bioRxiv Science⌕ Search

Biology subjects

Pantha, S.

Publications and source records attributed to Pantha, S..

3 recordsLinked to original sources

Biological Sex Differences after High and Low Doses of Influenza A Virus Infection in a Diet-induced Obesity Mouse Model

Obesity is an independent risk factor for influenza A virus (IAV) pathogenesis. In non-obese hosts, following IAV infection, adult females develop more severe disease than males. Limited research on biological sex differences following IAV infection in individuals with obesity forms the basis for this study. Male and female C57BL/6J mice were treated with high-fat or low-fat diets to obtain mice with or without obesity. They were inoculated intranasally with a high (103) or low dose (101.5 TCID50) of mouse-adapted A/California/04/2009 H1N1 IAV and followed for 21 days post-infection (dpi) for morbidity. Subsets of mice were euthanized at different dpi to measure lung virus titers, histopathological changes, cellular infiltration, and cytokine induction. After a high-dose infection, females with obesity demonstrated shorter median survival time, greater parenchymal inflammation, and heightened induction of inflammatory markers than males with obesity. After a low-dose infection, females than males, and mice with obesity than the non-obese mice, exhibited severe morbidity. Female mice with obesity exhibited the greatest disease severity, where 25% (2/8) reached humane endpoint. Delayed but persistent inflammatory changes were observed in females with obesity, characterized by relatively lower pathological changes, lesser induction of cytokines and chemokines, and reduced myeloid and lymphoid infiltration in the lungs at 3 dpi followed by sustained pathological changes and cytokine and chemokine induction at 21 dpi. Our study suggests that the biological sex difference following IAV infection persists during obesity. Females with obesity experience greater influenza disease severity than males, possibly driven by more severe dysregulation of inflammatory responses. ImportanceThe prevalence of obesity is increasing worldwide. The risk of developing severe disease following influenza virus infection is higher in individuals with obesity. Males and females with obesity differ in terms of fat deposition and inflammatory and metabolic biomarkers. These differences can alter the outcomes of influenza-induced disease pathogenesis. The observation of sex differences in IAV pathogenesis among non-obese hosts underscores the importance of determining whether similar differences occur in the context of obesity. Indeed, our study suggested that females with obesity experience greater disease severity than males with obesity after IAV infection. Understanding the immunological mechanisms of such differences will advance precision medicine approaches to develop safer and more effective preventive and therapeutic strategies against influenza for the high-risk populations with obesity.

immunology↗

Females with Obesity Exhibit Greater Influenza Vaccine-induced Immunity and Protection than Males in a Mouse Model

IntroductionObesity is increasing globally, and it negatively impacts influenza vaccine efficacy. Although sex differences in influenza vaccine responses are studied in non-obese hosts, studies investigating sex differences in influenza vaccine-induced immunity and protection during obesity are limited. Materials and methodsUsing the C57BL/6J mouse model of high-fat diet (HFD)-induced obesity or low-fat diet controls, we investigated sex differences in influenza vaccine-induced immunity and protection during obesity. Male and female mice with or without obesity were vaccinated intramuscularly twice at a 3-week interval with an inactivated 2009 H1N1 influenza A virus (IAV) vaccine. At 35 days post-vaccination (dpv), antibody responses in plasma and B- and T-cell responses in spleen and bone marrow were quantified. At 42 dpv, mice were intranasally challenged with a drift variant of the H1N1 IAV, and disease severity was assessed by monitoring the change in body mass up to 21 days post-challenge (dpc). Subsets of mice were euthanized at 3 dpc to determine pulmonary virus replication (TCID50 assay), histopathology (H&E staining), and cytokine/chemokine responses (multiplex ELISA). ResultsFemale mice, irrespective of diet and obesity status, developed higher antibody responses and were better protected compared to males. Vaccinated males with obesity mounted the poorest antibody responses, experienced a more severe disease, were unable to clear replicating virus from the lungs effectively, and demonstrated heightened pulmonary inflammation. Despite these differences, splenic B- and T-cell frequencies were comparable, suggesting the inefficiency of B cells to produce antibodies in males but not in females with obesity. DiscussionOur findings suggest that sex differences is observed in influenza vaccine-induced immunity and protection during obesity, where males are more severely affected. These findings highlight the importance of considering biological sex and obesity status in influenza vaccine design and testing.

immunology↗

Allele mining, evolutionary genetic analysis of TaHKT1;5 gene and evaluation of salinity stress in selected lines of wheat.

This study reports the novel allelic diversity in HKT 1;5 gene (High Affinity Potassium Transporter) in bread wheat and its phylogenetic relationship among the paralogs/orthologs of in Triticum aestivum and its wild relatives. HKT 1;5 gene is a known and pivotal gene associated with the salinity tolerance in plants upon the discrimination of K+ over Na+ in leaves without change in Na+ concentration in root. This gene was sequenced in a diverse collection of bread wheat, durum wheat, wild relatives, and ditelosomic lines. Sequence analysis in bread wheat led to the identification of four alleles, which could be distinguished by number of SNPs. Sequence comparison between monocot bread wheat and dicot Arabidopsis thaliana revealed that the HKT1;5 gene is conserved at level of exonic regions; however, the presence of transposable elements especially in intronic regions is further intriguing towards evolutionary relatedness. Two paralogous or major alleles observed in Triticum monoccum and Aegilops tauschii were further categorized as sub-alleles based on their SNPs comparison. This gene was absent in T. urartu in accordance with existing evidence, while it was found in A. speltoides (an allelic variant) with a few base pairs insertion in the exon1 region causing a frameshift mutation with an altered amino acids and genomic database mining unveiled additional alleles in this species. Ditelosomic lines with 4DL and 4DS chromosomes revealed a higher similarity with bread and durum wheat respectively. Phylogenetic studies of HKT1;5 orthologs from different Poaceae species revealed the occurrence of five different ortholog groups with taxonomic consistency. Phenotyping based salinity stress experiment distinguished the unknown lines for salinity tolerance and sensitiveness in comparison with known reference lines and possible allelic comparison was made. The salinity stress analysis further revealed that some known drought/heat tolerance lines showed slightly better salinity tolerance with mean values and variability of traits than known saline tolerant wheat line at controlled ambient.

genetics↗