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Introduction: Healthcare provider burnout is highly prevalent and has negative consequences. However, many healthcare workers in LMICs, including Nepal, rarely recognize or ameliorate it. This problem is worse in rural settings.

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Preliminary test a two stage, self-determination theory (SDT) and participation-based physical activity and peer support intervention for individuals with Chronic Obstructive Pulmonary Disease (COPD). In Stage 1, four focus groups were conducted to provide insights about individuals' needs and experiences with physical activity. In Stage 2, four individuals with COPD aged 76-90 years (50% female) participated in an eight-week online physical activity and peer support intervention.

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Objective: The last decade has seen exponential growth in electronic health tools. However, only a limited number of electronic medication reconciliation tools have been developed and implemented in healthcare settings. Here, we present ConciliaMed, a mobile and web-based tool for healthcare professionals to reconcile the chronic medications of patients undergoing elective surgery.

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Modular Access to Chiral Benzylamines via Ni/Photoredox-Catalyzed Multicomponent Cross-Electrophile Coupling.

Org Lett

January 2025

School of Chemistry and Chemical Engineering, Nanchang University, Nanchang, Jiangxi 330031, P. R. China.

A Ni/photoredox dual-catalyzed multicomponent cross-electrophile coupling of N-vinyl amides with (hetero)aryl halides and (2°, 3°)-alkyl redox-active esters in the presence of cheap reductant Hantzsch ester is reported here. This reductive protocol provides direct access to various synthetically challenging chiral α-arylamides in good yields and excellent enantioselectivities (up to 99% ee, with the majority exceeding 97% ee), which can be further derived into chiral primary and secondary amines. Preliminary experimental studies shed light on the potential catalytic pathways.

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This study evaluated the in vitro antioxidant activity and bioactive compound content of mixed-strain lactic acid bacteria-fermented black mulberry juice (FBMJ) and its protective effects against oxidative stress using physicochemical experiments and a cellular oxidative stress model. We also performed preliminary analyses of polysaccharide structures in FBMJ and identified the dynamic changes in the phenolic profiles of FBMJ during the fermentation process. The results indicated that FBMJ polyphenols can improve cell vitality and prevent HO-induced oxidative stress by reducing intracellular reactive oxygen species concentrations and regulating mitochondrial membrane potential.

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