Publications
Department of Medicine faculty members published more than 3,600 peer-reviewed articles in 2024.
2014
OBJECTIVE
In a rural Ugandan community scaling up antiretroviral therapy (ART), we sought to determine if population-based HIV RNA levels [population viral load (VL)] decreased from 2011 to 2012.
DESIGN
Serial cross-sectional analyses (May 2011 and May 2012) of a defined study community of 6300 persons in a district with HIV prevalence of 8%.
METHODS
We measured HIV-1 RNA (VL) levels on all individuals testing positive for HIV during a 5-day high-throughput multidisease community health campaign in May 2012 that recruited two-thirds of the population. We aggregated individual-level VL results into population VL metrics including the proportion of individuals with an undetectable VL and compared these VL metrics to those we previously reported for this geographic region in 2011.
RESULTS
In 2012, 223 of 2179 adults were HIV-seropositive adults (10%). Overall, among 208 of 223 HIV-seropositive adults in whom VL was tested, 53% had an undetectable VL [95% confidence interval (CI): 46 to 60], up from 37% (95% CI: 30 to 45; P = 0.02) in 2011. Seven (3%) individuals had a VL of >100,000 copies/mL in 2012, down from 21 (13%) in 2011 (P = 0.0007). Mean log (VL) (geometric mean) was 3.18 log (95% CI: 3.06 to 3.29 log) in 2012, down from 3.62 log (95% CI: 3.46 to 3.78 log) in 2011 (P < 0.0001). Similar reductions in population VL were seen among men and women.
CONCLUSIONS
Reductions in population VL metrics and a substantial increase in the proportion of persons with an undetectable VL were observed in a rural Ugandan community from 2011 to 2012. These findings from a resource-limited setting experiencing rapid ART scale-up may reflect a population-level effectiveness of expanding ART access.
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BACKGROUND
HIV infection has been associated with dyslipidemia, insulin resistance, and changes in body composition, including loss of subcutaneous fat and skeletal muscle, with relative sparing of upper trunk and visceral fat. Because of its resemblance to Cushing's syndrome, caused by glucocorticoid excess, we hypothesized that variations in the glucocorticoid receptor (GR) gene, associated with changes in sensitivity to glucocorticoids, may be associated with such abnormalities in HIV-infected patients.
DESIGN
This was a cross-sectional genetic association study.
MATERIALS AND METHODS
GR polymorphisms were determined in HIV-infected participants from the study of Fat Redistribution and Metabolic Change in HIV Infection (FRAM). We created haplotypes in 754 participants and assessed the associations with fasting metabolic parameters and body composition by MRI.
RESULTS
After stratification for ethnicity, we found no consistent pattern of associations between the described GR haplotypes and body composition or metabolic parameters in HIV-infected patients. However, we found a new haplotype comprising the Tth111I polymorphism in African-Americans. Heterozygous carriers of this haplotype (n=24) had significantly higher levels of high-density lipoprotein cholesterol compared with age-matched and sex-matched noncarriers (n=96) (median 55 vs. 44 mg/dl, P=0.026) and a tendency toward lower glucose (-5 mg/dl) and triglyceride (-21 mg/dl) levels and lower visceral adipose tissue mass (-0.22 l). CD4 count as well as skeletal muscle mass were also lower in carriers of this haplotype (-154 cells/μl and -1.6 l, respectively).
CONCLUSION
Although our cohort included only a small number of carriers of the new Tth111I haplotype, these results are suggestive that this GR haplotype may be associated with a healthier metabolic profile in African-Americans with HIV infection.
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2014
There is a marked increase in cytokines, including interferon gamma, in cutaneous diseases such as atopic dermatitis and psoriasis. In this issue of the Journal, Tawada and colleagues demonstrate that the quantity of ultra long-chain ceramides in the stratum corneum, which play a key role in maintaining the permeability barrier, is reduced in atopic dermatitis and psoriasis. Further, they demonstrate that interferon gamma decreases the expression of the enzymes required for the synthesis of these ultra long-chain ceramides (ELOVLs and ceramide synthase 3). These results suggest that an increase in interferon gamma by decreasing the key enzymes required for the synthesis of ultra long-chain ceramides could further impair permeability barrier function, thereby exacerbating the pathological changes.
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Recent changes in the global climate system have resulted in excess mortality and morbidity, particularly among susceptible individuals with preexisting cardiopulmonary disease. These weather patterns are projected to continue and intensify as a result of rising CO2 levels, according to the most recent projections by climate scientists. In this Pulmonary Perspective, motivated by the American Thoracic Society Committees on Environmental Health Policy and International Health, we review the global human health consequences of projected changes in climate for which there is a high level of confidence and scientific evidence of health effects, with a focus on cardiopulmonary health. We discuss how many of the climate-related health effects will disproportionally affect people from economically disadvantaged parts of the world, who contribute relatively little to CO2 emissions. Last, we discuss the financial implications of climate change solutions from a public health perspective and argue for a harmonized approach to clean air and climate change policies.
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2014
The immune system and bone are intimately linked with significant physical and functionally related interactions. The innate immune system functions as an immediate response system to initiate protections against local challenges such as pathogens and cellular damage. Bone is a very specific microenvironment, in which infectious attack is less common but repair and regeneration are ongoing and important functions. Thus, in the bone the primary goal of innate immune and bone interactions is to maintain tissue integrity. Innate immune signals are critical for removal of damaged and apoptotic cells and to stimulate normal tissue repair and regeneration. In this review we focus on the innate immune mechanisms that function to regulate bone homeostasis.
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