effect of selegiline (L-deprenyl) on plasma catecholamines, clinical response, and drug tolerability was studied in 13 patients with Parkinson's disease (PD) treated with L-Dopa/benserazide and entacapone, a peripheral catechol-O-methyltransferase (COMT) inhibitor, in a placebo-controlled double-blind study. An L-Dopa test was performed on 3 study days. The first study day was with L-Dopa/benserazide only (control), the second after 14 days of treatment with 200 mg entacapone taken concomitantly with L-Dopa/benserazide in combination with either selegiline (10 mg daily) or placebo. After a 2-week washout period, selegiline and placebo treatments were switched, and the third study day was after 14 days of treatment. During the study days, clinical response was evaluated at 30-min intervals for 6 h, by using the motor score of the Unified Parkinson's Disease Rating Scale (UPDRS). In addition, repeated blood pressure measurements were made, and plasma samples were taken for analysis of L-Dopa, 3-O-methyldopa (3-OMD), dihydroxyphenyl acetic acid (DOPAC), homovanillic acid (HVA), dopamine, noradrenaline, and 3-methoxy-4-hydroxyphenylethylene glycol (MHPG). Monoamine oxidase B (MAO-B) and COMT enzyme activities were measured from platelets and erythrocytes, respectively. Entacapone improved the clinical response to L-Dopa during both selegiline and placebo (p < 0.001) treatments. The improvement was more marked during combined selegiline and entacapone treatment than with entacapone alone (p < 0.01). Entacapone significantly increased plasma L-Dopa and DOPAC levels and decreased plasma 3-OMD and MHPG levels both with selegiline and placebo. Selegiline partially inhibited the entacapone-induced increase of plasma DOPAC. Plasma dopamine and noradrenaline levels did not change. Entacapone decreased erythrocyte COMT activity by > 35% (p < 0.001), and platelet MAO-B activity was almost completely inhibited by selegiline (p < 0.001). One patient withdrew because of diarrhea, dizziness, and loss of sleep when receiving selegiline treatment. Otherwise no differences in adverse events, mean daily blood pressures, or other safety parameters were observed between selegiline and placebo treatments. Our results suggest that entacapone can be safely administered together with L-Dopa and selegiline in patients with PD, although further studies with larger number of patients and longer treatment periods are necessary to confirm this finding.
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PMID:Simultaneous MAO-B and COMT inhibition in L-Dopa-treated patients with Parkinson's disease. 925 Oct 66

In this double-blind, placebo-controlled trial, we investigated the effect of the catechol-O-methyltransferase inhibitor tolcapone 100 or 200 mg three times daily on activities of daily living and motor function in 298 patients with parkinsonism receiving levodopa but without motor fluctuations. At 6 months, both dosages of tolcapone produced significant reductions in the Unified Parkinson's Disease Rating Scale scores for activities of daily living (Subscale II) and motor function (Subscale III) and in the total score for Subscales I to III. These improvements were maintained up to the 12-month assessment. At 6 months, both tolcapone groups had changes in levodopa dosage that were significantly different from placebo: the tolcapone groups had decreases in mean total daily dose of levodopa, whereas the placebo group had a mean increase. Tolcapone was well tolerated. The principal adverse events were levodopa-related, but these were generally mild or moderate. Diarrhea was the most frequent nondopaminergic adverse event. Tolcapone appears to be beneficial in the treatment of patients with parkinsonism who have not yet developed motor fluctuations.
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PMID:Tolcapone in stable Parkinson's disease: efficacy and safety of long-term treatment. The Tolcapone Stable Study Group. 930 20

The primary objective of this study was to assess the effect of tolcapone on levodopa dosage in parkinsonian patients whose "wearing-off" phenomenon has been controlled with more frequent levodopa dosage. After a 1-week placebo run-in, 97 patients were assigned randomly to receive placebo or tolcapone 200 or 400 mg three times daily (t.i.d.). Levodopa dosage was reduced by -35% on day 1 of study and subsequently retitrated as required. After 6 weeks, the tolcapone groups crossed over to receive the other dose for a further 3 weeks for exploratory purposes. Both tolcapone groups had greater reductions in levodopa dosage than the placebo group at week 6 (not statistically different). The 200-mg t.i.d. group showed greatest improvement in estimated mean scores for all efficacy parameters (p < 0.05 versus placebo for change in Unified Parkinson's Disease Rating Scale Subscale II). Fewer dopaminergic and nondopaminergic adverse events were associated with tolcapone 200 mg t.i.d. than with tolcapone 400 mg t.i.d. The most frequently reported dopaminergic adverse events were nausea, cramps, dyskinesia, and dystonia. The most frequently reported unanticipated adverse event was diarrhea. Tolcapone 200 mg t.i.d. may provide additional benefit to patients with moderately advanced Parkinson's disease with treated "wearing-off" phenomenon.
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PMID:Tolcapone added to levodopa in stable parkinsonian patients: a double-blind placebo-controlled study. Tolcapone in Parkinson's Disease Study Group II (TIPS II). 939 17

In this double-blind, placebo-controlled trial, we investigated the effect of the catechol-O-methyltransferase inhibitor tolcapone 100 or 200 mg three times daily on activities of daily living and motor function in 298 patients with parkinsonism receiving levodopa but without motor fluctuations. At 6 months, both dosages of tolcapone produced significant reductions in the Unified Parkinson's Disease Rating Scale scores for activities of daily living (Subscale II) and motor function (Subscale III) and in the total score for Subscales I to III. These improvements were maintained up to the 12-month assessment. At 6 months, both tolcapone groups had changes in levodopa dosage that were significantly different from placebo: the tolcapone groups had decreases in mean total daily dose of levodopa, whereas the placebo group had a mean increase. Tolcapone was well tolerated. The principal adverse events were levodopa-related, but these were generally mild or moderate. Diarrhea was the most frequent nondopaminergic adverse event. Tolcapone appears to be beneficial in the treatment of patients with parkinsonism who have not yet developed motor fluctuations.
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PMID:Tolcapone in stable Parkinson's disease: efficacy and safety of long-term treatment. Tolcapone Stable Study Group. 959 21

Tolcapone is a potent, reversible catechol-O-methyltransferase (COMT) inhibitor with both peripheral and central activity. It has been demonstrated to improve motor function and allow levodopa dose reductions in Parkinson's disease (PD) patients who are experiencing either a stable response or motor fluctuations while on levodopa/dopa decarboxylase inhibitor therapy. Because striatal dopamine is metabolized by COMT and monoamine oxidase (MAO), central COMT inhibition alone or in combination with MAO inhibition might provide symptomatic benefit for patients not receiving levodopa. We conducted a pilot study to evaluate the tolerability, safety, and efficacy of tolcapone alone and in combination with oral selegiline in early untreated PD patients. Patients were randomized to receive 200 mg tolcapone three times a day or placebo for the 8 weeks of the study. Open-label oral selegiline (5 mg in the morning and midday) was administered to all patients during the second 4 weeks of the study. There was no difference between treatment groups according to the investigator's assessment of tolerability at week 4. Ninety-five percent of tolcapone-treated patients and 98% of placebo-treated patients experienced excellent or good tolerability during the first 4 weeks (95% confidence interval [CI]: -10.3, 5.7; p = 0.57). A decrease in tolerability occurred in the tolcapone group during the second 4 weeks of the study following the addition of selegiline. The most commonly reported side effects were diarrhea (31% tolcapone, 7% placebo), nausea (21% tolcapone, 2% placebo), urine discoloration (12% tolcapone, 0% placebo), dizziness (12% tolcapone, 5% placebo), headaches (12% tolcapone, 10% placebo), and abdominal pain (10% tolcapone, 5% placebo). We did not identify symptomatic benefit associated with tolcapone alone or in combination with oral selegiline in this group of otherwise untreated PD patients.
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PMID:A pilot evaluation of the tolerability, safety, and efficacy of tolcapone alone and in combination with oral selegiline in untreated Parkinson's disease patients. Tolcapone De Novo Study Group. 968 68

Tolcapone (T) is a novel catechol-O-methyltransferase (COMT) inhibitor recently introduced for the treatment of Parkinson's disease. In clinical efficacy studies, T has been associated with a low incidence of diarrhea. The objectives of the study were to examine whether T and its adjunctive drug Sinemet (S) could influence intestinal fluid and electrolyte transport as a possible cause for the diarrhea. The studies were conducted in conscious dogs surgically prepared with Thiry-Vella loops constructed from a 40-cm jejunal segment. A physiologically buffered test solution was perfused into the orad stoma and collected from the caudad stoma. Secretions were collected at 15-min intervals and analyzed for volume, electrolytes, lipid phosphorus, and protein. The acute oral administration of T (10 and 30 mg/kg doses) was well tolerated. Concurrent acute administration of S (25 mg/kg) with T (30 mg/kg) was also well tolerated. The acute oral administration of T induced a dose-dependent efflux of intestinal fluid and electrolytes (sodium, potassium, chloride, and bicarbonate) secretion (P < 0.05). The oral coadministration of S (25 mg/kg) with T (30 mg/kg) accelerated the onset of the stimulation of intestinal secretion. Despite the significant stimulation of intestinal secretion, none of the dogs developed diarrhea, indicating the importance of intestinal compensatory mechanisms. Neither T nor T&S affected calcium, lipid, or protein efflux rates, suggesting that the stimulated secretion was not a consequence of intestinal mucosal injury. The chronic (seven-day) administration of T and T&S was associated with reduced intestinal secretory responses when compared with the acute administration of the same drugs; S enhanced the T-induced tolerance development. The basis for such tolerance is unknown. In conclusion, the stimulatory systemic actions of tolcapone on intestinal secretion may, under certain conditions, contribute to the induction of diarrhea in susceptible patients.
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PMID:Effects of tolcapone, a catechol-O-methyltransferase inhibitor, and Sinemet on intestinal electrolyte and fluid transport in conscious dogs. 972 73


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