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Vaccines|September 8, 2015
Perspectives for Developing New Tuberculosis Vaccines Derived from the Pathogenesis of Tuberculosis: I. Basic Principles, II. Preclinical Testing, and III. Clinical TestingArthur M Dannenberg, Bappaditya DeySeminars in Immunology|October 12, 2014
Crosstalk between Mycobacterium tuberculosis and the host cellBappaditya Dey, William R BishaiBMC Genomics|October 4, 2012
Development of the first oligonucleotide microarray for global gene expression profiling in guinea pigs: defining the transcription signature of infectious diseasesRuchi Jain, Bappaditya Dey, Anil K TyagiScientific Reports|May 11, 2013
Adjunctive immunotherapy with α-crystallin based DNA vaccination reduces Tuberculosis chemotherapy period in chronically infected micePriyanka Chauhan, Ruchi Jain, Bappaditya Dey, et al.International Journal of Biological Macromolecules|February 22, 2025
Transcriptome profiling in an in vitro peripheral blood mononuclear cell - Mycobacterium tuberculosis infection model reveals breed-specific immune gene signatures potentially associated with tuberculosis susceptibility in cattleRishi Kumar, Sripratyusha Gandham, Hemanta Kumar Maity, et al.The Journal of Infectious Diseases|March 23, 2019
Bacillus Calmette-Guérin Overexpressing an Endogenous Stimulator of Interferon Genes Agonist Provides Enhanced Protection Against Pulmonary TuberculosisRuchi Jain Dey, Bappaditya Dey, Alok Kumar Singh, et al.Frontiers in Microbiology|August 13, 2024
Restriction of growth and biofilm formation of <i>ESKAPE</i> pathogens by caprine gut-derived probiotic bacteriaPrerna Saini, Repally Ayyanna, Rishi Kumar, et al.Frontiers in Immunology|October 5, 2023
Divergent proinflammatory immune responses associated with the differential susceptibility of cattle breeds to tuberculosisRishi Kumar, Sripratyusha Gandham, Avi Rana, et al.Communications Biology|April 4, 2025
A bovine pulmosphere model and multiomics reveal early host response signature in tuberculosisVinay Bhaskar, Rishi Kumar, Manas Ranjan Praharaj, et al.Current Research in Microbial Sciences|June 17, 2026
Targeting cyclic di-AMP signaling through diadenylate cyclase inhibition reduces methicillin resistance in clinical MRSA isolatesNiti Kumari, Itishree Jali, Priyanka Garg, et al.Pageof 3