: Chronic alcohol consumption has been observed to be associated with a range of cognitive impairments that impact on treatment management. In this spectroscopy study, we examined the association of N-Acetyl Aspartate (NAA), a marker of neuronal integrity, and cognitive impairment in alcohol dependent patients.: Using proton magnetic resonance spectroscopy (H-MRS), we examined brain metabolite levels in 31 alcohol dependent individuals. H-MRS from the parietal lobe were analyzed to yield absolute concentrations of NAA. Alcohol history, neurocognitive function including Clock Drawing Test (CDT), Mini Mental State Exam (MMSE), Trial Making Test (TMT) and Balloon Analogue Risk Task (BART) were also assessed. Covariates included concurrent medication, age and recent alcohol consumption.: There were statistically significant bivariate associations between NAA and the variables age, CDT and BART (r = -.45, = 01; r = -.53, = .01; = .49, = .02) respectively) but there were no statistically significant associations with other measures of cognitive function. Controlling for age, concurrent medication and recent alcohol consumption, multiple linear regression revealed a negative association between parietal NAA (Model: = 6.96, = .66, = .001) and CDT scores ( = -.35, = .03), a positive association with BART scores ( = .47, = .02).: These results demonstrate that in alcohol dependent patients lower NAA/Cr is associated with reduced cognitive functioning and increased risk-taking.
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http://dx.doi.org/10.1080/13803395.2019.1685078 | DOI Listing |
Wiad Lek
January 2025
DEPARTMENT OF PHARMACOLOGY AND TOXICOLOGY, FACULTY OF PHARMACY, UNIVERSITY OF KUFA, KUFA, IRAQ.
Objective: Aim: Testing Cordia myxa extract on colon cancer cell line and caspase-3 gene and COX-2 protein expression.
Patients And Methods: Materials and Methods: This study used Cordia myxa ethanolic extract at various dosages on SW480 cells. Cell proliferation was measured using MTT, also examined effect of Cordia myxa extract on caspase-3 gene expression using quantitative real-time polymerase chain reaction.
J Am Chem Soc
January 2025
Center for Sustainable Catalysis and Engineering, KU Leuven, Celestijnenlaan 200F, Leuven 3001, Belgium.
The local environment of the active site, such as the confinement of hydronium ions within zeolite pores, significantly influences catalytic turnover, similar to enzyme functionality. This study explores these effects in the hydrolysis of guaiacols─lignin-derived compounds─over zeolites in water. In addition to the interesting catechol products, this reaction is advantageous for study due to its bimolecular hydrolysis pathway, which involves a single energy barrier and no intermediates, simplifying kinetic studies and result interpretation.
View Article and Find Full Text PDFEnviron Technol
February 2025
Technology Institute, University of Passo Fundo, Passo Fundo, RS, Brazil.
Food waste offers a potential source for bioethanol production, but productivity depends on the chemical composition of the raw materials and the processes involved. However, assessment of the environmental sustainability of these processes is often absent and can be carried out using the Life Cycle Assessment (LCA) methodology. This study aimed to perform an LCA on bioethanol production from mixtures of different wastes, including tubers, fruits, and processed foods, focusing on the gate-to-gate phase.
View Article and Find Full Text PDFJAMA Netw Open
January 2025
Laboratory of NeuroImaging, National Institute on Alcohol Abuse and Alcoholism, Bethesda, Maryland.
Importance: Cannabis use has increased globally, but its effects on brain function are not fully known, highlighting the need to better determine recent and long-term brain activation outcomes of cannabis use.
Objective: To examine the association of lifetime history of heavy cannabis use and recent cannabis use with brain activation across a range of brain functions in a large sample of young adults in the US.
Design, Setting, And Participants: This cross-sectional study used data (2017 release) from the Human Connectome Project (collected between August 2012 and 2015).
Langmuir
January 2025
CHRIST University, Bangalore, Karnataka 560029, India.
Given the inherent challenges of the CO electroreduction (COER) reaction, solely from CO and HO, it is desirable to develop selective product formation pathways. This can be achieved by designing multimetallic nanocomposites that provide optimal CO coverage, allowing for tunability in the product formation. In this work, Ag and Zn codoped-SrTiO (ZAST) composite immobilized carbon black (CB)-modified GCE working electrode (ZAST@CB/GCE) was developed for the electrochemical conversion of CO to multicarbon products.
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