The marriage of sealant agent between structure transformable silk fibroin and traditional Chinese medicine for faster skin repair

Fast skin repair is critical for less infection, less pain and high quality of life, which is still limited with undesirable rehabilitation speed and side effects. Currently, laser-activated silk sealant agent without suture and gauze has been demonstrated promising for fast skin repair taking advan...

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Veröffentlicht in:Chinese chemical letters 2022-03, Vol.33 (3), p.1599-1603
Hauptverfasser: Zhang, Rongjun, Zheng, Youbin, Liu, Tianqing, Tang, Ning, Mao, Lianzhi, Lin, Lihan, Ye, Jiahui, Xie, Luoyijun, Hu, Wenwen, Wu, Weiwei, Liao, Wenzhen, Yuan, Miaomiao
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Sprache:eng
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Zusammenfassung:Fast skin repair is critical for less infection, less pain and high quality of life, which is still limited with undesirable rehabilitation speed and side effects. Currently, laser-activated silk sealant agent without suture and gauze has been demonstrated promising for fast skin repair taking advantage of its structural transformation after heating. Nevertheless, more efficient healing effects and less side effects of laser-activated silk sealant agent remains challenging due to absence of suitable photo-thermal materials and robust/biomimetic protein materials. In this work, the marriage between silk protein and Rehmanniae radix preparata (a kind of the traditional Chinese herb) has been demonstrated as a novel and effective way to achieve an excellent healing effect for skin repair. The non-toxicity, high photothermal conversion efficiency and healing mechanism are systematically studied and proved. This new methodology might shed a new light for combining dark traditional Chinese medicine and silk fibroin for advanced wound healing technology. [Display omitted] The marriage between silk protein and Rehmanniae radix preparata (a kind of traditional Chinese herb) has been demonstrated as a novel and effective way to achieve an excellent healing effect for skin repair with advantages of non-toxicity and high photothermal conversion efficiency.
ISSN:1001-8417
1878-5964
DOI:10.1016/j.cclet.2021.09.018