光热治疗
药物输送
抗菌剂
化学
自愈水凝胶
控制释放
纳米技术
复合数
光热效应
输送系统
生物医学工程
细胞存活
组织工程
氧化应激
材料科学
药品
凝血酶
联合疗法
再生医学
伤口愈合
巨噬细胞
细胞生长
细胞
承重
抗生素
细胞疗法
生物物理学
作者
Wenqiang Qu,Hui-Yun Gu,Si-min Zeng,Chaoying Liu,Xiaoli Yan,Ting Pan,Chao Jian,Xian-Zheng Zhang,Anfeng Yu
标识
DOI:10.1002/advs.202522427
摘要
In this paper, we develop a photothermal-responsive hydrogel (CNB-ePRP) based on engineered platelet-rich plasma (PRP)/sodium alginate (SA) hydrogel integrating thrombin-functionalized composite nanobottle (CNB) to treat diabetic wounds. Within CNB-ePRP, the CNB consists of polydopamine nanobottle loaded with thrombin, personalized drugs and a phase-change material. As a photothermal agent and dual-stage controller, CNB not only enables in situ PRP activation at physiological temperature to slowly release various growth factors (GFs) via thermal-triggered thrombin release, avoiding premature burst release of GFs, but also accelerates the release of GFs from the CNB-ePRP hydrogel through mild photothermal heating under 808 nm laser irradiation. Meanwhile, SA enhances hydrogel stability and prolongs GF release kinetics. Consequently, CNB-ePRP achieves on-demand delivery of GFs, significantly promoting angiogenesis, cell proliferation and M2 macrophage polarization. Moreover, CNB-ePRP can mitigate oxidative stress via the antioxidant activity of CNB. Furthermore, vancomycin is loaded into CNB to construct a multimodal antimicrobial hydrogel (VCNB-ePRP) that combines antibiotic and photothermal therapy to efficiently eradicate MRSA and promote healing in MRSA-infected diabetic mouse wounds. Collectively, this study offers a smart PRP-derived platform, characterized by in situ PRP activation, on-demand GFs release, personalized antimicrobial loading and multifunctional therapy, for managing diabetic wounds with great translational potential.
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