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Biomedical subjects

Anne C Goldberg

Publications and source records attributed to Anne C Goldberg.

6 recordsLinked to original sources

Effect of plant stanol tablets on low-density lipoprotein cholesterol lowering in patients on statin drugs.

The objective of this study was to show that plant sterols in tablet form provide additional low-density lipoprotein (LDL) cholesterol lowering for patients on statin therapy. Dispersible phytosterol tablets were tested in a double-blind, placebo-controlled, parallel clinical trial. Twenty-six patients who were following the American Heart Association Heart Healthy Diet and on long-term statin therapy were studied for 9 weeks. After 3 weeks of placebo treatment, the subjects were randomized to receive either 1.8 g of soy stanols or placebo for 6 weeks in addition to their usual statin regimen. Stanol tablets reduced LDL cholesterol 9.1% (p = 0.007) or 12.2 mg/dl. Total cholesterol was reduced by 12.9 mg/dl (p = 0.03). A strong inverse correlation (r(s) = -0.82, p = 0.0007) was found between the baseline LDL cholesterol and the percent change in LDL cholesterol observed after stanol treatment. The additional LDL cholesterol lowering with stanol/lecithin tablets provided a potential adjunctive therapy for patients who have not reached their target LDL cholesterol goal during statin therapy.

Adult↗

Phytostanol tablets reduce human LDL-cholesterol.

The feasibility of using solid dosage forms containing stanol lecithin to lower human LDL-cholesterol was investigated. The particle size distribution of a coarse aqueous dispersion of a stanol lecithin mixture was determined at various weight ratios of the components. At a stanol-to-lecithin weight ratio of 1.00-1.50, dispersions could be spray dried and the solid reconstituted with water to produce a particle size distribution that was similar to that of the aqueous dispersion from which it was derived. Two solid dosage forms containing this spray-dried stanol lecithin preparation had different disintegration times--tablets less than 10 min and capsules greater than 45 min. Each delivery system was then tested for LDL-cholesterol reduction activity in a placebo-controlled, double-blind clinical trial containing a total of 52 subjects. After a six-week treatment period, the group that received rapidly disintegrating stanol lecithin tablets (1.26 g stanols daily) experienced a decrease in both LDL-cholesterol and the ratio of LDL-cholesterol to HDL-cholesterol by 10.4% (P = 0.01) and 11.5% (P = 0.03), respectively, relative to placebo. On the other hand, with slowly disintegrating capsules (1.01 g daily) there was no statistically significant difference in any lipid parameter between the active group and placebo group. Taken together, these studies demonstrate that for maximum LDL-cholesterol reduction activity the stanol lecithin formulation must be delivered in a rapidly dispersible form to reach the site of cholesterol absorption.

Administration, Oral↗

A meta-analysis of randomized controlled studies on the effects of extended-release niacin in women.

The present meta-analysis pooled data from 5 double-blind, placebo-controlled studies in 432 patients with dyslipidemia treated with various doses of extended-release niacin. Data were analyzed for possible gender differences in response to treatment. At all doses, mean decreases in low-density lipoprotein cholesterol were greater in women than in men; differences were significant at doses of 1,000 mg (6.8% vs 0.2%, p = 0.006), 1,500 mg (11.3% vs 5.6%, p = 0.013), 2,000 mg (14.8% vs 6.9%, p = 0.010), and 3,000 mg (28.7% vs 17.7%, p = 0.006). Decreases in triglyceride levels also tended to be greater in women than in men but reached significance only at the 1,500-mg dose (28.6% vs 20.4%, p = 0.040). No similar trends or significant gender differences were noted in levels of lipoprotein(a) and high-density lipoprotein cholesterol. This meta-analysis confirms that women respond as well as men, and possibly slightly better, to treatment with extended-release niacin and that it is a safe and effective treatment option for women with dyslipidemia.

Adult↗

Ability of non-high-density lipoprotein cholesterol and calculated intermediate-density lipoprotein to identify nontraditional lipoprotein subclass risk factors in dialysis patients.

BACKGROUND: Non-high-density lipoprotein cholesterol (non-HDL-C) and calculated intermediate-density lipoprotein cholesterol (IDL-C) have been proposed as surrogate markers to estimate apolipoprotein B-containing lipoproteins. The purpose of this study was to determine the validity of non-HDL-C and calculated IDL-C to predict nontraditional lipoprotein risk factors among dialysis patients and to compare the prevalence of these nontraditional risk factors between dialysis modalities. METHODS: The authors performed a cross-sectional analysis comparing standard lipid profile with lipoprotein analysis via nuclear magnetic resonance (NMR) spectroscopy among 186 hemodialysis (HD) and peritoneal dialysis (PD) patients on modern lipid-lowering therapy. RESULTS: The PD group had a significantly higher low-density lipoprotein (LDL) particle concentration (P < 0.005), higher large very low-density lipoprotein (VLDL; P < 0.001), greater small dense LDL (P < 0.001), and lower protective large HDL (P < 0.005). Forty-six (40%) of 118 subjects with LDL-C below goal had at least 1 nontraditional risk factor by NMR spectroscopy. The sensitivity of non-HDL-C method together with triglyceride (TG) value greater than 200 mg/dL (>2.26 mmol/L) to predict nontraditional risk was 13% and increased to 20% if TG values were excluded. A negative correlation was observed between LDL particle size and HDL-C (r2 = 0.269; P < 0.001); the sensitivity of HDL-C to predict LDL size was 92%. There was no relationship between measured IDL by NMR and calculated IDL-C (r2 = 0.005; P = 0.69). CONCLUSION: Non-HDL-C greater than 130 mg/dL (3.4 mmol/L) independent of TG values and HDL-C lower than 40 mg/dL (1.0 mmol/L) may predict nontraditional lipoprotein risk factors among dialysis patients. This is especially applicable to patients on PD, a modality associated with a more atherogenic lipoprotein profile.

Aged↗

Efficacy and safety of ezetimibe coadministered with simvastatin in patients with primary hypercholesterolemia: a randomized, double-blind, placebo-controlled trial.

OBJECTIVE: To compare the efficacy and safety of 10 mg of ezetimibe coadministered with simvastatin with the safety and efficacy of simvastatin monotherapy for patients with hypercholesterolemia. PATIENTS AND METHODS: This multicenter double-blind, placebo-controlled, factorial study enrolled 887 patients with hypercholesterolemia (low-density lipoprotein cholesterol [LDL-C], 145-250 mg/dL; triglycerides, < or = 350 mg/dL). Patients were randomized to 1 of 10 treatments--placebo, ezetimibe at 10 mg/d, simvastatin at 10, 20, 40, or 80 mg/d, or simvastatin at 10, 20, 40, or 80 mg/d plus ezetimibe at 10 mg/d for 12 weeks. The study began March 13, 2001, and ended January 8, 2002. The primary efficacy end point was the mean percent change in LDL-C levels from baseline to study end point (last available postbaseline LDL-C measurement) for the pooled ezetimibe/simvastatin group vs the pooled simvastatin monotherapy group. RESULTS: Coadministration of ezetimibe/simvastatin was significantly (P<.001) more effective than simvastatin alone in reducing LDL-C levels for the pooled ezetimibe/simvastatin vs pooled simvastatin analysis and at each specific dose comparison. The decrease in LDL-C levels with coadministration of ezetimibe and the lowest dose of simvastatin, 10 mg, was similar to the decrease with the maximum dose of simvastatin, 80 mg. A significantly (P<.001) greater proportion of patients in the ezetimibe/simvastatin group achieved target LDL-C levels compared with those in the monotherapy group. Treatment with ezetimibe/simvastatin also led to greater reductions in total cholesterol, triglyceride, non-high-density lipoprotein cholesterol, and apolipoprotein B levels compared with simvastatin alone; both treatments increased high-density lipoprotein cholesterol levels similarly. The safety and tolerability profiles for the ezetimibe/simvastatin and monotherapy groups were similar. CONCLUSION: Through dual inhibition of cholesterol absorption and synthesis, coadministration of ezetimibe/simvastatin offers a highly efficacious and well-tolerated lipid-lowering strategy for treating patients with primary hypercholesterolemia.

Adult↗

Fat-free foods supplemented with soy stanol-lecithin powder reduce cholesterol absorption and LDL cholesterol.

OBJECTIVE: The objective of this work was to show that fat-free, lecithin-formulated soy stanols lower cholesterol absorption and serum LDL cholesterol. DESIGN: Reduction in cholesterol absorption was measured in paired single-meal tests with or without formulated soy stanols (acute test), and changes in serum lipids were investigated in a 10-week, randomized, double-blind parallel trial in which formulated stanols or lecithin vehicle were given three times daily for the last 4 weeks (chronic test). SUBJECTS/SETTING: Forty-five normal or mildly hypercholesterolemic subjects were recruited for both studies. The 21 subjects (16 female, 5 male; mean age 32.5 years) in the absorption studies had the following mean lipid values: LDL cholesterol, 2.79 mmol/L and total cholesterol, 4.73 mmol/L. For the lipid reduction, 24 subjects (16 female, 8 male; mean age 50.6 years) were enrolled with mean LDL cholesterol and total cholesterol of 3.72 mmol/L and 5.66 mmol/L, respectively. INTERVENTION: Reduction in cholesterol absorption was measured using a lemonade beverage or egg whites that contained 625 mg stanols. Throughout the chronic study, subjects followed the American Heart Association Step I diet. During the 4-week treatment phase, subjects consumed daily a lemonade-flavored beverage containing either placebo or formulated soy stanols (1.9 g). MAIN OUTCOME MEASURES: Inhibition of cholesterol absorption was determined from the difference in plasma deuterated cholesterol enrichment after a test meal containing stanol-lecithin and one with lecithin vehicle only. In the chronic study, the primary endpoints were changes in LDL and total cholesterol. STATISTICAL ANALYSES PERFORMED: Paired or unpaired t tests were used to determine statistical significance. RESULTS: Stanol-lecithin reduced cholesterol absorption by 32.1% (P=.0045, n=10) and by 38.2% (P=.0022, n=11) when delivered in a lemonade-flavored beverage and in egg whites, respectively. Reduction in cholesterol absorption was strongly related to the initial level of absorbed cholesterol tracer in serum (r(s)=-0.739). Stanol-lecithin given in a beverage reduced total serum cholesterol by 10.1% (P=.0019, n=24) and LDL cholesterol by 14.3% (P=.0016, n=24). APPLICATIONS/CONCLUSIONS: Powdered soy stanol-lecithin lowers cholesterol absorption and LDL cholesterol when consumed in fat-free foods.

Adult↗