Publications
Department of Medicine faculty members published more than 3,600 peer-reviewed articles in 2024.
2011
2011
2011
2011
Multiple internal and external sites of the healthy human body are colonized by a diversity of symbiotic microbes. The microbial assemblages found in the intestine represent some of the most dense and diverse of these human-associated ecosystems. Unsurprisingly, the enteric microbiome, that is the totality of microbes, their combined genomes, and their interactions with the human body, has a profound impact on physiological aspects of mammalian function, not least, host immune response. Lack of early-life exposure to certain microbes, or shifts in the composition of the gastrointestinal microbiome have been linked to the development and progression of several intestinal and extra-intestinal diseases, including childhood asthma development and inflammatory bowel disease. Modulating microbial exposure through probiotic supplementation represents a long-held strategy towards ameliorating disease via intestinal microbial community restructuring. This field has experienced somewhat of a resurgence over the past few years, primarily due to the exponential increase in human microbiome studies and a growing appreciation of our dependence on resident microbiota to modulate human health. This review aims to review recent regulatory aspects related to probiotics in food. It also summarizes what is known to date with respect to human gastrointestinal microbiota - the niche which has been most extensively studied in the human system - and the evidence for probiotic supplementation as a viable therapeutic strategy for modulating this consortium.
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We present the case of a 59-year-old woman with a history of plastic surgery at the forehead who complained of progressive indentations at the frontal skull. CT and MR scans revealed significant bone thinning, presenting as lytic skull lesions, which progressed over a period of 3 years. Biopsies were obtained from the lytic lesions and histology showed fibrotic tissue, synthetic residue of previous cosmetic procedure, and no evidence of infection or neoplasm. Progressive cranial bone resorption places the patient at increased risk for cerebral injury. This case highlights a potential complication after cosmetic facial surgery, with bony resorption resulting in both skull deformation and increased risk for cerebral injury.
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INTRODUCTION
The clinical scenario of a new or worsening pleural effusion following the initiation of antituberculous therapy has been classically referred to as a 'paradoxical' pleural response, presumably explained by an immunological rebound phenomenon. Emerging evidence suggests that there also may be a role for a lupus-related reaction in the pathophysiology of this disorder.
CASE PRESENTATION
An 84-year-old Asian man treated with isoniazid, along with rifampin, pyrazinamide and ethambutol for suspected extrapulmonary tuberculosis, presented with a recurrent pleural effusion, his third episode since the initiation of this therapy. The first effusion occurred one month after the start of treatment, without any prior evidence of pulmonary tuberculosis involvement. Follow-up testing, including thoracoscopic pleural biopsies, never confirmed tuberculosis infection. Further evaluation yielded serological evidence suggesting drug-induced lupus. No effusions recurred following the discontinuation of isoniazid, although other antituberculosis medications were continued.
CONCLUSION
The immunological rebound construct is inconsistent with the evolution of this case, which indicates rather that drug-induced lupus may explain at least some cases of new pleural effusions following the initiation of isoniazid.
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The receptor-like tyrosine phosphatase CD45 positively regulates antigen receptor signaling by dephosphorylating the inhibitory tyrosine of the src family kinases. CD45-deficient mice fail to fully unmask the role of CD45 in B cells because of the expression of a partially redundant tyrosine phosphatase, CD148. However, mice that are doubly deficient in CD45 and CD148 exhibit a very early block in B-cell development, thereby obscuring later roles for CD45. To overcome these limitations, here we take advantage of an allelic series of mice in which CD45 expression is titrated broadly (0-180%). Although high expression of CD45 inhibits T-cell receptor (TCR) signaling, we show that CD45 plays a purely positive regulatory role during B-cell receptor (BCR) signaling. In concert with exaggerated BCR signaling, increasing CD45 expression drives enhanced receptor editing in the bone marrow and profound loss of follicular and marginal zone B cells in the spleen. In the context of the IgHEL/sHEL model of B-cell tolerance, such high CD45 expression transforms anergy into deletion. Unexpectedly, elimination of the autoantigen sHEL in this model system in order to block clonal deletion fails to rescue survival of mature B cells. Rather, high CD45 expression reduces B-cell activating factor receptor (BAFFR) expression and inhibits B-cell activating factor (BAFF)-induced B-cell survival in a cell-intrinsic manner. Taken together, our findings reveal how CD45 function diverges in T cells and B cells, as well as how autoreactive B cells are censored as they transit development.
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2011