Ramesa Shafi | Biochemistry | Innovative Research Award

Innovative Research Award

Ramesa Shafi Bhat
King Saud University, Saudi Arabia
Ramesa Shafi Bhat
Affiliation King Saud University
Country Saudi Arabia
Scopus ID 57442927600
Documents 105
Citations 1,896
h-index 25
Subject Area Biochemistry
Event World Top Scientist Awards
ORCID 0000-0003-2149-6239

Ramesa Shafi Bhat is a researcher affiliated with King Saud University in Saudi Arabia, with research interests spanning biochemistry, nanomedicine, and biomarkers. Her academic profile reflects contributions across multiple areas of biomedical and biochemical research, supported by a substantial body of scholarly publications and research activities. [1]

Abstract

This academic recognition profile presents the documented research record of Ramesa Shafi Bhat, affiliated with King Saud University, Saudi Arabia. The profile is centered on biochemistry and related biomedical research areas, with the supplied bibliographic record indicating work involving nanomedicine, biomarkers, oxidative stress, microbiology, cancer biology, nutritional interventions, and experimental models. The available ORCID record also documents a substantial portfolio of scholarly works and research-review activity. [1]

Keywords

Biochemistry; Nanomedicine; Biomarkers; Nanoparticles; Oxidative Stress; Antimicrobial Activity; Cancer Biology; Molecular Biology; Microbiology; Nutritional Science; Gut Microbiota; Biomedical Research.

Introduction

The researcher profile identifies Ramesa Shafi Bhat as an academic researcher at King Saud University in Riyadh, Saudi Arabia. The ORCID record lists biochemistry, nanomedicine, and biomarkers as associated keywords and records King Saud University as the employment affiliation. These details provide the institutional and disciplinary context for evaluating the research portfolio represented in the available scholarly record. [1]

Research Profile

The supplied research profile contains a broad body of publications associated with biochemical and biomedical investigations. Examples include studies of sodium-halide stress in plant systems, fluoride-associated oxidative stress, antimicrobial and antibiofilm activity, nanoparticle-mediated biological effects, and molecular investigations of cancer. The range of topics indicates an interdisciplinary research portfolio connecting biochemical mechanisms with applied biomedical and environmental questions. [5]

Research Contributions

The record also includes biomedical research related to cancer, biomarkers, inflammatory mechanisms, and neurobiological conditions. Examples include research on breast-cancer biomarkers, colorectal-cancer molecular profiles, cancer-cell responses, and experimental models associated with autism-related biochemical changes. These publications illustrate the breadth of the portfolio while remaining grounded in the specific works documented in the researcher record.[1]

Publications

Representative publications include research on copper oxide nanoparticle biosynthesis, sodium fluoride-related cellular effects, nutritional interventions, microbial activity, and molecular biomarkers. The diversity of journals represented in the record reflects publication across biochemistry, pharmacology, microbiology, nutrition, molecular biology, and related biomedical fields. The following references provide directly accessible DOI pathways for selected publications documented in the supplied ORCID record. [3]

Research Impact

The ORCID record provides an additional persistent researcher identifier and documents the association between Ramesa Shafi Bhat, King Saud University, and the scholarly works presented in the profile. It also records peer-review activity across numerous journals, including publications in molecular, microbiological, nutritional, chemical, and biomedical areas. Together, these records provide complementary evidence for assessing research activity and scholarly engagement. [1]

Award Suitability

For consideration under the Innovative Research Award category, the documented portfolio contains several features relevant to a research-recognition assessment, including sustained publication activity, interdisciplinary subject coverage, identifiable DOI-linked publications, and a research profile spanning biochemistry and related biomedical fields. The supplied bibliometric information may also be considered as supporting quantitative evidence, subject to independent verification from the current Scopus record. [1]

Conclusion

Ramesa Shafi Bhat’s documented research profile is associated with King Saud University and the disciplinary area of biochemistry, with additional work extending into nanomedicine, biomarkers, microbiology, cancer research, nutritional science, and experimental biomedical research. The available ORCID record provides a persistent identity record and a substantial publication history, while the supplied bibliometric information identifies a Scopus profile with 105 documents, 1,896 citations, and an h-index of 25. [1]

References

  1. Al-Dbass, A. M., Al-Daihan, S., Alharbi, M. S., & Bhat, R. S. (2026). Biological activities and host-response insights of Ocimum basilicum flower-derived silver nanoparticles. Inorganics, 14(8), 216. DOI: https://doi.org/10.3390/inorganics14080216
  2. Balto, H., Bekhit, M. S., Auda, S. H., Elansary, A., Bhat, R. S., Marraiki, N., & Al-Hadlaq, S. (2024). Synergistic effect of Salvadora persica and chitosan nanoparticles against oropharyngeal microorganisms. Scientific Reports. DOI: https://doi.org/10.1038/s41598-024-63636-1
  3. Bhat, R. S., Alonazi, M., Al-Dbass, A. M., & Al-Daihan, S. (2024). The impact of varying sizes of silver nanoparticles on the induction of cellular damage in Klebsiella pneumoniae involving diverse mechanisms. Green Processing and Synthesis. DOI: https://doi.org/10.1515/GPS-2024-0162
  4. Bhat, R. S., Al-Dbass, A. M., Khayyat, A. I. A., & Al-Daihan, S. (2024). Utilizing biomolecule-rich citrus fruit waste as a medium for the eco-friendly preparation of silver nanoparticles with antimicrobial properties. Inorganics, 12(7), 180. DOI: https://doi.org/10.3390/inorganics12070180
  5. Ahmed, E. A., Bhat, R. S., Shaik, J. P., Alanazi, M., Al Amri, A., Aldbass, A., & Al Daihan, S. (2024). MicroRNA gene expression profile of colorectal cancer in Saudi population. International Journal of Pharmacology. DOI: https://doi.org/10.3923/ijp.2024.149.157

Nicolas Carels | Biochemistry | Best Researcher Award

Dr. Nicolas Carels | Biochemistry | Best Researcher Award

Scientist, Fondation Oswaldo Cruz, Brazil

Nicolas Carels is a distinguished Specialist in Science and Technology, focused on Production and Innovation in Public Health at the Fundação Oswaldo Cruz in Brazil. With a robust background in bioinformatics and genomics, he leads cutting-edge research initiatives aimed at advancing public health solutions. 🌍💻

Publication Profile

ORCID

Strengths for the Award

  1. Extensive Experience: Nicolas has over 15 years of research experience in bioinformatics and genomics, including leadership roles at Fundação Oswaldo Cruz, which enhances his credibility and influence in the field.
  2. Diverse Research Contributions: His work spans multiple areas, including public health, sustainable development, and molecular genetics, showcasing a broad application of his expertise. His recent publications on cancer research demonstrate his engagement with pressing global health challenges.
  3. Strong Educational Background: Holding multiple PhDs in biotechnology and phytopathology, along with a master’s degree in management, he combines scientific rigor with practical management skills.
  4. Multilingual Communication: Proficient in several languages (French, English, Italian, Portuguese, and Spanish), Nicolas can communicate effectively in diverse settings, facilitating international collaboration.
  5. Innovative Research Approaches: His use of advanced methodologies (e.g., neural networks, bioinformatics tools) reflects a commitment to leveraging technology in research, leading to impactful findings.

Areas for Improvement

  1. Project Management Experience: While he has experience managing small teams, expanding his skills in larger project management could enhance his leadership capabilities.
  2. Broader Public Engagement: Increasing visibility through public engagement, such as outreach programs or community workshops, could amplify the impact of his research on society.
  3. Interdisciplinary Collaboration: Encouraging more collaborations outside his primary fields could introduce fresh perspectives and innovative solutions to his work.

 

Education

Nicolas earned his European Doctorate in Biotechnology, where he honed skills in phytopathology, molecular genetics, and bioinformatics. He also holds a PhD in Life Science from Université Pierre et Marie Curie, alongside a Master’s in Management from CEPAC. His academic journey reflects a deep commitment to integrating science and management principles. 🎓📚

Experience

With over 20 years of experience, Nicolas has held prominent research roles in various esteemed institutions. His current position involves leading the bioinformatics platform at CDTS, where he applies his expertise in genomic analysis. He has also contributed to notable projects involving gene identification and genome annotation across multiple organisms. 🧬🔬

Research Focus

Nicolas’s research primarily revolves around bioinformatics applications in public health, including the analysis of infectious and chronic diseases. He employs innovative computational methods to enhance our understanding of disease mechanisms and therapeutic strategies, showcasing his dedication to addressing critical health challenges. 📊🧪

Awards and Honours

Throughout his career, Nicolas has received various recognitions for his contributions to science, reflecting his impact on the field of bioinformatics. His work is not only well-respected but also influential in shaping future research directions. 🏆✨

Publication Highlights

Optimizing therapeutic targets for breast cancer using boolean network models (2024) – Comput Biol Chem

Bioinformatics of infectious and chronic diseases at the Center for Technological Development in Health of Fiocruz (2024) – Journal of Information and Data Management

Unveiling the dynamics behind glioblastoma multiforme single-cell data heterogeneity (2024) – Int. J. Mol. Sci.

Assessing RNA-Seq workflow methodologies using Shannon entropy (2024) – Biology

Structural characterization of heat shock protein 90β and molecular interactions with geldanamycin and ritonavir: A computational study (2024) – Int. J. Mol. Sci.

Conclusion

Nicolas Carels exemplifies the qualities of a strong candidate for the Best Researcher Award. His extensive experience, significant contributions to bioinformatics and public health, and innovative approaches to complex problems position him as a leader in his field. By addressing areas for improvement, he can further enhance his impact and inspire future researchers.