Objective: Frailty is characterized by decreased physiological reserve and vulnerability to adverse events in the presence of a stressor such as surgery. We prospectively implemented a preoperative frailty screening and optimization pathway for patients undergoing vascular surgery and assessed its impact on postoperative outcomes.
Methods: As part of an ongoing quality improvement initiative, surgical frailty was assessed prospectively in all patients undergoing inpatient surgery using the Risk Analysis Index (RAI).
Sterile alpha and toll/interleukin receptor motif-containing 1 (SARM1) is a critical regulator of axon degeneration that acts through hydrolysis of NAD following injury. Recent work has defined the mechanisms underlying SARM1's catalytic activity and advanced our understanding of SARM1 function in axons, yet the role of SARM1 signaling in other compartments of neurons is still not well understood. Here, we show in cultured hippocampal neurons that endogenous SARM1 is present in axons, dendrites, and cell bodies and that direct activation of SARM1 by the neurotoxin Vacor causes not just axon degeneration, but degeneration of all neuronal compartments.
View Article and Find Full Text PDFCorrection for 'Cesium carbonate mediated C-H functionalization of perhalogenated 12-vertex carborane anions' by Sergio O. Lovera , , 2022, , 4060-4062, DOI: https://doi.org/10.
View Article and Find Full Text PDFAim: Assessment of the prevalence and prognostic value of gastroenterological manifestations in patients with COVID-19.
Materials And Methods: A single-center retrospective cohort study was carried out. Only cases with laboratory confirmed detection of SARS-CoV-2 virus RNA using polymerase chain reaction in oro-/nasopharyngeal smear samples were subject to analysis.
Herein we report the 3,5-bistrifluoromethylphenyl urea-catalyzed functionalization of unactivated C-H bonds. In this system, the urea catalyst mediates the formation of high-energy vinyl carbocations that undergo facile C-H insertion and Friedel-Crafts reactions. We introduce a new paradigm for these privileged scaffolds where the combination of hydrogen-bonding motifs and strong bases affords highly active Lewis acid catalysts capable of ionizing strong C-O bonds.
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