Publications
Department of Medicine faculty members published more than 3,600 peer-reviewed articles in 2024.
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BACKGROUND
Previous studies suggest that beta-adrenergic receptor (betaAR) single nucleotide polymorphisms (SNPs) are associated with out-of-hospital sudden cardiac death (SCD) and overall mortality, but did not specifically examine risk of ventricular arrhythmias (VA).
OBJECTIVE
This study examined the effects of functional SNPs of beta1AR and beta2AR on the risk of VA and SCD in patients with coronary artery disease (CAD).
METHODS
beta1AR (Ser49Gly, Arg389Gly) and beta2AR (Gly16Arg, Gln27Glu) SNPs were genotyped in a case-control study comparing 107 patients with CAD and aborted SCD due to VA with 287 CAD control subjects and 101 healthy control subjects. These variants were also examined in the Heart and Estrogen Replacement Study (HERS) cohort of women with CAD followed for SCD (n = 66) and nonfatal VA (NFVA) (n = 33) over 6.8 years.
RESULTS
In the case-control study, no statistically significant association was observed for the odds of SCD with any of the SNPs or haplotypes tested. Similarly, HERS revealed null effects for these SNPs and haplotypes in relation to risk of SCD, SCD + NFVA, and all-cause mortality. Point estimates and confidence intervals for risk of SCD associated with beta2AR27 were similar in both populations (Glu27 carriers vs Gln27 homozygotes: adjusted odds ratio 1.23 [95% confidence interval 0.75 to 2.03, P = .41] in the case-control study, and adjusted relative risk (RR) 1.18 [95% confidence interval 0.69 to 2.00, P = .55] in HERS). These null findings trend in the opposite direction and differ from previous published estimates (P = .01 and .07, respectively).
CONCLUSION
We did not find an increase in risk of SCD associated with any of these common betaAR polymorphisms.
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The authors' objective was to analyze the impact of respiratory impairment on the risk of physical functional limitations among adults with chronic obstructive pulmonary disease (COPD). They hypothesized that greater pulmonary function decrement would result in a broad array of physical functional limitations involving organ systems remote from the lung, a key step in the pathway leading to overall disability. The authors used baseline data from the Function, Living, Outcomes, and Work (FLOW) study, a prospective cohort study of adults with COPD recruited from northern California in 2005-2007. They studied the impact of pulmonary function impairment on the risk of functional limitations using validated measures: lower extremity function (Short Physical Performance Battery), submaximal exercise performance (6-Minute Walk Test), standing balance (Functional Reach Test), skeletal muscle strength (manual muscle testing with dynamometry), and self-reported functional limitation (standardized item battery). Multiple variable analysis was used to control for confounding by age, sex, race, height, educational attainment, and cigarette smoking. Greater pulmonary function impairment, as evidenced by lower forced expiratory volume in 1 second (FEV(1)), was associated with poorer Short Physical Performance Battery scores and less distance walked during the 6-Minute Walk Test. Lower forced expiratory volume in 1 second was also associated with weaker muscle strength and with a greater risk of self-reported functional limitation (p < 0.05). In conclusion, pulmonary function impairment is associated with multiple manifestations of physical functional limitation among COPD patients. Longitudinal follow-up can delineate the impact of these functional limitations on the prospective risk of disability, guiding preventive strategies that could attenuate the disablement process.
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