APID Academic Profile Identity
Gurpreet Singh

Mr. Gurpreet Singh

Senior Research Scholar · Pharmacology & Toxicology
Author
APID
6638
ORCID
0000-0001-6795-7198
Location
Hyderabad, Telangana, India
Expertise
Stereotaxic surgery, Confocal Microscopy, in-vitro Assays, Behavioral studies , Molecular dockingetc.
Areas of interest
Neuroscience, Parkinson disease, Bioinformatics, Drug delivery
Member since
May 2024

Biography

Passionate about unraveling the mysteries of neurodegenerative diseases and developing targeted therapies. Skilled in pharmacology and specializing in Parkinson's and Alzheimer's disease research. Expertise in in-silico, in-vitro, and in-vivo studies, with a focus on understanding epigenetic changes, Toll-like receptors associated neuroinflammation, and miRNA regulation in Parkinson's disease. Currently pursuing a PhD in Biological Sciences at NIPER Hyderabad, conducting groundbreaking research in the Molecular and Cellular Neuroscience Lab. Committed to advancing scientific knowledge and finding innovative solutions for neurodegenerative disorders. Always interested in contributing to work related to neurological diseases, specifically neuroinflammation, in the future.

Sign in to see editorial board appointments, follow, and connect.

Publications

  1. Exosome-mediated delivery and regulation in neurological disease progression
  2. Exosome-mediated delivery and regulation in neurological disease progression
  3. Integration of miRNA’s theranostic potential with nanotechnology: Promises and challenges for Parkinson’s disease therapeutics
  4. MicroRNA-gene regulatory network of TLR signaling in neuroinflammation-induced Parkinson’s disease: a bioinformatics approach
  5. Neuroprotective role of Carvacrol via Nrf2/HO-1/NLRP3 axis in Rotenone-induced PD mice model
  6. Neuroprotective role of Carvacrol via Nrf2/HO-1/NLRP3 axis in Rotenone-induced PD mice model
  7. Perspective on Cav-1 for its Potential as Newer Therapeutics for Parkinson’s Disease
  8. Therapeutic potential of GDNF in neuroinflammation: Targeted delivery approaches for precision treatment in neurological diseases