Arusha Ayub | Medicine and Dentistry | Best Scholar Award

Best Scholar Award

Arusha Ayub
King Saud University, Riyadh, Saudi Arabia

Arusha Ayub
Affiliation King Saud University, Riyadh
Country Saudi Arabia
Google Scholar Profile vFU3lOYAAAAJ
Documents 54
Citations 191
h-index 5
Subject Area Medicine and Dentistry
Event International Academic Excellence Awards
ORCID 0009-0009-5972-1842

Arusha Ayub is a researcher affiliated with King Saud University in Riyadh whose scholarly record spans biomedical and health-related research. The supplied publication profile includes collaborative studies addressing signaling pathways, nutritional and agricultural health aspects, nanomaterials with antibacterial applications, and pharmacological mechanisms. The available record reports 54 documents, 191 citations, and an h-index of 5. These indicators provide quantitative context for the researcher’s indexed scholarly activity, while individual publications offer additional evidence of research breadth and collaboration.

Abstract

Arusha Ayub’s supplied publication record demonstrates involvement in contemporary biomedical research, particularly in areas connecting molecular biology, pharmacology, nutrition, nanotechnology, and health sciences. Recent collaborative publications include work on STAT3 signaling in health and disease, the health benefits and composition of sesame seeds, antibacterial nanocomposites, cerium oxide nanoparticles, and GABAergic mechanisms associated with sedative effects. [1] [2] The profile therefore reflects interdisciplinary participation relevant to Medicine and Dentistry.

Keywords

Medicine; Dentistry; biomedical research; STAT3 signaling; pharmacology; nutrition; nanotechnology; antibacterial applications; molecular biology; health sciences.

Introduction

Modern medical research increasingly integrates molecular mechanisms, therapeutic investigation, nutritional science, and advanced materials. Ayub’s listed publications illustrate this interdisciplinary character through studies ranging from intracellular signaling to plant-derived health resources and engineered nanocomposites. Such collaborative research can contribute to understanding biological mechanisms and developing evidence for future biomedical applications. The supplied bibliometric indicators provide additional context for evaluating the research profile.

Research Profile

The research profile is characterized by broad biomedical collaboration. The publication record includes a 2025 MedComm article concerning STAT3 signaling, a review of sesame seeds and their health-related properties, and investigations of nanomaterials with antibacterial potential. [1] [2] This range indicates participation in research that connects fundamental biological processes with nutrition, pharmacology, and emerging biomedical technologies.

Research Contributions

  • Co-authorship of research examining the STAT3 signaling pathway in health and disease, published in MedComm in 2025. [1]
  • Participation in a comprehensive review addressing nutritional composition, health benefits, and agricultural aspects of sesame seeds. [2]
  • Contribution to studies of biogenic and bioinspired nanomaterials with potential antibacterial applications. [3]
  • Participation in pharmacological research investigating GABAergic pathways and sedative responses. [5]

Publications

  1. STAT3 Signaling Pathway in Health and Disease. MedComm, 2025, 6(4), e70152.[1]
  2. A Comprehensive Review of the Health Benefits, Nutritional Composition, and Agricultural Aspects of Sesame Seeds. Journal of Food Biochemistry, 2025. [2]
  3. Bioinspired sustainable development of Ag-CuO/MWCNT nanocomposites for antibacterial applications. Microbial Pathogenesis, 2025, 203, 107516. [3]
  4. Green and Biogenic Synthesis of Cerium Oxide (CeO2) Nanoparticles. ChemistrySelect, 2025, 10(18), e202406123. [4]
  5. Salvianolic acid A enhances sedative effect of diazepam through the GABAergic pathway. Neurotoxicology and Teratology, 2025. [5]

Research Impact

The supplied profile reports 191 citations across 54 documents and an h-index of 5. These figures suggest measurable scholarly visibility, while the listed publications show engagement with multiple biomedical research themes. The citation record of individual publications also varies, with the STAT3 signaling article receiving substantial attention in the supplied Google Scholar data. [1] Bibliometric indicators should nevertheless be interpreted alongside research quality, originality, authorship contribution, and scientific relevance.

Award Suitability

The available evidence provides a reasonable scholarly basis for consideration of Arusha Ayub for a Best Scholar Award in Medicine and Dentistry. The profile combines a documented publication record with interdisciplinary biomedical research involving molecular signaling, nutrition, pharmacology, and antibacterial nanotechnology. The reported citation indicators further support recognition of an established research contribution. Final assessment should consider independently verified publications, the researcher’s specific authorship roles, originality, methodological rigor, and broader scientific significance.

Conclusion

Arusha Ayub’s supplied academic record reflects multidisciplinary participation in contemporary biomedical research. Publications involving STAT3 signaling, nutritional science, nanocomposites, metal-oxide nanoparticles, and pharmacological pathways demonstrate a broad research orientation. Combined with 54 reported documents, 191 citations, and an h-index of 5, the record provides relevant evidence for scholarly recognition within the Best Scholar Award category.

References

  1. Samad, M. A., Ahmad, I., Hasan, A., Alhashmi, M. H., Ayub, A., Al-Abbasi, F. A., et al. (2025). STAT3 Signaling Pathway in Health and Disease. MedComm, 6(4), e70152.
    https://doi.org/10.1002/mco2.70152
  2. Jaffar, H. M., Akhtar, I., Saleem, M. Z., Malik, T., Ayub, A., et al. (2025). A Comprehensive Review of the Health Benefits, Nutritional Composition, and Agricultural Aspects of Sesame Seeds. Journal of Food Biochemistry.
    https://doi.org/10.1155/jfbc/8713698
  3. Deshmukh, M., Madankar, R., Chaudhary, R. G., Kalam, M. A., Ayub, A., Mondal, A., et al. (2025). Bioinspired sustainable development of Ag-CuO/MWCNT nanocomposites for antibacterial applications. Microbial Pathogenesis, 203, 107516.
  4. Hadole, P., Mondal, S., Shingda, S., Ahmed, M. Z., Mule, A., Rai, A. R., Ayub, A., et al. (2025). Green and Biogenic Synthesis of Cerium Oxide (CeO2) Nanoparticles: Heterogeneous Catalytic Synthesis of Isoxazol-5 (4H)-one Derivatives and Assessment of Their Antibacterial Activity. ChemistrySelect, 10(18), e202406123.
  5. Rakib, I. H., Khan, M. S., Ayub, A., Al Hasan, M. S., Alfaifi, M., Bhuia, M. S., Mia, E., et al. (2025). Salvianolic acid A enhances sedative effect of diazepam through the GABAergic pathway: In vivo, molecular docking, and pharmacokinetics approaches. Neurotoxicology and Teratology.
  6. Google Scholar. (n.d.). Arusha Ayub publication and citation profile.
    https://scholar.google.com/citations?hl=en&user=vFU3lOYAAAAJ&view_op=list_works&sortby=title