Research Excellence Award
Aman Singh
Western University, Canada
| Aman Singh | |
|---|---|
| Affiliation | Western University |
| Country | Canada |
| Scopus ID | 57222391535 |
| Documents | 8 |
| Citations | 113 |
| h-index | 6 |
| Subject Area | Biochemistry, Genetics and Molecular Biology |
| Event | Global Innovation Technologist Awards |
| Google Scholar ID | 2sDHChMAAAAJ |
Aman Singh is a researcher affiliated with Western University whose publication record encompasses molecular biology, cardiovascular pathophysiology, inflammation, DNA damage, autophagy, and stress-response mechanisms. The documented research portfolio includes collaborative studies appearing in journals such as Environmental and Experimental Botany, International Journal of Molecular Sciences, Journal of Biological Chemistry, and Biomolecules. [1]
Abstract
The Research Excellence Award profile recognizes a research portfolio centered on contemporary questions in biochemistry, genetics and molecular biology. Singh’s documented publications address plant stress regulation, endothelial-to-mesenchymal transition, inflammation and endothelial dysfunction, chemotherapy-associated neurotoxicity, DNA damage, and autophagy. The record demonstrates interdisciplinary collaboration and publication activity spanning fundamental molecular mechanisms and disease-oriented biomedical research. [2]
Keywords
Biochemistry; genetics; molecular biology; cardiovascular pathophysiology; endothelial dysfunction; DNA damage; autophagy; inflammation; neurotoxicity; plant stress biology.
Introduction
Modern biomedical research increasingly connects molecular mechanisms with complex physiological and pathological processes. Within this context, Singh’s publication record reflects research that crosses cellular signaling, vascular biology, stress responses, and disease mechanisms. The cited works also illustrate collaboration across multiple researchers and disciplines, an important feature of contemporary life-science research. [3]
Research Profile
The available bibliometric information lists 8 documents, 113 citations, and an h-index of 6 under Scopus author identifier 57222391535. These indicators provide a quantitative overview of documented scholarly activity, while individual publications provide additional context concerning research themes and collaborative scope. [1]
Research Contributions
- Investigated regulatory roles of long non-coding RNAs in plant responses to heat and drought stress, contributing to understanding molecular stress adaptation. [4]
- Contributed to research on endothelial-to-mesenchymal transition and its relationship with cardiovascular pathophysiology. [5]
- Participated in studies examining fatty acid binding protein 3, inflammation, and endothelial dysfunction. [6]
- Contributed to investigations of DNA damage, autophagy, and mechanisms associated with disease and therapeutic responses. [7]
Publications
Representative publications include Genome-wide investigation of regulatory roles of lncRNAs in response to heat and drought stress in Brassica juncea (2020), published in Environmental and Experimental Botany; Endothelial-to-mesenchymal transition in cardiovascular pathophysiology (2024); Loss of fatty acid binding protein 3 ameliorates lipopolysaccharide-induced inflammation and endothelial dysfunction (2023); Different mechanisms in doxorubicin-induced neurotoxicity: impact of BRCA mutations (2025); and Complex interplay between DNA damage and autophagy in disease and therapy (2024). The supplied publication record indicates citation counts of 79, 60, 30, 19, and 14, respectively, in the referenced Google Scholar records.
Research Impact
The documented citation profile indicates that several publications have attracted measurable scholarly attention. In particular, the 2020 study on lncRNAs and abiotic stress and the 2024 study of endothelial-to-mesenchymal transition are among the more highly cited works in the supplied record. Such citation activity can be considered alongside publication quality, authorship contributions, methodological rigor, and broader scientific relevance when evaluating research impact.
Award Suitability
The documented research themes and bibliometric indicators provide a reasonable evidence base for consideration within a research excellence category associated with biochemistry, genetics and molecular biology. Suitability should ultimately be assessed through the award’s published eligibility criteria, independent verification of bibliometric records, and evaluation of the nominee’s specific scholarly contributions. The profile is particularly relevant to an award framework emphasizing interdisciplinary molecular research and biomedical innovation.
Conclusion
Aman Singh’s documented scholarly portfolio covers diverse molecular and biomedical research questions, with publications addressing plant stress biology, vascular disease mechanisms, inflammation, neurotoxicity, DNA damage, and autophagy. The available Scopus indicators and supplied publication citation data establish a concise quantitative profile, while the thematic breadth demonstrates an interdisciplinary research orientation. Together, these characteristics support consideration for research recognition, subject to independent verification and formal award assessment.
External Links
References
- Elsevier. (n.d.). Scopus author details: Aman Singh, Author ID 57222391535. Scopus.
https://www.scopus.com/pages/authors/57222391535 - Singh, A., Bhatt, K. S., Nguyen, H. C., Frisbee, J. C., Singh, K. K. et al. (2024). Endothelial-to-mesenchymal transition in cardiovascular pathophysiology. International Journal of Molecular Sciences, 25(11), 6180.
- Bhatia, G., Singh, A., Verma, D., Sharma, S., Singh, K. et al. (2020). Genome-wide investigation of regulatory roles of lncRNAs in response to heat and drought stress in Brassica juncea (Indian mustard). Environmental and Experimental Botany, 171, 103922.
https://doi.org/10.1016/j.envexpbot.2019.103922 - Nguyen, H. C., Bu, S., Nikfarjam, S., Rasheed, B., Michels, D. C. R., Singh, A. et al. (2023). Loss of fatty acid binding protein 3 ameliorates lipopolysaccharide-induced inflammation and endothelial dysfunction. Journal of Biological Chemistry, 299(3).
- Bhatt, K. S., Singh, A., Marwaha, G. S., Ravendranathan, N., Sandhu, I. S., Kim, K. et al. (2025). Different mechanisms in doxorubicin-induced neurotoxicity: impact of BRCA mutations. International Journal of Molecular Sciences, 26(10), 4736.
- Singh, A., Ravendranathan, N., Frisbee, J. C., Singh, K. K. (2024). Complex interplay between DNA damage and autophagy in disease and therapy. Biomolecules, 14(8), 922.
- Google Scholar. (n.d.). Aman Singh — publication and citation records.
https://scholar.google.com/citations?hl=en&user=2sDHChMAAAAJ&view_op=list_works&sortby=title