Deepika Singh | Natural Product Chemistry, Analytical Chemistry | Innovative Research Award

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Innovative Research Award

Deepika Singh
Affiliation National Institute of Pharmaceutical Education & Research (NIPER) Mohali
Country India
Documents 61
Citations 1061
h-index 19
Subject Area Natural Product Chemistry, Analytical Chemistry
Event World Life Science Awards

Deepika Singh is a researcher associated with the National Institute of Pharmaceutical Education & Research (NIPER) Mohali, India. Her scholarly activities are primarily focused on natural product chemistry and analytical chemistry, contributing to the advancement of pharmaceutical sciences through research publications, analytical methodologies, and interdisciplinary investigations. With an established publication record and measurable citation impact, her work has contributed to scientific understanding within life science and pharmaceutical research domains.[1]

Abstract

This article presents an academic overview of Deepika Singh, highlighting her research activities, publication profile, scholarly influence, and relevance to the Innovative Research Award category under the World Life Science Awards. The overview emphasizes contributions to natural product chemistry and analytical chemistry, areas that remain central to modern pharmaceutical and life science research. Citation metrics and publication output indicate sustained engagement with scientific inquiry and knowledge dissemination.[1][2]

Keywords

Natural Product Chemistry; Analytical Chemistry; Pharmaceutical Sciences; Research Impact; Scientific Publications; Life Sciences; Citation Analysis; Innovative Research Award; NIPER Mohali; Academic Recognition.

Introduction

Research in pharmaceutical and life sciences increasingly relies on multidisciplinary approaches that integrate chemistry, biology, and analytical techniques. Researchers working in these domains contribute to the discovery, characterization, and evaluation of biologically relevant compounds and methodologies. Deepika Singh’s academic profile reflects engagement with these objectives through publications and research activities associated with natural products and analytical investigations.[1]

Research Profile

Deepika Singh is affiliated with the National Institute of Pharmaceutical Education & Research (NIPER) Mohali, one of India’s recognized institutions dedicated to advanced pharmaceutical education and research. Her documented scholarly output includes 61 indexed documents, while citation indicators demonstrate continued academic engagement and visibility within relevant scientific communities.[1]

  • Institutional affiliation with NIPER Mohali.
  • Research specialization in natural product chemistry.
  • Experience in analytical chemistry methodologies.

Research Contributions

The research contributions associated with Deepika Singh focus on advancing understanding of natural products and their analytical evaluation. Such work supports pharmaceutical development, quality assessment, compound characterization, and broader scientific exploration of biologically active substances. Contributions within analytical chemistry further facilitate methodological reliability and reproducibility across scientific investigations.[2][3]

  • Investigation of natural products and bioactive compounds.
  • Development and application of analytical methodologies.
  • Support for pharmaceutical and life science research initiatives.

Publications

The publication portfolio of Deepika Singh reflects sustained scientific productivity. Indexed articles, collaborative studies, and research outputs have contributed to scholarly discussions in chemistry and pharmaceutical sciences. The cumulative body of work demonstrates active participation in scientific communication and dissemination of research findings.[1]

  1. Peer-reviewed journal publications.
  2. Research articles in analytical chemistry.

Research Impact

Research impact is often evaluated using citation indicators and publication influence. Available scholarly metrics indicate that Deepika Singh’s work has accumulated 1,061 citations and an h-index of 19, suggesting that multiple publications have received recognition and engagement from the scientific community. These indicators provide evidence of academic visibility and relevance within her research areas.[1]

Award Suitability

The Innovative Research Award recognizes researchers whose scholarly efforts contribute to scientific advancement through originality, methodological rigor, and research dissemination. Deepika Singh’s publication record, citation profile, and specialization in natural product and analytical chemistry align with key evaluation considerations commonly associated with research excellence and innovation in life sciences. Her documented academic output provides a basis for consideration within this award category.[1]

Conclusion

Deepika Singh represents an active contributor to pharmaceutical and chemical sciences through research activities centered on natural product chemistry and analytical chemistry. Her scholarly record, citation metrics, and publication achievements demonstrate sustained participation in scientific research. These accomplishments support her relevance within academic recognition programs such as the Innovative Research Award under the World Life Science Awards framework.[1]

References

  1. Khurshaid, N., Shabir, N., Pala, A. H., Yadav, A. K., Singh, D., & Ashraf, N. (2025). Transcriptome wide analysis of MADS box genes in Crocus sativus and interplay of CstMADS19-CstMADS26 in orchestrating apocarotenoid biosynthesis. Gene, 932, 148893
    https://doi.org/10.1016/j.gene.2024.148893
  2. Gupta, S., Akhoon, B. A., Sharma, D., Singh, D., Kaul, S., & Dhar, M. K. (2025). Structural and functional characterization of genes and enzymes involved in withanolide biosynthesis in Physalis alkekengi L. Steroids, 214, 109557.
    https://doi.org/10.1016/j.steroids.2024.109557
  3. Sharma, V., Najar, I. N., Radha, A., Sharma, S., Kumar, S., Singh, D., Gandhi, S. G., & Kumar, V. (2026). Advanced integrated Eco-strategies for effective antibiotic waste management. Biodegradation, 37(1), 2.
    https://doi.org/10.1007/s10532-025-10228-z

Andrea Smidler | Gene Editing | Best Researcher Award

Dr. Andrea Smidler | Gene Editing | Best Researcher Award

University of California San Diego | United States

Dr. Andrea L. Smidler is an accomplished molecular entomologist and genetic engineer whose research focuses on innovative CRISPR-based tools for vector control, particularly in Anopheles gambiae, the primary malaria vector. According to her Scopus profile (Author ID: 36626227000), she has published 18 scientific documents, achieving an impressive h-index of 14 and accumulating over 2008 citations, reflecting her growing influence in genetic biocontrol research. Her recent high-impact works include “Engineering gene drive docking sites in a haplolethal locus in Anopheles gambiae” (Scientific Reports, 2025), “CRISPR technologies for the control and study of malaria-transmitting Anopheline mosquitoes” (Parasites and Vectors, 2025), and “Eliminating malaria vectors with precision guided sterile males” (PNAS, 2024). Through collaborations with leading scientists such as Omar Akbari, George Church, and Flaminia Catteruccia, Dr. Smidler has advanced CRISPR-mediated gene drive and sterilization systems that aim to eradicate malaria at its source. Her consistent publication record across top-tier journals—including Science, PNAS, and Cell—and her citation metrics underscore her pioneering contributions to synthetic biology, public health genetics, and entomological engineering. Dr. Smidler continues to be a key innovator in developing genetic solutions for vector-borne disease elimination.

Featured Publications

Smidler, A., Abernathy, D., Marrogi, E., Mameli, E., Akbari, O., Church, G., Esvelt, K., & Catteruccia, F. (2025, October 8). Engineering gene drive docking sites in a haplolethal locus in Anopheles gambiae. Scientific Reports.

Smidler, A., & Akbari, O. (2025, July 3). CRISPR technologies for the control and study of malaria-transmitting Anopheline mosquitoes. Parasites and Vectors.

Gendron, W. A. C., Raban, R., Mondal, A., Sánchez, C. H. M., Smidler, A., Zilberman, D., Ilboudo, P. G., D’Alessandro, U., Marshall, J. M., & Akbari, O. S. (2025, July 18). Evaluating the cost of malaria elimination by Anopheles gambiae precision guided SIT in the Upper River region, The Gambia. PLOS Global Public Health.

Smidler, A., Apte, R., Pai, J., Chow, M., Chen, S., Antoshechkin, I., & Akbari, O. (2024, June 25). Eliminating malaria vectors with precision guided sterile males. Proceedings of the National Academy of Sciences (PNAS).

Smidler, A., Marrogi, E., Kauffman, J., Paton, D., Westervelt, K., Church, G., Esvelt, K., Shaw, W., & Catteruccia, F. (2024, February 19). CRISPR-mediated germline knockouts for genetic sterilization of male Anopheles gambiae. Scientific Reports.

Soumitra Sahana | Metabolomics | Best Researcher Award

Mr. Soumitra Sahana | Metabolomics | Best Researcher Award

Birbhum Pharmacy School | India

Soumitra Sahana is an emerging researcher in pharmacognosy with an impressive academic and professional trajectory. Currently serving as an Assistant Professor at Birbhum Pharmacy School, he specializes in phytochemical extraction, isolation, molecular docking, MD simulation, and in-vitro assays. His academic background includes a Master of Pharmacy in Pharmacognosy with distinction and a Bachelor of Pharmacy with excellent grades. Soumitra has authored and co-authored several impactful publications across journals such as Functional & Integrative Genomics, Plant Biotechnology Reports, Natural Products and Bioprospecting, and Current Indian Science, with his research contributions earning 304 citations, an h-index of 5, and an i10-index of 4. His projects range from the bioassay-guided fractionation of Ficus religiosa leaves for Alzheimer’s management to developing AI-based biomedical imaging systems for cancer screening. In addition, he has been actively engaged in conferences, workshops, and industrial training, which strengthen his practical expertise in natural product research and pharmaceutical sciences. His skills extend to advanced computational tools such as Maestro, Pymol, PyRx, and Discovery Studio Visualizer, along with proficiency in chromatographic and spectroscopic instrumentation. With a growing publication record and a balanced profile of laboratory and computational expertise, Soumitra Sahana represents a promising researcher bridging traditional pharmacognosy with modern biomedical applications

Profile: Orcid 

Featured Publications

Multi-omics approaches: transforming the landscape of natural product isolation