Electrospun Aloe Vera Extract Loaded Polycaprolactone Scaffold for Biomedical Applications: A Promising Candidate for Corneal Stromal Regeneration
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Springer Science and Business Media LLC
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https://link.springer.com/content/pdf/10.1007/s42235-024-00520-8.pdf
Reference45 articles.
1. Salehi, A. O. M., Keshel, S. H., Sefat, F., & Tayebi, L. (2021). Use of polycaprolactone in corneal tissue engineering: A review. Materials Today Communications, 27, 1–10. https://doi.org/10.1016/j.mtcomm.2021.102402.
2. Chun, Y. H., Park, S. K., Kim, E. J., Lee, H. J., Kim, H., Koh, W. G., Cunha, G. F., Myung, D., & Na, K. S. (2021). In vivo biocompatibility evaluation of in situ-forming polyethylene glycol-collagen hydrogels in corneal defects. Scientific Reports, 11(1), 1–10. https://doi.org/10.1038/s41598-021-03270-3.
3. Patel, G., Na, K. S., Lee, H. J., & Koh, W. G. (2021). Electrospun fibers for corneal regeneration. Current Ophthalmology Reports, 9, 146–157. https://doi.org/10.1007/s40135-021-00279-9.
4. Fernandes-Cunha, G. M., Chen, K. M., Chen, F., Le, P., Han, J. H., Mahajan, L. A., Lee, H. J., Na, K. S., & Myung, D. (2020). In situ-forming collagen hydrogel crosslinked via multi-functional PEG as a matrix therapy for corneal defects. Scientific Reports, 10(1), 1–13. https://doi.org/10.1038/s41598-020-72978-5.
5. Salehi, A. O. M., Nourbakhsh, M. S., Rafienia, M., Baradaran-Rafii, A., & Keshel, S. H. (2020). Corneal stromal regeneration by hybrid oriented poly (ε-caprolactone)/lyophilized silk fibroin electrospun scaffold. International Journal of Biological Macromolecules, 161, 377–388. https://doi.org/10.1016/j.ijbiomac.2020.06.045.
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