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用于治疗应用的纳米结构集成水凝胶系统。

Nanoarchitecture-Integrated Hydrogel Systems toward Therapeutic Applications.

作者信息

Zhu Houjuan, Zheng Jie, Oh Xin Yi, Chan Chui Yu, Low Beverly Qian Ling, Tor Jia Qian, Jiang Wenbin, Ye Enyi, Loh Xian Jun, Li Zibiao

机构信息

Institute of Materials Research and Engineering (IMRE), Agency for Science, Technology and Research (A*STAR), 2 Fusionopolis Way, Innovis #08-03, Singapore 138634, Republic of Singapore.

Institute of Sustainability for Chemicals, Energy and Environment (ISCE2), Agency for Science, Technology and Research (A*STAR), 1 Pesek Road, Jurong Island, Singapore 627833, Republic of Singapore.

出版信息

ACS Nano. 2023 May 9;17(9):7953-7978. doi: 10.1021/acsnano.2c12448. Epub 2023 Apr 18.

DOI:10.1021/acsnano.2c12448
PMID:37071059
Abstract

Hydrogels, as one of the most feasible soft biomaterials, have gained considerable attention in therapeutic applications by virtue of their tunable properties including superior patient compliance, good biocompatibility and biodegradation, and high cargo-loading efficiency. However, hydrogel application is still limited by some challenges like inefficient encapsulation, easy leakage of loaded cargoes, and the lack of controllability. Recently, nanoarchitecture-integrated hydrogel systems were found to be therapeutics with optimized properties, extending their bioapplication. In this review, we briefly presented the category of hydrogels according to their synthetic materials and further discussed the advantages in bioapplication. Additionally, various applications of nanoarchitecture hybrid hydrogels in biomedical engineering are systematically summarized, including cancer therapy, wound healing, cardiac repair, bone regeneration, diabetes therapy, and obesity therapy. Last, the current challenges, limitations, and future perspectives in the future development of nanoarchitecture-integrated flexible hydrogels are addressed.

摘要

水凝胶作为最具可行性的软生物材料之一,凭借其可调节的特性,包括卓越的患者顺应性、良好的生物相容性和生物降解性以及高载药量效率,在治疗应用中受到了广泛关注。然而,水凝胶的应用仍受到一些挑战的限制,如包封效率低、所载药物易泄漏以及缺乏可控性。最近,发现纳米结构集成水凝胶系统是具有优化特性的治疗剂,扩展了它们的生物应用。在这篇综述中,我们根据合成材料简要介绍了水凝胶的类别,并进一步讨论了其在生物应用中的优势。此外,系统总结了纳米结构杂化水凝胶在生物医学工程中的各种应用,包括癌症治疗、伤口愈合、心脏修复、骨再生、糖尿病治疗和肥胖症治疗。最后,阐述了纳米结构集成柔性水凝胶未来发展中当前面临的挑战、限制和未来展望。

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