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Biology subjects

Gupta, L.

Publications and source records attributed to Gupta, L..

2 recordsLinked to original sources

Ferroptosis governs lymphatic vessel growth and regression

Whether, when, and how lymphatic vessels undergo cell death remains poorly understood. Here we identify ferroptosis as a physiological, cell-intrinsic regulator of the lymphatic endothelial cell survival during development and following injury, in stark contrast to the resilient organotypic blood endothelial cells. The lymphatic susceptibility to ferroptosis stems from tampered cystine/ hydropersulfide metabolism, alongside reduced glutathione availability triggered by an SH3RF3 E3 ligase mediated GPX4 degradation, and enhanced integration of polyunsaturated fatty acid enriched membrane phospholipids. Inducing ferroptosis genetically or pharmacologically elevated lymphatic lipid peroxidation, halted embryonic lymphangiogenesis and prevented post-injury lymphatic overgrowth while simultaneously shaped immune responses. Conversely, ferroptosis inhibition through saturated fatty acid supplementation led to pathological lymphatic hyperplasia. Targeting lymphatic ferroptotic mechanisms holds promise against pathological lymphatic growth in response to injury.

cell biology↗

Temporal Vascular Endothelial Growth Factor Sub-type gene Switching in SARS-CoV Pathogenesis. Interpretation through in vivo Murine C57BL Models

This study examines temporal gene expression (GE) patterns in a murine model of SARS-CoV infection. We focused on a Temporal Gene Set (TGS) comprising pro-inflammatory genes (TNF, NFKB1, VEGF-A) and VEGF-B. A systematic search of the NCBI Geo database for MA15 (SARS-CoV) pulmonary studies using C57BL Wild (WT) mice and filtering according to TGS GE patterns eluded seven datasets for further analysis. Encompassing the GE profiles from these datasets alluded to a rising and falling pattern in TNF and NFKB1 GE. Also, our findings reveal a temporal decrease in VEGF-A GE coinciding with an increase in VEGF-B GE post-immunogenic stimulation. Notably, differential responses were observed with the MA15 dosage and in comparison, to other antigens (dORF6 and NSP16). Further, the human SARS-CoV-2 gene enrichment in this murine study confirms the MA15 murine models relevance for SARS research. Our study also suggests potential interactions between SARS-CoV-2 Spike protein and VEGF-related receptors, hinting at other pathophysiological mechanisms. Our results indicate severe inflammation may lead to a flattened VEGF-B GE response, influencing VEGF-Bs cell survival role. We underline the significance of considering VEGF-A/B interactions, particularly temporal differences, in manipulating angiogenic processes. Future research needs to consider temporal changes in VEGF-A and VEGF-B GE, in terms of time-associated gene-switching, in line with changing host inflammation.

immunology↗