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用于递送姜黄素以实现无感染伤口愈合的丝素蛋白-普朗尼克颗粒状3D水凝胶

Particulate 3D Hydrogels of Silk Fibroin-Pluronic to Deliver Curcumin for Infection-Free Wound Healing.

作者信息

Khodaei Azin, Johari Narges, Jahanmard Fatemeh, Cecotto Leonardo, Khosravimelal Sadjad, Madaah Hosseini Hamid Reza, Bagheri Reza, Samadikuchaksaraei Ali, Amin Yavari Saber

机构信息

Department of Orthopedics, University Medical Center Utrecht, 3584 CX Utrecht, The Netherlands.

Institute for Nanoscience and Nanotechnology, Sharif University of Technology, Tehran 14588-89694, Iran.

出版信息

Biomimetics (Basel). 2024 Aug 10;9(8):483. doi: 10.3390/biomimetics9080483.

Abstract

Skin is the largest protective tissue of the body and is at risk of damage. Hence, the design and development of wound dressing materials is key for tissue repair and regeneration. Although silk fibroin is a known biopolymer in tissue engineering, its degradation rate is not correlated with wound closure rate. To address this disadvantage, we mimicked the hierarchical structure of skin and also provided antibacterial properties; a hydrogel with globular structure consisting of silk fibroin, pluronic F127, and curcumin was developed. In this regard, the effect of pluronic and curcumin on the structural and mechanical properties of the hydrogel was studied. The results showed that curcumin affected the particle size, crystallinity, and ultimate elongation of the hydrogels. In vitro assays confirmed that the hydrogel containing curcumin is not cytotoxic while the diffused curcumin and pluronic provided a considerable bactericidal property against Methicillin-resistant . Interestingly, presence of pluronic caused more than a 99% reduction in planktonic and adherent bacteria in the curcumin-free hydrogel groups. Moreover, curcumin improved this number further and inhibited bacteria adhesion to prevent biofilm formation. Overall, the developed hydrogel showed the potential to be used for skin tissue regeneration.

摘要

皮肤是人体最大的保护组织,面临受损风险。因此,伤口敷料材料的设计与开发是组织修复和再生的关键。尽管丝素蛋白是组织工程中一种已知的生物聚合物,但其降解速率与伤口愈合速率并无关联。为解决这一缺点,我们模拟了皮肤的层级结构并赋予其抗菌性能;开发了一种由丝素蛋白、普朗尼克F127和姜黄素组成的具有球状结构的水凝胶。在此方面,研究了普朗尼克和姜黄素对水凝胶结构和力学性能的影响。结果表明,姜黄素影响水凝胶的粒径、结晶度和极限伸长率。体外试验证实,含姜黄素的水凝胶无细胞毒性,而扩散出的姜黄素和普朗尼克对耐甲氧西林菌具有显著杀菌性能。有趣的是,普朗尼克的存在使不含姜黄素的水凝胶组中的浮游细菌和黏附细菌数量减少超过99%。此外,姜黄素进一步降低了该数量,并抑制细菌黏附以防止生物膜形成。总体而言,所开发的水凝胶显示出用于皮肤组织再生的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b647/11352177/39d0e63328f3/biomimetics-09-00483-g001.jpg

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