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Biology subjects

Choi, C. H.

Publications and source records attributed to Choi, C. H..

2 recordsLinked to original sources

ATF5-Dependent GDF15 Expression Mediates Anesthesia-Induced Neuroprotection Against Stroke

The incidence of perioperative stroke, a rare but severe complication, is increasing in aging populations. Although anesthetics such as sevoflurane may provide protective preconditioning against ischemic injury, clinical outcomes have been inconsistent. In this study, we demonstrated that sevoflurane-induced neuroprotection is associated with the upregulation of genes involved in the mitochondrial unfolded protein response (UPRmt) and mitochondrial bioenergetic metabolism. Our findings emphasize the critical role of ATF5, a key transcription factor, in mediating these protective effects. Specifically, we observed that sevoflurane preconditioning significantly upregulates ATF5 and its downstream target GDF15 - a regulator of mitochondrial function - in the cerebral cortex. Notably, we found that this mechanistic pathway was not activated in the brain of aged mice, suggesting that age-specific strategies may be necessary for reducing the risk of perioperative stroke. Considering the steadily increasing age of patients, therapeutic approaches that enhance mitochondrial function in the aged brain may provide additional protection against perioperative stroke.

neuroscience↗

Live Malassezia strains isolated from the mucosa of patients with ulcerative colitis

The human gut is inhabited by a complex ecosystem of diverse microorganisms. While most studies on the gut microbiota have focused on bacteria, accumulating evidence has underscored the role of the mycobiota in inflammatory bowel disease (IBD). This study is the first to isolate and characterize live Malassezia globosa strains from the intestinal mucosa of patients with ulcerative colitis. Malassezia species primarily inhabit the human skin. We therefore compared the M. globosa gut isolates with the M. globosa skin isolates and noted a striking disparity between them. The gut isolates led to a greater exacerbation of colitis in mice. Transcriptome analysis revealed that the gut isolates were more sensitive to normoxia than the skin isolates, suggesting adaptation to hypoxia prevalent in the intestinal environment. These findings provide novel insights into the potential impact of M. globosa on the pathogenesis of IBD and the influence of niche-specific adaptations on its virulence.

microbiology↗