Effects of an exogenous ketone ester using multi-omics in skeletal muscle of aging C57BL/6J male mice (open access)

Effects of an exogenous ketone ester using multi-omics in skeletal muscle of aging C57BL/6J male mice

Article shows that oral R,S-1,3, butanediol diacetoacetate (BD-AcAc2) consumption results in body weight loss or maintenance with moderate increases in circulating ketones. The purpose of this study was to determine if a diet consisting of 25% BD-AcAc2 (ketone ester, KE) would alter body composition, transcriptional regulation, the proteome, and the lipidome of skeletal muscle in aged mice.
Date: November 15, 2022
Creator: Roberts, Brandon M.; Deemer, Sarah E.; Smith Jr., Daniel L.; Mobley, James A.; Musi, Nicolas & Plaisance, Eric P.
System: The UNT Digital Library

Plexcitonic interactions in spherical and bi-pyramidical Au nanoparticles with monolayer WSe₂

Article describes how plasmons associated with zero-dimensional (0D) metal nanoparticles and their synergistic interactions with excitons in two-dimensional (2D) semiconductors offer opportunities for remarkable spectral tunability not otherwise evident in the pristine parent materials, which necessitates an in-depth study elucidating the nature of the plasmonic and excitonic interactions, jointly referred to as plexcitons in order to understand the foundational aspects of the light–matter interactions in hybrid 0D–2D systems. The authors examine the plexcitonic interactions of van der Waals (vdWs) hybrid structures composed of 2D WSe2 and 0D Au nanoparticles (Au-NPs) in their spherical (Au-Sp) and bi-pyramidical (Au-BP) architectures, which demonstrates that geometry-mediated response of the AuNPs provides another degree of freedom to modulate the carrier photodynamics in WSe₂.
Date: November 15, 2022
Creator: Jayanand, Kishan & Kaul, Anupama
System: The UNT Digital Library
The protein conformational basis of isoflavone biosynthesis (open access)

The protein conformational basis of isoflavone biosynthesis

Authors of the article assert that isoflavonoids play important roles in plant defense and also exhibit a range of mammalian health-promoting activities. They emphasize that understanding the structural basis of isoflavone biosynthesis will facilitate the engineering of new bioactive isoflavonoids.
Date: November 15, 2022
Creator: Wang, Xiaoqiang; Pan, Haiyun; Sagurthi, Someswar; Paris, Vincent; Zhuo, Chunliu & Dixon, R. A.
System: The UNT Digital Library