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Prof. (Dr) Manish Pal Singh

SRM University, Sanskriti University, Mathura, Sharda School of Pharmacy, Sharda University, Agra

ORCID iD 0000-0001-6243-6385

About

Dr. Manish Pal Singh brings over 17 years of distinguished experience in teaching and research, with a primary focus on the field of pharmacy. His expertise and dedication to advancing pharmaceutical sciences position him as a valuable contributor to academic and research institutions.
Academic Background
- Ph.D. in Pharmacy – Bhupal Nobles University, Udaipur, Rajasthan (March 2020)
Research & Scholarly Contributions
- Grants Secured:
- 2 DST-SERB conference grants
- 1 ICSSR conference/seminar grant
- Publications & Intellectual Property:
- 7 authored books/chapters
- 3 patents
- 45 research and review articles (30 indexed in Scopus, Web of Science, SCI/ESCI journals)
- Conference Participation:
- 12 abstracts presented at national and international seminars and conferences
Research Impact
- Google Scholar Metrics:
- Citations: >500
- h-index: 13
- i10-index: 12
Key Strengths
- Extensive teaching and mentoring experience in pharmacy education
- Strong record of funded research and scholarly dissemination
- Proven ability to contribute innovative insights and impactful research outcomes

Employment

  • SRM University Professor
    2026 - Present
  • Sanskriti University, Mathura Professor
    2025 - 2026
  • Sharda School of Pharmacy, Sharda University, Agra Associate Professor & HOD
    2022 - 2025
  • Lovely Professional University Associate Professor
    2022 - 2022
  • K R Mangalam University Associate Professor
    2021 - 2022
  • Agra Public Pharmacy College Associate Professor
    2019 - 2021
  • Shree Guru Gobind Singh Tricentenary University Assistant professor
    2019 - 2019
  • Rajiv Academy for Pharmacy Assistant professor
    2010 - 2018
  • Shrinathji Institute of Pharmacy Lecturer
    2008 - 2010

Education

Education history is unavailable.

Projects & Funding

Projects & funding information is unavailable.

Publications (128)

  • Design, synthesis, characterization and pharmacological evaluation of some newer tetrahydropyran derivatives on high fat diet induced myocardial infraction
    AKTU 2027
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  • Synthesis of Some Newer Heterocyclic Compounds with Anti-Inflammatory Potential
    AKTU 2027
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  • Harnessing Apoptosis: Pathway-based Strategies for Cancer Treatment
    Current Signal Transduction Therapy 2026 DOI: 10.2174/0115743624462924260625081639
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  • Design, Synthesis, Characterization and Anticonvulsant activity of Novel Heterocyclic Compounds
    AKTU 2026
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  • Artificial Intelligence-Powered Drug Delivery Systems: A Paradigm Shift in Pharmaceutical Efficacy and Targeting
    Current Pharmaceutical Biotechnology 2026
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  • Exploring the Potential Role of Phospholipid Complexes in Drug Delivery Systems for Enhanced Applicability
    Current Pharmaceutical Biotechnology 2026
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  • Case Studies and Success Stories of AI-Driven Approaches for Nucleic Acid Delivery
    Nanotechnology for Nucleic Acid Delivery 2026 DOI: 10.1201/9781998511853-9
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  • Nanobotic Intelligence: Optimizing Nucleic Acid Delivery with AI
    Nanotechnology for Nucleic Acid Delivery 2026 DOI: 10.1201/9781998511853-12
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  • Radiomics-Based IVIM-DWI for Early Noninvasive Assessment of Renal Allograft Dysfunction
    Bentham Science 2025
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  • Causality relationship between 91 inflammatory factors and gastritis: a two-sample bidirectional Mendelian randomization study
    Bentham Science 2025
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