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M Padia

Publications and source records attributed to M Padia.

2 recordsLinked to original sources

Ventricular ectopic activity with diuretic therapy.

The arrhythmogenic potential of diuretic-induced hypokalemia in patients with uncomplicated hypertension has been controversial. Thirty-two hypertensive patients with previous diuretic-induced hypokalemia, normal 24-hour ambulatory ECG monitoring, and normal exercise testing were treated with 100 mg hydrochlorothiazide (HCTZ) daily (Group 1) to induce hypokalemia or with a combination of HCTZ with amiloride (Group 2) to attempt to maintain plasma potassium levels in the normal range during diuretic therapy. Those Group 1 patients (Group 1A) with increased ventricular ectopic activity (VEA) during HCTZ therapy were subsequently potassium-repleted with amiloride and with supplemental potassium chloride to evaluate the effect of these treatments on VEA. One Group 1 patient died suddenly after 12 days of HCTZ therapy. Autopsy findings suggested an arrhythmic death. Six Group 1 patients who had increased VEA with HCTZ treatment had reductions in VEA with amiloride or supplemental potassium chloride. Group 2 patients did not have a significant increase in VEA. Thus, diuretic therapy appears to cause VEA primarily by electrolyte changes that are induced.

Adult↗

Metabolic effects of hydrochlorothiazide and enalapril during treatment of the hypertensive diabetic patient. Enalapril for hypertensive diabetics.

To determine the effect of enalapril maleate and low-dose hydrochlorothiazide therapy on blood pressure and glucose and lipid homeostasis in hypertensive type II diabetic patients, we treated nine of these patients sequentially with placebo, hydrochlorothiazide (25 mg/d with supplemental potassium chloride), and enalapril (10 to 20 mg/d). Sitting blood pressure fell significantly and to comparable levels with both hydrochlorothiazide and enalapril monotherapy. Enalapril monotherapy was associated with a slight, but not significant, fall in fasting blood glucose levels and with a significant fall in hemoglobin A1c levels. This improved glucose homeostasis could not be explained satisfactorily by changes in peripheral insulin sensitivity or hepatic glucose output, determined with the euglycemic clamp technique, or by changes in fasting serum insulin levels or monocyte insulin binding. In these low doses, hydrochlorothiazide did not worsen glucose homeostasis. Serum total cholesterol levels were significantly lower with enalapril therapy than with hydrochlorothiazide therapy or with placebo, and serum high-density lipoprotein cholesterol and triglyceride levels did not change significantly with either treatment. Thus, by providing effective blood pressure control and beneficial metabolic effects, enalapril therapy appears ideal for treatment of hypertension in diabetic patients. Similarly, low-dose hydrochlorothiazide therapy appears to have fewer metabolic complications in these patients and is, therefore, a logical alternative to substitute for, or add to, enalapril therapy.

Adult↗