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再生丝素蛋白涂层稳定的液态金属纳米颗粒增强水凝胶的光热抗菌活性,用于伤口感染修复。

Regenerated silk fibroin coating stable liquid metal nanoparticles enhance photothermal antimicrobial activity of hydrogel for wound infection repair.

机构信息

Key Laboratory of Silkworm and Bee Resource Utilization and Innovation of Zhejiang Province, Institute of Applied Bioresource Research, College of Animal Science, Zhejiang University, Hangzhou, Zhejiang 310058, PR China.

School of Materials Science & Engineering, Zhejiang University, Hangzhou, Zhejiang 310027, PR China; Department of Biomedical Engineering, The Chinese University of Hong Kong, Sha Tin, Hong Kong.

出版信息

Int J Biol Macromol. 2024 Apr;263(Pt 2):130373. doi: 10.1016/j.ijbiomac.2024.130373. Epub 2024 Feb 21.

Abstract

The integration of liquid metal (LM) and regenerated silk fibroin (RSF) hydrogel holds great potential for achieving effective antibacterial wound treatment through the LM photothermal effect. However, the challenge of LM's uncontrollable shape-deformability hinders its stable application. To address this, we propose a straightforward and environmentally-friendly ice-bath ultrasonic treatment method to fabricate stable RSF-coated eutectic gallium indium (EGaIn) nanoparticles (RSF@EGaIn NPs). Additionally, a double-crosslinked hydrogel (RSF-P-EGaIn) is prepared by incorporating poly N-isopropyl acrylamide (PNIPAAm) and RSF@EGaIn NPs, leading to improved mechanical properties and temperature sensitivity. Our findings reveal that RSF@EGaIn NPs exhibit excellent stability, and the use of near-infrared (NIR) irradiation enhances the antibacterial behavior of RSF-P-EGaIn hydrogel in vivo. In fact, in vivo testing demonstrates that wounds treated with RSF-P-EGaIn hydrogel under NIR irradiation completely healed within 14 days post-trauma infection, with the formation of new skin and hair. Histological examination further indicates that RSF-P-EGaIn hydrogel promoted epithelialization and well-organized collagen deposition in the dermis. These promising results lay a solid foundation for the future development of drug release systems based on photothermal-responsive hydrogels utilizing RSF-P-EGaIn.

摘要

液态金属(LM)与再生丝素蛋白(RSF)水凝胶的整合具有通过 LM 光热效应实现有效抗菌伤口治疗的巨大潜力。然而,LM 不可控的形状变形性的挑战阻碍了其稳定的应用。为了解决这个问题,我们提出了一种简单环保的冰浴超声处理方法,制备稳定的 RSF 包裹共晶镓铟(EGaIn)纳米粒子(RSF@EGaIn NPs)。此外,通过掺入聚 N-异丙基丙烯酰胺(PNIPAAm)和 RSF@EGaIn NPs 制备了双交联水凝胶(RSF-P-EGaIn),从而改善了机械性能和温度敏感性。我们的研究结果表明,RSF@EGaIn NPs 表现出优异的稳定性,并且使用近红外(NIR)照射增强了 RSF-P-EGaIn 水凝胶在体内的抗菌行为。实际上,体内测试表明,在创伤感染后 14 天内,用 NIR 照射下的 RSF-P-EGaIn 水凝胶治疗的伤口完全愈合,形成了新的皮肤和毛发。组织学检查进一步表明,RSF-P-EGaIn 水凝胶促进了上皮化和真皮中组织有序的胶原沉积。这些有希望的结果为基于 RSF-P-EGaIn 的光热响应水凝胶的药物释放系统的未来发展奠定了坚实的基础。

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