Original ArticleIndian Journal of Pharmaceutical Education and ResearchVol. 55 | Issue 1s | 2021 | pp. S233–S241Open access
Synthesis, Identification and in-silico Approach for wound Healing Potential in Gnaphalium polycaulon Extracts
- 1*,
- 2,
- 3,
- 4
- 1 Department of Biomedical Engineering and Centre for Marine-Integrated Biomedical Technology, Pukyong National University, SOUTH KOREA.
- 2 Department of Food Chemistry and Technology, Teagasc Food Research Centre, Ashtown, Dublin, IRELAND.
- 3 Department of Information Technology, Sri Sakthi Institute of Technology, Coimbatore, Tamil Nadu, INDIA.
- 4 Department of Biotechnology, KIT-Kalaignarkarunanidhi Institute of Technology (Autonomous), Coimbatore, Tamil Nadu, INDIA.
Published in Indian Journal of Pharmaceutical Education and Research
Correspondence: Karuppusamy Shanmugapriya
Department of Biomedical Engineering and Centre for Marine-Integrated Biomedical Technology, Pukyong National University, SOUTH KOREA.
Email: shanmugapriya8@gmail.com
Copyright: © 2021 Manuscript Technomedia. This is an open access article.
- Published:
- Jan 1, 2021
- Received:
- Jun 23, 2020
- Accepted:
- Dec 23, 2020
- DOI:
- 10.5530/ijper.55.1s.55
How to cite
Shanmugapriya, K., Saravana, P. S., Karuppusamy, R., & Thayumanavan, T. (2021). Synthesis, Identification and in-silico Approach for wound Healing Potential in Gnaphalium polycaulon Extracts. Indian Journal of Pharmaceutical Education and Research, 55(1s), S233–S241. https://doi.org/10.5530/ijper.55.1s.55
Abstract
Aim/Background: The secondary metabolites can be identified from G. polycaulon and used as effective compounds for wound healing potential. The aims of the present study to identify the metabolites from G. polycaulon extracts by in silico study. Methods: The extraction of aqueous and methanolic G. polycaulon leaf extracts was subjected to characterization for silver nanoparticles. The phytoconstituents of the plant was analyzed by standard quantitative and quantitative methods. Then, the silver nanoparticles was synthesized and can be used for further in silico studies. Protein-ligand docking and modeling were studied by pharmacodynamics and kinetic study. Results: The identified bioactive metabolites were reported for in silico docking analysis. The similarity toolbox will give an easily utilized option for the identification of phytoconstituents with similar ligands based on a similarity score level. Greater interaction with target proteins has been observed for 2J67 (Toll-like receptor), 4MBS (Chemokine receptor), 1PWA (fibroblast growth factor), 4GR9 (melatonin receptor), 1A52 (estrogen receptor) and 2RH1 (adrenergic receptor) were docked with ligand from GC-MS compounds of selected test extracts and can easily find similarity score among all specific molecules in a simplified manner. Conclusion: the present study was the first report about the pharmacological activity of the G. polycaulon plant in the southern part of India. This plant possesses much beneficial ability due to bioactive phytocompounds. Thus, the present study concluded the ligands related to wound healing potential could be used for novel drug discovery in wound management.
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Article metadata
| Title | Synthesis, Identification and in-silico Approach for wound Healing Potential in Gnaphalium polycaulon Extracts |
|---|---|
| Authors | Karuppusamy Shanmugapriya; Periaswamy Sivagnanam Saravana; Rajakumari Karuppusamy; Thangavelu Thayumanavan |
| Affiliations | Department of Biomedical Engineering and Centre for Marine-Integrated Biomedical Technology, Pukyong National University, SOUTH KOREA.; Department of Food Chemistry and Technology, Teagasc Food Research Centre, Ashtown, Dublin, IRELAND.; Department of Information Technology, Sri Sakthi Institute of Technology, Coimbatore, Tamil Nadu, INDIA.; Department of Biotechnology, KIT-Kalaignarkarunanidhi Institute of Technology (Autonomous), Coimbatore, Tamil Nadu, INDIA. |
| Corresponding author | shanmugapriya8@gmail.com |
| Journal | Indian Journal of Pharmaceutical Education and Research |
| Volume / Issue | Vol. 55, Issue 1s (2021) |
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