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通过交联细胞膜隔室生成具有结构和功能双重皮肤模拟特性的水凝胶。

Generating dual structurally and functionally skin-mimicking hydrogels by crosslinking cell-membrane compartments.

作者信息

Wu Feng, Ren Yusheng, Lv Wenyan, Liu Xiaobing, Wang Xinyue, Wang Chuhan, Cao Zhenping, Liu Jinyao, Wei Jie, Pang Yan

机构信息

Shanghai Key Laboratory of Advanced Polymeric Materials, School of Materials Science and Engineering, East China University of Science and Technology, Shanghai, China.

State Key Laboratory of Systems Medicine for Cancer, Shanghai Cancer Institute, Shanghai Key Laboratory for Nucleic Acid Chemistry and Nanomedicine, Institute of Molecular Medicine, Renji Hospital, School of Medicine, Shanghai Jiao Tong University, Shanghai, China.

出版信息

Nat Commun. 2024 Jan 27;15(1):802. doi: 10.1038/s41467-024-45006-7.

Abstract

The skin is intrinsically a cell-membrane-compartmentalized hydrogel with high mechanical strength, potent antimicrobial ability, and robust immunological competence, which provide multiple protective effects to the body. Methods capable of preparing hydrogels that can simultaneously mimic the structure and function of the skin are highly desirable but have been proven to be a challenge. Here, dual structurally and functionally skin-mimicking hydrogels are generated by crosslinking cell-membrane compartments. The crosslinked network is formed via free radical polymerization using olefinic double bond-functionalized extracellular vesicles as a crosslinker. Due to the dissipation of stretching energy mediated by vesicular deformation, the obtained compartment-crosslinked network shows enhanced mechanical strength compared to hydrogels crosslinked by regular divinyl monomers. Biomimetic hydrogels also exhibit specific antibacterial activity and adequate ability to promote the maturation and activation of dendritic cells given the existence of numerous extracellular vesicle-associated bioactive substances. In addition, the versatility of this approach to tune both the structure and function of the resulting hydrogels is demonstrated through introducing a second network by catalyst-free click reaction-mediated crosslinking between alkyne-double-ended polymers and azido-decorated extracellular vesicles. This study provides a platform to develop dual structure- and function-controllable skin-inspired biomaterials.

摘要

皮肤本质上是一种具有高机械强度、强大抗菌能力和强大免疫能力的细胞膜分隔水凝胶,能为身体提供多种保护作用。能够制备同时模仿皮肤结构和功能的水凝胶的方法备受期待,但已被证明是一项挑战。在此,通过交联细胞膜隔室生成了具有结构和功能双重模仿性的皮肤水凝胶。交联网络是利用烯烃双键功能化的细胞外囊泡作为交联剂,通过自由基聚合形成的。由于囊泡变形介导的拉伸能量耗散,与由常规二乙烯基单体交联的水凝胶相比,所得的隔室交联网络显示出增强的机械强度。鉴于存在众多细胞外囊泡相关生物活性物质,仿生水凝胶还表现出特定的抗菌活性以及促进树突状细胞成熟和激活的足够能力。此外,通过在炔烃双端聚合物和叠氮修饰的细胞外囊泡之间进行无催化剂点击反应介导的交联来引入第二个网络,证明了这种调节所得水凝胶结构和功能的方法具有多功能性。这项研究提供了一个开发具有双重结构和功能可控性的皮肤启发生物材料的平台。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b91d/10821872/65d1d48b5cc6/41467_2024_45006_Fig1_HTML.jpg

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