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E Barr

Publications and source records attributed to E Barr.

39 records · Page 3Linked to original sources

Efficacy, tolerability, and quality of life of losartan, alone or with hydrochlorothiazide, versus nifedipine GITS in patients with essential hypertension.

A randomized, double-masked, parallel-group, multicenter clinical trial was conducted to compare the efficacy, tolerability, and effects on quality of life associated with the angiotensin II receptor antagonist losartan, alone or with hydrochlorothiazide (HCTZ), and the dihydropyridine calcium channel blocker nifedipine gastrointestinal therapeutic system (GITS) in patients whose sitting diastolic blood pressure measurements were between 95 and 115 mm Hg, inclusive, while receiving placebo. Patients were randomized to receive either losartan or nifedipine GITS in a double-masked, double-dummy fashion. A 4-week placebo washout period established baseline untreated blood pressure measurements and was followed by a 12-week active treatment period. Patients receiving losartan (n = 110) were initially given 50 mg once a day (QD) and could be titrated to losartan/HCTZ 50 mg/12.5 mg QD after 4 weeks followed by losartan/HCTZ 50 mg/25 mg QD after 8 weeks, as necessary. Patients in the nifedipine GITS group (n = 113) received 30 mg QD, which could titrated to 60 mg QD after 4 weeks followed by 90 mg QD after 8 weeks. Medication was titrated upward as necessary to achieve a sitting trough diastolic blood pressure < 90 mm Hg. Efficacy, tolerability, and quality-of-life scores were assessed after 12 weeks of each therapy. Trough sitting diastolic blood pressure reductions after 4, 8, and 12 weeks of therapy were clinically comparable: losartan, -8.9, -11.6, and -12.7 mm Hg, respectively, and nifedipine GITS, -9.3, -11.0, and -11.1 mm Hg, respectively, with the mean reduction in sitting diastolic blood pressure at 12 weeks in the losartan group 1.6 mm Hg lower (95% confidence interval, 3.4 mm Hg lower to 0.3 mm Hg Higher) than the mean reduction in sitting diastolic blood pressure in the nifedipine GITS group. Similarly, reductions in systolic blood pressure between the two treatment groups were comparable at all time points. The percentage of patients reaching the goal trough sitting diastolic blood pressure was comparable for the two treatment groups, with 74% of patients in the losartan regimen and 68% of patients in the nifedipine GITS regimen reaching the goal. Of patients reporting adverse events in the two groups (75 patients receiving losartan and 69 receiving nifedipine GITS), there was significantly more edema in the nifedipine GITS group (15% vs 4%; P = 0.005). Fourteen (12%) patients in the nifedipine GITS group were withdrawn due to an adverse event (eight of these were for edema). Six patients (5%) in the losartan group were withdrawn due to an adverse event (none of these patients had edema). There were significant differences in the patient-reported quality-of-life symptom bother inventory with respect to edema, with nifedipine GITS therapy causing significantly more bother due to edema in patients, regardless of whether that symptom was present at baseline (27% vs 9%; P = 0.0004). No statistically significant differences for bother due to the other symptoms in the inventory were noted. Of note, while the incidence of patient-reported symptom bother due to edema in the nifedipine GITS group was 27%, the incidence of physician-reported drug-related edema was 12%. This difference points to the need for improved physician-patient communication regarding adverse effects and their impact of patients' quality of life. In conclusion, a regimen of losartan, when compared with a regimen of nifedipine GITS, provides comparable efficacy, and with respect to edema, superior tolerability, less bother to patients, and fewer therapy dropouts.

Antihypertensive Agents↗

Efficacy, tolerability, and effects on quality of life of losartan, alone or with hydrochlorothiazide, versus amlodipine, alone or with hydrochlorothiazide, in patients with essential hypertension.

A randomized, double-masked, parallel-group, multicenter clinical trial was conducted to compare the efficacy, tolerability, and effects on quality of life associated with treatment regimens including the angiotensin II receptor antagonist losartan, with hydrochlorothiazide (HCTZ) added as needed, with regimens including the dihydropyridine calcium channel blocker amlodipine with HCTZ added as needed. The trial included patients whose sitting diastolic blood pressure (SiDBP) measurements were between 95 and 114 mm Hg, inclusive, at placebo baseline. Patients were randomized to receive either losartan or amlodipine in a double-masked, double-dummy fashion. A 4-week placebo washout period was followed by a 12-week active treatment period. Patients in the losartan arm (n = 97) were initially given 50 mg of oral (PO) losartan once a day (QD); the medication could be titrated to 50-mg losartan/ 12.5-mg HCTZ PO QD after 4 weeks, followed by 50-mg losartan plus 25-mg HCTZ PO QD after 8 weeks as necessary. Patients in the amlodipine group (n = 93) received 5-mg amlodipine PO QD, which could be titrated to 10 mg PO QD after 4 weeks, followed by 10 mg plus 25-mg HCTZ PO QD after 8 weeks. Medication was titrated upward as necessary to achieve trough SiDBP < 90 mm Hg. Efficacy, tolerability, and quality-of-life scores were assessed after 12 weeks of therapy with each regimen. Trough SiDBP reductions after 4, 8, and 12 weeks of therapy were clinically comparable (losartan group: 7.3, 10.4, and 11.1 mm Hg, respectively; amlodipine group: 7.9, 11.2, and 11.8 mm Hg, respectively). Similar reductions in systolic blood pressure were also seen for both treatment groups. The percentage of patients reaching goal SiDBP (defined as trough SiDBP < 90 mm Hg or SiDBP > or = 90 mm Hg with a > or = 10 mm Hg drop from placebo baseline) was comparable for the two groups, with 68% of patients in the losartan group and 71% of patients in the amlodipine group reaching goal. Significantly more patients in the amlodipine group had drug-related adverse experiences (27% vs 13%). In particular, drug-related edema was more common in patients receiving the amlodipine regimen than in those receiving the losartan regimen (11% vs 1%). Patients in the amlodipine arm reported significantly more bother due to edema, regardless of whether edema was present at baseline, than did patients in the losartan arm (12% vs 2%), although overall quality of life was not different in the two treatment groups. This study demonstrates that a regimen of losartan with HCTZ added as needed, when compared with a regimen of amlodipine with HCTZ added as needed, provides comparable efficacy and superior tolerability and less bother to patients with respect to edema.

Adult↗

The localization and functional contribution of striatal aromatic L-amino acid decarboxylase to L-3,4-dihydroxyphenylalanine decarboxylation in rodent parkinsonian models.

L-3,4-Dihydroxyphenylalanine (L-dopa) is the mainstay of therapy for patients with Parkinson's disease (PD), and mediates its primary effects through conversion into dopamine by aromatic L-amino acid decarboxylase (AADC). Given the loss of AADC-containing nigrostriatal dopaminergic neurons in PD, however, the location of residual AADC that converts L-dopa into dopamine remains controversial. The first objective of this study was to establish the presence of AADC expression in striatal neurons and glia using reverse transcriptase and PCR. Transcripts for the neuronal but not nonneuronal forms of AADC were detected in striatal tissue, cultured striatal neurons, and glia. We then examined whether this striatal AADC expression represents a physiologically significant source of dopaine production. No dopamine release was detected following incubation of striatal cultures with L-dopa or transduction with adenovirus expressing tyrosine hydoxylase. Our data establish the presence of AADC expression in the striatum both in vivo and in vitro, but suggest that striatal components do not represent a primary source of L-dopa decarboxylation following nigrostriatal denervation in rats. Understanding the source and localization of AADC is important in understanding the complications of L-dopa therapy and in designing rational therapeutic strategies for PD, including cellular transplantation and gene therapy.

Adenoviridae↗