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在用于伤口愈合和修复的 Pluronic F127 衍生物方面的进展。

Progress in Pluronic F127 Derivatives for Application in Wound Healing and Repair.

机构信息

Department of Oncology, The Second Affiliated Hospital, Air Force Medical University, Xi'an City, People's Republic of China.

Center for Peptide Functional Materials and Innovative Drugs, Institute of Translational Medicine, Shanghai University, ShangHai City, People's Republic of China.

出版信息

Int J Nanomedicine. 2023 Aug 7;18:4485-4505. doi: 10.2147/IJN.S418534. eCollection 2023.

Abstract

Pluronic F127 hydrogel biomaterial has garnered considerable attention in wound healing and repair due to its remarkable properties including temperature sensitivity, injectability, biodegradability, and maintain a moist wound environment. This comprehensive review provides an in-depth exploration of the recent advancements in Pluronic F127-derived hydrogels, such as F127-CHO, F127-NH, and F127-DA, focusing on their applications in the treatment of various types of wounds, ranging from burns and acute wounds to infected wounds, diabetic wounds, cutaneous tumor wounds, and uterine scars. Furthermore, the review meticulously examines the intricate interaction mechanisms employed by these hydrogels within the wound microenvironment. By elucidating the underlying mechanisms, discussing the strengths and weaknesses of Pluronic F127, analyzing the current state of wound healing development, and expanding on the trend of targeting mitochondria and cells with F127 as a nanomaterial. The review enhances our understanding of the therapeutic effects of these hydrogels aims to foster the development of effective and safe wound-healing modalities. The valuable insights provided this review have the potential to inspire novel ideas for clinical treatment and facilitate the advancement of innovative wound management approaches.

摘要

聚醚砜 F127 水凝胶生物材料由于其具有温度敏感性、可注射性、生物可降解性和保持湿润伤口环境等显著特性,在伤口愈合和修复方面引起了广泛关注。本综述深入探讨了基于聚醚砜 F127 的水凝胶(如 F127-CHO、F127-NH 和 F127-DA)的最新进展,重点介绍了它们在治疗各种类型伤口(包括烧伤和急性伤口、感染性伤口、糖尿病伤口、皮肤肿瘤伤口和子宫疤痕)中的应用。此外,该综述还详细研究了这些水凝胶在伤口微环境中所采用的复杂相互作用机制。通过阐明潜在机制、讨论聚醚砜 F127 的优缺点、分析当前伤口愈合发展的现状以及扩展以 F127 作为纳米材料靶向线粒体和细胞的趋势,该综述增强了我们对这些水凝胶治疗效果的理解,旨在促进有效和安全的伤口愈合方式的发展。本综述提供的有价值的见解有可能为临床治疗带来新的思路,并促进创新的伤口管理方法的发展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/917e/10416793/2c3556f8208c/IJN-18-4485-g0001.jpg

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