About
As a Postdoctoral Researcher at Sri Sathya Sai Institute of Higher Learning, I lead the establishment of a zebrafish facility and drive multi-omic research to uncover disease mechanisms. With a strong foundation in disease biology, I bridge academia and applied research, focusing on identifying therapeutic targets through omic data integration and in silico analysis.
My research has contributed to multiple publications, providing insights into disease-associated pathways and advancing our understanding of neurodegenerative diseases. Leveraging expertise in metabolomics, omic data interpretation, multi-color flow cytometry, and yeast functional genomics, I aim to drive meaningful scientific discoveries. Passionate about learning, mentorship, and collaboration, I strive to foster innovation in disease biology and translational research.
Employment
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Sri Sathya Sai Institute of Higher Learning Research Scientist II2026 - Present
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Sri Sathya Sai Institute of Higher Learning Post Doctoral Fellow2023 - Present
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Sri Sathya Sai Institute of Higher Learning Research Scholar2016 - 2023
Education
Education history is unavailable.
Projects & Funding
Projects & funding information is unavailable.
Publications (22)
- Clopidogrel modulate deregulated metabolic pathways in cuprizone fed mice model of Multiple Sclerosis Save
- Functional implications of SNPs in spliceosomal network: a structural systems biology approach Save
- Serum Metabolomic Signature of Gliomas in an Indian Cohort: Identification of Grade-Specific Alterations and Potential Biomarkers Save
- Metabolomic signatures associated with the risk of secondary cardiovascular events in patients post-myocardial infarction Save
- Network pharmacology approach to the study of therapeutic role of selected phenolics on diabetic pancreatic islet cells based on multi-omics analysis Save
- Clinical Characteristics, Current Treatment Options, Potential Mechanisms, Biomarkers, and Therapeutic Targets in Avascular Necrosis of Femoral Head Save
- Integrated Multi-Omics Analysis and Validation in Yeast Model of Amyotrophic Lateral Sclerosis Save
- Synthesis, computational docking and molecular dynamics studies of a new class of spiroquinoxalinopyrrolidine embedded chromanone hybrids as potent anti-cholinesterase agents Save
- Integrated multi-omics analysis of Alzheimer’s disease shows molecular signatures associated with disease progression and potential therapeutic targets Save
- Vitamin B6, B12 and folate modulate deregulated pathways and protein aggregation in yeast model of Huntington disease Save