Onwu Daniel Ocha | Drug Discovery | Best Researcher Award

Best Researcher Award

Onwu, Daniel Ocha
Affiliation University of Cross River State
Country Nigeria
Google Scholar ID n6jcvPsAAAAJ
Documents 9
Citations 2
h-index 1
Subject Area Drug Discovery
Event International Top Pharmaceutical Awards

Onwu Daniel Ocha – University of Cross River State

Onwu Daniel Ocha is a researcher affiliated with the University of Cross River State (UNICROSS), Calabar, Nigeria. His reported scholarly work is associated with computational biology, bioinformatics, drug discovery, network pharmacology, phytochemical investigation, and computational modelling. The supplied Google Scholar record reports nine documents, two citations, and an h-index of one. The profile also identifies computational biology and bioinformatics among the research areas associated with his scholarly activity.

Abstract

Onwu Daniel Ocha’s research profile reflects interdisciplinary activity connecting computational biology and bioinformatics with pharmaceutical and biomedical investigation. His available publication record includes research on phytochemicals, network pharmacology, computational modelling, biological targets, infectious diseases, and therapeutic investigation. These subjects are relevant to modern drug discovery because computational approaches can support the identification of candidate compounds, molecular targets, pathways, and potential mechanisms of action. His research record therefore demonstrates an emerging connection between computational science and pharmaceutical research. [1]

Keywords

Drug Discovery; Computational Biology; Bioinformatics; Network Pharmacology; Computational Modelling; Molecular Docking; Phytochemicals; Drug Target Identification; Systems Biology; Therapeutic Targeting; Pharmaceutical Research; In-silico Research; Biomedical Informatics.

Introduction

Computational biology and bioinformatics have become important components of modern pharmaceutical research. Computational approaches can be used to examine molecular interactions, biological pathways, disease-associated targets, and candidate therapeutic compounds before or alongside laboratory validation. Network pharmacology is particularly useful for studying complex relationships between compounds, proteins, pathways, and disease mechanisms. These approaches can contribute to the prioritization of potential therapeutic candidates and provide hypotheses for subsequent experimental research [1].

Research Profile

The supplied academic profile identifies Onwu Daniel Ocha with the University of Cross River State (UNICROSS), Calabar, Nigeria. His Google Scholar record reports nine documents, two citations, and an h-index of one. The research areas represented in the supplied profile include computational biology and bioinformatics, while the award profile specifically identifies Drug Discovery as the subject area. This combination places his research at the intersection of computational science and pharmaceutical investigation.[3]

Research Contributions

A notable contribution in the supplied publication record is the study titled In-Silico and Network Pharmacology Analysis of Mimosa invisa Phytochemicals against Testicular Inflammation. The work examines phytochemical compounds using computational approaches to investigate their potential relationships with inflammation-associated biological targets. This research direction is relevant to drug discovery because phytochemicals may provide candidate structures for further pharmacological investigation [3].

Publications

The available publication record demonstrates continuing scholarly activity in computational and biomedical research. Listed publications include studies on Mimosa invisa phytochemicals, biosynthesized silver nanoparticles, Terminalia catappa extracts, Allium cepa bioactive compounds, drug-resistant tuberculosis, Tefairia occidentalis phytocompounds, and computational analysis of antiviral targets. The diversity of these topics indicates an interdisciplinary research approach involving computational methods and biological investigation.[3].

Research Impact

The supplied Google Scholar profile reports two citations and an h-index of one. These bibliometric indicators represent the citation activity recorded by the profile at the time of the supplied document and may change as additional publications are indexed and cited. Therefore, citation indicators should be considered together with publication quality, research relevance, collaboration, and scientific contribution when assessing an emerging researcher.[4].

Award Suitability

The award assessment should nevertheless remain evidence-based and should consider the complete research portfolio, verified publication records, originality, methodological quality, scholarly contribution, collaboration, and the official eligibility criteria established by the award organizers. The available profile demonstrates an emerging publication record rather than providing sufficient evidence for unsupported claims of exceptional impact. This distinction maintains a neutral academic approach to recognition[4].

Conclusion

Onwu Daniel Ocha’s documented research profile demonstrates interdisciplinary activity involving computational biology, bioinformatics, drug discovery, network pharmacology, phytochemicals, and systems biology. The supplied record identifies nine documents, two citations, and an h-index of one, while the listed publications demonstrate research activity across several biomedical and pharmaceutical themes. [1].

References

  1. Onwu, D. O., Uraku, O. H., Agbi, M. T., & Uraku, A. J. (2026). In-silico and network pharmacology analysis of Mimosa invisa phytochemicals against testicular inflammation. In Silico Research in Biomedicine, 2, 100274.
    https://doi.org/10.1016/j.insi.2026.100274
  2. Onwu, D., Edun, S., Asuquo, U., & Bajepade, T. I. (2025). Antidiabetic potential of biosynthesized silver nanoparticles with fresh guava leaf. Covenant Journal of Physical and Life Sciences, 13(2), 1–6.
    https://journals.covenantuniversity.edu.ng/index.php/cjpls/article/view/4978
  3. Onwu, D. O., Kayode, D., Oluwatosin, C. E., Chimaobi, N. G., Johnson, O., et al. (2026). Assessing the effects of aqueous extract of Terminalia catappa on immunoglobulins levels in cyclophosphamide induced immunosuppressant Wistar rats. Next Research, 101441.
    https://doi.org/10.1016/j.nexres.2026.101441
  4. Onwu, D. O., Singh, A., Bajpai, Y., Akinlamilo, A. S., Habiganuchi, A., & Ibikunle, F. O. (2025). Host–pathogen interaction mapping in drug-resistant tuberculosis: A systems biology framework for dual therapeutic targeting. Research Square.
    https://doi.org/10.21203/rs.3.rs-7855974/v1
  5. Ahmad, A., Nnenna, A. O., Mamman, S., Nwokoro, C., Bello, A. M., Nseabasi, M. A., Abdulwakiil, M., Okpe, J., Onwu, D. O., Agbi, M., & Idoko, A. (2025). In-silico network pharmacology and computational modelling of bioactive compounds from Allium cepa targeting downstream protein effectors in diabetes. Research Square.
    https://doi.org/10.21203/rs.3.rs-8181479/v1

Minglong Yan | Drug Discovery and Development | Young Scientist Award

Minglong Yan | Drug Discovery and Development | Young Scientist Award

Mr. Minglong Yan, Chinese Academy of Science, China

Mr. Minglong Yan holds advanced degrees in his field, with a distinguished academic and professional background in scientific research and innovation. He has completed multiple research projects, contributed to numerous indexed journal publications, and holds editorial appointments in reputable journals. With a strong citation index in SCI and Scopus, he is actively engaged in industry-sponsored projects, collaborative studies, and has authored several ISBN-registered books 📚. His expertise spans diverse research areas, contributing significantly to scientific advancement and innovation, including patents published or in process. Mr. Yan is also a member of esteemed professional organizations, fostering academic excellence globally 🌐.

Publication Profile

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Education

Mr. Minglong Yan 🎓 holds advanced degrees in engineering and materials science, with a strong foundation in innovative research and development. With over a decade of professional experience, he has contributed significantly to the fields of advanced materials and nanotechnology. 🧪 His work has been recognized in peer-reviewed journals and international conferences. As a dedicated academic, he has mentored numerous students and collaborated on global research initiatives. 🌏 Mr. Yan’s achievements include multiple research grants and awards that highlight his impactful contributions to science and technology. 🔬 His commitment to excellence continues to inspire innovation and academic advancement.

Experience

Mr. Minglong Yan 🤝 has built strong interdisciplinary collaborations with researchers from institutions across various countries, fostering global scientific exchange and innovation. 🌐 His collaborative efforts have led to numerous joint publications, international workshops, and the development of data-sharing platforms 📊 that enhance research transparency and accessibility. Notably, his work on a multi-institutional study focused on advanced nanomaterials 🧬 gained considerable recognition within the research community, showcasing the power of international teamwork. These partnerships not only broaden the impact of his research but also contribute to the advancement of science through shared knowledge and collective expertise.

Professional Memberships

Mr. Minglong Yan 🧑‍🔬 is an active member of the IEEE ⚙️ and the Materials Research Society (MRS) 🔬, two prestigious organizations that support scientific innovation and collaboration. Through these memberships, he engages with leading experts in his field, stays updated on emerging research trends 📈, and participates in global conferences and symposiums 🌍. These affiliations provide valuable platforms for networking, professional development, and interdisciplinary exchange. Mr. Yan’s involvement in such renowned societies highlights his dedication to advancing science and technology while remaining connected to the broader research community.

Research Focus

Mr. Minglong Yan focuses on smart surface engineering, particularly the development of anti-biofouling materials, self-healing coatings, and slippery lubricant-infused surfaces (SLIPS). His research merges materials science, nanotechnology, and green chemistry to design photocatalytic, self-renewable, and multi-functional coatings. These materials aim to resist microbial adhesion and environmental fouling, with long-term durability and ecological safety. His work is especially impactful in marine applications, medical devices, and membrane technology. 🧪🦠💧🔄⚙️ His innovative use of Schiff-base chemistry, MOFs, organogels, and paraffin frameworks pushes boundaries in dynamic surface behavior and bio-inspired antifouling strategies.

Publication Top Notes

Designing a photocatalytic and self-renewed g-C3N4 nanosheet/poly-Schiff base composite coating towards long-term biofouling resistance

Cinnamaldehyde grafted porous Aerogel-Organ gel liquid infused surface for achieving difunctional long-term dynamic antifouling

Multi-stimulus Response Behavior of Biomimetic Autocrine Waxy Materials for Potential Self-Constructing Surface Microstructures

Antibacterial-renew dual-function anti-biofouling strategy: Self-assembled Schiff-base metal complex coatings built from natural products

Foaming process-induced porous silicone-based organogel for low biofouling adhesion with improved long-term stability

Cross‐Linked but Self‐Healing and Entirely Degradable Poly‐Schiff Base Metal Complex Materials for Potential Anti‐Biofouling

Designing a MOF-based slippery lubricant-infused porous surface with dual functional anti-fouling strategy