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Molecular and Cellular Biochemistry|June 22, 2022
Simulation of COVID-19 symptoms in a genetically engineered mouse model: implications for the long haulersMahavir Singh, Sathnur Pushpakumar, Nia Bard, et al.International Immunology|March 30, 2006
Polymeric IgR knockout mice are more susceptible to mycobacterial infections in the respiratory tract than wild-type miceAnna Tjärnlund, Ariane Rodríguez, Pere-Joan Cardona, et al.Experimental Eye Research|May 28, 2018
Circular RNAs profiling in the cystathionine-β-synthase mutant mouse reveals novel gene targets for hyperhomocysteinemia induced ocular disordersMahavir Singh, Akash K George, Rubens Petit Homme, et al.Proteomics|September 13, 2007
Identification of novel bacterial plasminogen-binding proteins in the human pathogen Mycobacterium tuberculosisWendy Xolalpa, Antonio J Vallecillo, Martha Lara, et al.Physiological Reports|August 20, 2022
Hydrogen sulfide mitigates skeletal muscle mitophagy-led tissue remodeling via epigenetic regulation of the gene writer and eraser functionMahavir Singh, Sathnur Pushpakumar, Yuting Zheng, et al.Frontiers in Immunology|September 25, 2020
Hidradenitis Suppurativa and 1-Carbon Metabolism: Role of Gut Microbiome, Matrix Metalloproteinases, and HyperhomocysteinemiaJack Molnar, Carissa Jo Mallonee, Dragana Stanisic, et al.Plos One|April 27, 2010
Fitness of Mycobacterium tuberculosis strains of the W-Beijing and Non-W-Beijing genotypeAndrea von Groll, Anandi Martin, Matthias Stehr, et al.Current Microbiology|February 27, 2025
Designing, Synthesis and In Vitro Antimicrobial Activity of Peptide Against Biofilm Forming Methicillin Resistant Staphylococcus aureusJasleen Kaur, Anshul Lather, Pawanjit Singh Cheema, et al.American Journal of Physiology. Cell Physiology|August 16, 2018
Hydrogen sulfide alleviates hyperhomocysteinemia-mediated skeletal muscle atrophy via mitigation of oxidative and endoplasmic reticulum stress injuryAvisek Majumder, Mahavir Singh, Jyotirmaya Behera, et al.Cell Death and Differentiation|February 17, 2018
SIRT2 regulates oxidative stress-induced cell death through deacetylation of c-Jun NH<sub>2</sub>-terminal kinaseMohsen Sarikhani, Sneha Mishra, Perumal Arumugam Desingu, et al.Pageof 31