Chandramani Pathak
MGM Institute of Health Sciences Navi Mumbai, Amity University Gurgaon, Jiwaji University, Indian Institute of Advanced Research
About
The major focus of our group is to understand the cell death and inflammatory signaling pathways activated during physiological and pathological conditions. Programmed cell death (apoptosis) is a physiological process that is responsible for removal of unwanted cells during embryonic development, tissue homeostasis, immune cell maturation and elimination of pathogen infected cells. Dysregulation of apoptosis leads to many diseases like neurodegeneration, cancer, inflammatory and metabolic disorders. The research group is focusing to unravel molecular mechanism and cross talk between apoptotic and inflammatory signaling in cancer. It is important to explore possible molecular mechanism and find out cellular targets to regulate critical regulators of cell death to induce apoptosis in cancer cells by modulating the apoptotic signaling which may help to develop potential target for both prevention and therapy. In addition group is also focusing on nanoparticle based drug delivery in cancer cells for intervention of cancer therapy.
Employment
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MGM Institute of Health Sciences Navi Mumbai Professor2022 - Present
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Amity University Gurgaon Associate Professor2020 - Present
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Indian Institute of Advanced Research Associate Professor & Head2009 - 2020
Education
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Jiwaji University Ph.D.2002 - 2007
Projects & Funding
Projects & funding information is unavailable.
Publications (40)
- Molecular Perspective on Proteases: Regulation of Programmed Cell Death Signaling, Inflammation and Pathological Outcomes Save
- Insights of Endocytosis Signaling in Health and Disease Save
- Synthesis, Characterization, and Biological Evaluation of Osmium(IV) Pyrazole Carbothioamide Complexes Save
- Molecular and cellular paradigms of multidrug resistance in cancer Save
- Surface modified PAMAM dendrimers with gallic acid inhibit, cell proliferation, cell migration and inflammatory response to augment apoptotic cell death in human colon carcinoma cells Save
- Synthesis, characterization, and biological applications of pyrazole moiety bearing osmium(IV) complexes Save
- Tetrazolo[1,5-a]quinoline moiety-based Os(IV) complexes: DNA binding/cleavage, bacteriostatic and photocytotoxicity assay Save
- Fluorescence, DNA Interaction and Cytotoxicity Studies of 4,5-Dihydro-1H-Pyrazol-1-Yl Moiety Based Os(IV) Compounds: Synthesis, Characterization and Biological Evaluation Save
- Molecular insights of NADPH oxidases and its pathological consequences Save
- AGE-RAGE synergy influences programmed cell death signaling to promote cancer Save