Match tier Likely match
Presence Current · Arkansas
Last published 2025
Sources OpenAlex · ORCID
Refreshed 2026-08-15

Priya Yadav

This is a likely match — the affiliation was inferred from OpenAlex, ORCID, and web sources but has not been fully confirmed. Treat with appropriate caution.

Researcher

Also affiliated: Jiwaji University (2017–2021); Tata Institute of Fundamental Research (2020–2022); Annamalai University (2022–2025); National Chemical Laboratory (2016–2017); Academy of Scientific and Innovative Research (2017)

Faculty Researcher

6 h-index 30 pubs 271 cited

  • Antineoplastic Agents
  • Neoplasms
  • Humans
  • Drug Resistance, Multiple
  • Protein Denaturation
  • Protein Folding
  • Drug Resistance, Neoplasm
  • ATP-Binding Cassette Transporters
  • ATP Binding Cassette Transporter, Subfamily B, Member 1
  • Molecular Docking Simulation
  • Hydrogen-Ion Concentration
  • Temperature
  • Carbohydrate Metabolism
  • Azurin
  • Molecular Dynamics Simulation

Biography and Research Information

OverviewAI-generated summary

Priya Yadav's research focuses on understanding and overcoming multidrug resistance in cancer. Her work investigates the mechanisms by which cancer cells evade therapeutic agents, particularly focusing on ATP-binding cassette (ABC) transporters like P-glycoprotein. Yadav explores the potential of natural compounds, such as quercetin, and nanotechnology-based approaches, including the use of β-cyclodextrin polymers, to enhance drug delivery and efficacy against resistant cancer cells. She also examines how these interventions target specific signaling pathways, like Akt/NF-κB, to restore sensitivity to chemotherapeutics. Additionally, Yadav has published research on the early detection of cancer through circulating tumor cell markers and liquid biopsy techniques, as well as investigations into the physical properties of thermoelectric materials.

Metrics

  • h-index: 6
  • Publications: 30
  • Citations: 271

Selected Publications

  • Nanoencapsulated gamma-oryzanol enhances fibroblast proliferation, migration, and reduces oxidative stress in H2O2-induced cellular aging model (2025)
    Journal of Functional Foods DOI OpenAlex

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Collaboration Network

6 Collaborators 3 Institutions 1 Country

Top Collaborators

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