Daily Archives: 9 April 2024

Study by UNCG shows connection between selenium and COVID-19 death rates

Chemists at the University of North Carolina at Greensboro have published a paper in the journal Antioxidants, unveiling a novel understanding of how dietary selenium impacts the severity of COVID-19. Their research expands upon earlier findings, pinpointing six proteins within the host that might be targeted by SARS-CoV-2 by confirming that three selenoproteins, known for their roles in antioxidant defence and antiviral activities, were indeed cleaved at predicted sites. They further discovered that the virus’s protease attacks and possibly deactivates glutamate-cysteine ligase catalytic subunit (GCLC), a crucial enzyme in glutathione synthesis. This action undermines the body’s antioxidant defence by impairing a vital selenoprotein’s function and reducing glutathione levels observed in patients with COVID-19, thereby compromising the immune response and facilitating more efficient viral replication.

Ethan W. Taylor, a professor of biomedical chemistry at UNCG and co-author of the study, highlighted the significance of this discovery. He stated that it is the inaugural demonstration of a virus actively targeting human selenium-dependent proteins. He suggested that selenium’s role in biochemistry might be pivotal for enhancing immune defences against COVID.

The study’s authors, including Ignacio A. Gallardo, Daniel A. Todd, Stella T. Lima, Jonathan R. Checkan, Norman H. Chu, and Taylor, leveraged prior research that correlated dietary selenium intake with the outcomes of viral infections. Their current work experimentally verified that the main protease of SARS-CoV-2 could cleave targets in four out of six identified host proteins, including selenoproteins such as thioredoxin reductase 1 (TXNRD1), selenoprotein F, and selenoprotein P, in addition to GCLC. They observed that the cleavage of the full-length TXNRD1 protein by the viral protease led to a loss of its antioxidant functionality by severing its C-terminal redox centre.

Taylor elaborated on the mechanism, noting that the proteins targeted for cleavage by the virus play significant roles in antioxidation and antiviral defence. Reducing disulfide bonds can deactivate viral proteins, which could amplify viral infectivity by undermining the function of several essential proteins.

The research also posits that the virus’s strategy may extend to impeding DNA synthesis to conserve ribonucleotide pools, thereby enhancing RNA synthesis and viral replication. This revelation points to the necessity for further exploration into the clinical benefits of selenium supplementation and various dietary sulfur compounds that serve as glutathione precursors. Such compounds include N-acetyl cysteine (NAC), the combination of NAC and glycine, or gamma-glutamylcysteine (GGC), as well as potential substitutes like alpha lipoic acid (ALA) that mimic glutathione’s effects. This direction could yield new adjunctive treatments for COVID-19, offering symptomatic relief to patients.

More information: Ignacio A. Gallardo, Daniel A. Todd, Stella T. Lima, Jonathan R. Chekan, Norman H. Chiu and Ethan Will Taylor. SARS-CoV-2 Main Protease Targets Host Selenoproteins and Glutathione Biosynthesis for Knockdown via Proteolysis, Potentially Disrupting the Thioredoxin and Glutaredoxin Redox Cycles, Antioxidants. DOI: 10.3390/antiox12030559

Journal information: Antioxidants Provided by University of North Carolina Greensboro

Over a billion individuals worldwide are grappling with obesity

Since 1990, obesity has emerged as the predominant form of malnutrition in numerous countries, experiencing a surge across all demographics, including men, women, children, and adolescents. Specifically, the incidence of obesity in adult males has almost tripled, while the prevalence among women has doubled during the same period. Alarmingly, the obesity rates among children and adolescents have seen a fourfold increase. By 2022, the global count of obese individuals will reach approximately 880 million adults and 160 million children.

The NCD Risk Factor Collaboration, an international collective of health researchers dedicated to assessing and disseminating data on key risk factors affecting countries worldwide, detailed this global malnutrition landscape in partnership with the World Health Organization. Dr. Peter Katzmarzyk of the Pennington Biomedical Research Center in Baton Rouge, serving as Associate Executive Director of Population and Public Health Sciences, contributed to this significant report.

The collaborative effort involved scrutinizing body mass index (BMI) data from over 3,600 studies from 1990 to 2022. This extensive review aimed to chart malnutrition trends attributable to obesity or being underweight across various nations and observe the shifts over the years.

Dr. Katzmarzyk expressed concern over the current obesity trends, which have been upward for over thirty years. Highlighting the importance of addressing obesity within a broader health context, he pointed out the direct correlation between obesity and various comorbidities such as hypertension, heart disease, diabetes, cancer, and obstructive sleep apnea. He stressed the necessity of understanding obesity’s underlying causes to devise effective prevention, treatment, and reversal strategies for its adverse impacts.

Among the 190-plus countries included in the study, the United States was notably high on the list for obesity prevalence, ranking 10th for men and 36th for women, with significant increases observed since 1990. The rates among American boys and girls also climbed, with the U.S. ranking 26th and 22nd globally.

The findings underline the escalating issue of obesity at both the national and state levels, exemplified by Louisiana, where 38% of adults were reported to be obese in 2020, according to County Health Rankings and Roadmaps.

Dr. John Kirwan, Executive Director of Pennington Biomedical, underscored the study’s findings’ alignment with the institution’s mission. He reaffirmed Pennington Biomedical’s dedication to advancing metabolic health, combating metabolic diseases, uncovering obesity triggers, and enhancing overall health. Dr. Kirwan also commended Dr. Katzmarzyk’s contribution to this pivotal global analysis.

Conversely, the study period also saw a decline in the rates of underweight individuals among children, adolescents, and adults worldwide, with a notable decrease in underweight men within certain African countries. Interestingly, in two-thirds of the world’s nations, obesity rates now exceed those of being underweight among boys and girls, highlighting the dual burden of malnutrition.

The study titled “International Study of Childhood Obesity, Lifestyle and the Environment,” spearheaded by Pennington Biomedical and involving over 6,000 children from every inhabited continent, is one of many that have informed these findings. It illustrates the comprehensive effort to understand and address the global obesity epidemic.

More information: Peter T. Katzmarzyk et al, Worldwide trends in underweight and obesity from 1990 to 2022: a pooled analysis of 3663 population-representative studies with 222 million children, adolescents, and adults, The Lancet. DOI: 10.1016/S0140-6736(23)02750-2

Journal information: The Lancet Provided by Pennington Biomedical Research Center