Gene/Protein Disease Symptom Drug Enzyme Compound
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Query: UMLS:C0012833 (dizziness)
9,689 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

A twenty-four-year-old, white, athletic woman, free of heart disease, experienced an episode of fear when she was assaulted in the street without physical injury while under-going twenty-four-hour Holter monitoring. She developed an important sympathetic response in which, besides the symptoms characterized by palpitations, chest pain, dyspnea, asthenia, dizziness, nausea, and profuse cold sweating, she had an episode of paroxysmal atrial tachycardia. The causes and mechanism of this not well-documented event in humans are discussed.
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PMID:Paroxysmal atrial tachycardia recorded by Holter monitoring during an episode of fear. A case report. 868 68

The chemistry, pharmacology, pharmacokinetics, and clinical efficacy of nefazodone hydrochloride, a new antidepressant, are described. Nefazodone enhances serotonin (5-hydroxytryptamine [5-HT]) synaptic transmission by acting as an antagonist at 5-HT2 receptors and by inhibiting the reuptake of 5-HT. These two mechanisms combined may enhance 5-HT1A-mediated transmission. In addition, nefazodone weakly inhibits the reuptake of norepinephrine. Nefazodone is a structural analogue of trazodone but is pharmacologically distinct. In placebo-controlled trials, nefazodone was as effective as imipramine for the treatment of major depression and produced clinical benefits in patients with depression-related anxiety and sleep disturbances. More than 2000 patients have received nefazodone in clinical trials. The most commonly reported adverse drug reactions (ADRs) are asthenia, somnolence, dry mouth, nausea, constipation, dizziness, lightheadedness, confusion, abnormal vision, and blurred vision. The incidence of sexual-dysfunction ADRs may be less than that reported for other antidepressants. Nefazodone does not inhibit rapid-eye movement sleep. Nefazodone, an inhibitor of the hepatic P-450 isoenzyme CYP3A4, may increase concentrations of drugs metabolized by this isoenzyme, such as terfenadine, astemizole, triazolam, alprazolam, and midazolam. Caution should be exercised in administering nefazodone hydrochloride with triazolobenzodiazepines, and coadministration with terfenadine or astemizole is contra-indicated. The dosage should start at 100 mg twice daily and then be increased, depending on occurrence of ADRs and the patient's clinical response, to 300-600 mg daily. In elderly or debilitated patients, the initial dosage should be half the usual dosage. Nefazodone hydrochloride is as effective as other available antidepressants and may cause fewer ADRs.
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PMID:Nefazodone: a new antidepressant. 889 78

Riluzole, a benzothiazole, affects neurons by 3 mechanisms: by inhibiting excitatory amino acid release, inhibiting events following stimulation of excitatory amino acid receptors and stabilising the inactivated state of voltage-dependent sodium channels. It has demonstrated neuroprotective activity in vivo and in vitro. Results from 2 randomised double-blind placebo-controlled trials in patients with amyotrophic lateral sclerosis (ALS; motor neuron disease) have demonstrated that riluzole can extend survival and/or time to tracheostomy. After 18 months, the relative risk of death or tracheostomy with riluzole 100 mg/day was reduced by 21%. Although riluzole slowed the rate of deterioration in muscle strength in the first trial, this was not confirmed in the second, larger trial. Riluzole had no effect on any other functional or secondary variable. Gastrointestinal effects, anorexia, asthenia, circumoral paraesthesia and dizziness were reported more frequently with riluzole than placebo. Elevated alanine aminotransferase levels were observed in 10.6 versus 3.8% of patients treated with riluzole 100 mg/day versus placebo, leading to treatment withdrawal in 3.8 versus 2.1% of patients. In conclusion, riluzole is the first drug that has been shown to have an effect on survival in patients with ALS. Although the effect of riluzole was modest, it has allowed some insight into the pathogenesis of ALS from which future gains may be made.
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PMID:Riluzole. A review of its pharmacodynamic and pharmacokinetic properties and therapeutic potential in amyotrophic lateral sclerosis. 889 67

Divalproex sodium is an anticonvulsant agent approved for use either alone or in combination with other antiepileptic drugs for simple and complex absences seizures and mania. Four double-blind placebo-controlled studies have confirmed that divalproex sodium/valproate is an effective migraine treatment. In all of the clinical studies, whether open, retrospective, or placebo-controlled and double-blind, valproate was an effective preventive treatment for migraine. There was a reduction in the number of migraine attacks, and migraine duration and intensity were also reduced in some instances. It is equally as effective in patients with severe frequent migraines as in those with less severe migraines. In clinical trials, the most frequent adverse events reported by patients treated with divalproex sodium were nausea, asthenia, dyspepsia, dizziness, somnolence, and diarrhea, with most adverse events being mild to moderate in severity.
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PMID:Divalproex sodium in headache: literature review and clinical guidelines. 891 63

In this report, we assess the safety of terazosin in the treatment of patients with symptomatic benign prostatic hyperplasia. We analyzed seven prospectively designed placebo-controlled trials involving 3,080 patients, 1,689 of whom received the study drug in doses ranging from 1 mg to 20 mg daily for a total of 1,282 patient-years of exposure. The most common side effects seen in treated patients were dizziness (10.7%), asthenia (7.5%), and peripheral edema (4.0%). These side effects were generally reported as mild and improved after cessation of therapy. The incidence of withdrawal from the study due to side effects was 14.5% in the treatment arm versus 11.4% in the placebo control arm. Also noted was a statistically significant decreased risk of urinary tract infection and myocardial infarction in the terazosin-treated group. This updated report confirms that terazosin can be administered safely to a population of men with symptomatic benign prostatic hyperplasia with minimal clinically significant side effects.
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PMID:Side effects of terazosin in the treatment of symptomatic benign prostatic hyperplasia. 916 69

Carvedilol competitively blocks beta 1, beta 2 and alpha 1 receptors. The drug lacks sympathomimetic activity and has vasodilating properties that are exerted primarily through alpha 1-blockade. Animal models indicate that carvedilol confers protection against myocardial necrosis, arrhythmia and cell damage caused by oxidising free radicals, and the drug has no adverse effects on plasma lipid profiles. Recent data have confirmed the antihypertensive efficacy of carvedilol in patients with mild to moderate essential hypertension. Carvedilol has similar efficacy to other beta-blocking agents, calcium antagonists, ACE inhibitors and hydrochlorothiazide. Carvedilol also improves exercise tolerance and ischaemic symptoms in patients with stable angina pectoris. Significant reductions in serious cardiac events after acute myocardial infarction and in frequency and severity of ischaemic events in patients with unstable angina have also been demonstrated. Interest in the use of carvedilol in patients with congestive heart failure (CHF) has culminated in the publication of a cumulative analysis of data from 1094 patients with mild to severe CHF who participated in the US Carvedilol Heart Failure Study Program (4 trials). After a median follow-up of 6.5 months, a significant overall reduction in mortality relative to placebo (3.2 vs 7.8%) was revealed in patients who had received carvedilol 6.25 to 50 mg twice daily (plus diuretics and ACE inhibitors). All-cause mortality, risk of hospitalisation for cardiovascular reasons and hospitalisation costs were also reduced significantly (by 65, 28% and 62%, respectively) in these trials. In addition, the Australia and New Zealand Heart Failure Research Collaborative Group showed a 26% reduction in the combined risk of death or hospitalisation with carvedilol 12.5 to 50 mg/day relative to placebo after a mean 19-month follow-up period in 415 patients with CHF (relative risk 0.74). Adverse events with carvedilol appear to be less frequent than with other beta-blocking agents, are dosage-related and are usually seen early in therapy. Events most commonly reported are related to the vasodilating (postural hypotension, dizziness and headaches) and the beta-blocking (dyspnoea, bronchospasm, bradycardia, malaise and asthenia) properties of the drug. Carvedilol appears to date to have little effect on the incidence of worsening heart failure. Concomitant administration of carvedilol with some medications requires monitoring. Carvedilol is therefore likely to have a beneficial role in the management of controlled CHF, but further clinical studies are required to show the place of beta-adrenoceptor blocking therapy in general in this indication, and the position of carvedilol relative to other similar agents. Carvedilol is also confirmed as effective in the management of mild to moderate hypertension and ischaemic heart disease.
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PMID:Carvedilol. A reappraisal of its pharmacological properties and therapeutic use in cardiovascular disorders. 921 Oct 87

Rizatriptan (MK-462) is a potent 5HTID receptor agonist. This multicenter, double-blind, placebo-controlled, outpatient study investigated the clinical efficacy, safety, and tolerability of rizatriptan (2.5, 5, and 10 mg) as a function of dose for acute migraine. Patients with moderate or severe migraine (n = 417) were treated with placebo (n = 67), rizatriptan 2.5 mg (n = 75), 5 mg (n = 130), or rizatriptan 10 mg (n = 145). Headache severity, functional disability, and migraine symptoms were measured immediately before dosing (0) and at 0.5, 1, 1.5, 2, 3, and 4 h post-dose. Patients were permitted to take a second dose of test drug at 2 h if their headache pain was moderate or severe (i.e., placebo initially-->rizatriptan 10 mg as optional second dose; rizatriptan 2.5 mg, 5 mg, or 10 mg initially-->placebo as optional second dose). An upward dose-response relationship was observed among placebo, rizatriptan 2.5 mg, 5 mg, and 10 mg in the primary efficacy measure of proportion of patients reporting pain relief, i.e., a change in headache severity to "no pain or mild pain" at 2 h post-dose. The relationship was evident even at the first recorded timepoint, 30 min, and was statistically significant at 1.5 h and beyond. At the primary timepoint of 2 h after the initial dose, the proportion of patients reporting pain relief was 47.6% for rizatriptan 10 mg; 45.4% for rizatriptan 5 mg; 21.3% for rizatriptan 2.5 mg; and 17.9% for placebo. Seventy percent of patients on rizatriptan 10 mg reported pain relief at 4 h. Patients who took rizatriptan 5 mg and 10 mg were significantly less functionally disabled than those who took placebo at 1.5 and 2 h post-dose. Rizatriptan 10 mg was consistently more effective than 5 mg, although the differences were not statistically significant. The most frequent clinical adverse events were dizziness, somnolence, and asthenia/fatigue. No patients were discontinued for any adverse experiences and there were no serious adverse experiences.
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PMID:Double-blind, placebo-controlled, dose-finding study of rizatriptan (MK-462) in the acute treatment of migraine. 935 Mar 84

Symptomatic Improvement was evaluated in 64 patients with drug-refractory atrial fibrillation or atrial flutter who underwent atrioventricular (AV) nodal ablation and permanent pacemaker implantation. The arrhythmias were chronic in 40 patients and paroxysmal in 24 patients. All were refractory to multiple drugs (3.7 +/- 1.5) and had severe symptoms: palpitations (58 patients), dyspnea (n=58), dizziness (n=38), asthenia (n=37), and chest pain (n=20). All underwent AV nodal ablation and single- (n=39) or dual-chamber (n=25) pacemaker implantation. During follow-up of 20.4 +/- 17.8 months, palpitations improved in 100% of 58 patients who had palpitations before the ablation, dyspnea improved in 75% of 58 patients, chest pain in 95% of 20 patients, asthenia in 75% of 37 patients, and dizziness in 93% of 38 patients. Moderate to significant improvement in these symptoms was reported in 83% of patients and mild improvement in 5%. Before ablation, 77% of patients were in New York Heart Association functional class III or IV. After ablation, 19% of patients were in the same functional classes (P < 0.05). Thus, AV nodal ablation and pacemaker implantation in patients with drug-refractory atrial fibrillation or flutter was associated with significant improvement in presenting symptoms and functional capacity. A randomized, controlled study is needed to compare this form of therapy with other therapeutic modalities.
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PMID:Symptomatic improvement after AV nodal ablation and pacemaker implantation for refractory atrial fibrillation and atrial flutter. 937 44

Losartan is a novel orally active nonpeptidal antihypertensive agent that specifically blocks the angiotensin II type 1 receptor. This paper compares the short- and long-term safety and tolerability of losartan with those of placebo. Approximately 3800 patients with mild-to-severe essential hypertension were enrolled in 16 double-masked and 4 open clinical trials worldwide. Of these, approximately 2900 were treated with losartan either alone or in combination with other antihypertensive drugs. These trials included patients with diabetes mellitus (n = 133). An additional 5 trials enrolled hypertensive patients with compromised renal function (n = 115) or heart failure (n = 220). Losartan dosages primarily ranged from 10 to 150 mg once daily, with most patients receiving 50 to 100 mg per day. Hypertension trials generally lasted 12 weeks. The most frequently reported adverse events were headache, upper respiratory tract infection, dizziness, and asthenia/fatigue, but only dizziness occurred more frequently (> or = 1%) in the losartan-treated groups. Cough occurred in 3.1% of patients treated with losartan and 2.6% of patients treated with placebo. The overall incidence of clinical and laboratory adverse events in the losartan- and placebo-treated groups was similar among patients with hypertension and either diabetes mellitus, renal impairment, or heart failure. The data suggest that losartan can be safely administered in hypertensive patients with concomitant illnesses. It can be considered for first-line therapy and is suitable as an alternative therapy in patients already experiencing side effects with other agents.
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PMID:Clinical safety and tolerability of losartan. 937 6

Zolmitriptan (Zomig, formerly 311C90) at doses of 0.5-50 mg was administered to 316 unique volunteers in clinical pharmacology studies and 2,750 unique patients in eight clinical studies of acute migraine treatment. Overall, subjects received almost 50,000 doses; 97% of exposures were at doses > or = 2.5 mg. In the clinical pharmacology studies, the overall incidence of subject exposures experiencing at least one adverse event was 52% with zolmitriptan 2.5 mg (28% with placebo). In placebo-controlled studies, the overall incidence of patients with at least one adverse event was dose-dependent for zolmitriptan over the 1-15 mg dose range, e.g. 42% and 46% with 1 and 2.5 mg, respectively and 58% with 5 mg (29% with placebo). Only four serious adverse events attributable to zolmitriptan were reported. In a long-term study, during which 2,058 outpatients treated a total of 31,579 migraine attacks with either one or two zolmitriptan 5 mg doses over a period of up to 1 year, the number of attacks associated with at least one adverse event was similar after one (26%) and two (24%) doses. The majority (59%) of the adverse events reported in this study (59%) occurred within 2 h of dosing, were predominantly mild (59%) or moderate (35%) in intensity, of < or = 4 h duration (58%), required no further action (94%). In placebo-controlled studies, the percentage of patients who reported severe adverse events was similar with zolmitriptan 2.5 mg (4%) and placebo (5%). The most frequently reported adverse events with zolmitriptan in the placebo-controlled clinical studies were asthenia, heaviness (other than chest or neck), dry mouth, nausea, dizziness, somnolence, paresthesia and warm sensations. The type and severity of the adverse events was not influenced by gender (although the frequency of reported adverse events was higher in females, as was the case in the placebo group), age, presence of aura prior to the attack, association of migraine with menstruation, concurrent medication, or by the addition of a second zolmitriptan dose. Zolmitriptan showed a similar tolerability profile in the long-term study, in which a low withdrawal rate due to adverse events of 8% was observed. Zolmitriptan was not associated with an increased frequency of central nervous system-related adverse events in a comparative study of sumatriptan, despite pre-clinical and neurophysiological evidence of a dual peripheral and central action of zolmitriptan. Moreover, zolmitriptan doses of 5-20 mg produced no statistically significant effects on objective assessments of psychometric function. Zolmitriptan had no clinically significant effects on blood pressure (even in patients with controlled mild to moderate hypertension or impaired renal function), ECGs (e.g. there was no evidence of ischemic events) or clinical chemistry, hematological or urinalysis measurements. In summary, zolmitriptan is well tolerated, particularly at the recommended dose of 2.5 mg. Zolmitriptan has a well-defined dose-response with 2.5 mg proving highly effective and optimizing the benefit/risk ratio of treatment. Thus, zolmitriptan is well suited as an acute oral treatment for migraine in the outpatient setting.
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PMID:Tolerability profile of zolmitriptan (Zomig; 311C90), a novel dual central and peripherally acting 5HT1B/1D agonist. International clinical experience based on > 3000 subjects treated with zolmitriptan. 939 16


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