Advances in oxygen-releasing matrices for regenerative engineering applications.

IF 2.6 4区 医学 Q2 COMPUTER SCIENCE, INTERDISCIPLINARY APPLICATIONS Medical & Biological Engineering & Computing Pub Date : 2025-09-01 Epub Date: 2025-04-04 DOI:10.1007/s11517-025-03354-6
Yihong Zeng, Can Yan, Guobao Chen, Zhongmin Chen, Fuping Wang
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Abstract

In recent years, the effects of hypoxia on tissue repair have received wider attention with the deepening of tissue engineering research. Various oxygen supply strategies have wider applications in the field of tissue repair. Currently, commonly used methods of oxygen supply for defective tissues include hyperbaric oxygen (HBO) and oxygen-releasing materials. Between them, oxygen-releasing materials continuously and efficiently release oxygen from within the defective tissue. Compared with HBO, which may cause oxidative stress in healthy tissues, supplying oxygen via oxygen-releasing materials is safer because of their oxygen-releasing in situ and specific oxygen supply characteristics. However, there still exist some problems in the study of oxygen-releasing materials, such as cytotoxicity and the shortage of oxygen-releasing time. The current reviews on oxygen-releasing materials mostly elaborate on the principles of oxygen-releasing materials and lack a review of their preparation methods and applications. In this paper, different types of oxygen-releasing materials, such as hydrogels, microspheres, and layers, are reviewed concerning their applications, structures, current development status, and challenges.

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再生工程中氧释放基质的研究进展。
近年来,随着组织工程研究的深入,缺氧对组织修复的影响受到越来越广泛的关注。各种供氧策略在组织修复领域有着广泛的应用。目前常用的缺陷组织供氧方法有高压氧(HBO)和放氧材料。在它们之间,氧气释放材料持续有效地从缺陷组织中释放氧气。相对于可能引起健康组织氧化应激的高压氧,通过放氧材料供氧由于其原位放氧和特定供氧的特性,更安全。然而,在氧释放材料的研究中还存在一些问题,如细胞毒性和氧释放时间的不足。目前对释氧材料的研究多是阐述释氧材料的原理,对其制备方法和应用的综述较少。本文综述了水凝胶、微球、层状等不同类型的释氧材料的应用、结构、发展现状及面临的挑战。
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来源期刊
Medical & Biological Engineering & Computing
Medical & Biological Engineering & Computing 医学-工程:生物医学
CiteScore
6.00
自引率
3.10%
发文量
249
审稿时长
3.5 months
期刊介绍: Founded in 1963, Medical & Biological Engineering & Computing (MBEC) continues to serve the biomedical engineering community, covering the entire spectrum of biomedical and clinical engineering. The journal presents exciting and vital experimental and theoretical developments in biomedical science and technology, and reports on advances in computer-based methodologies in these multidisciplinary subjects. The journal also incorporates new and evolving technologies including cellular engineering and molecular imaging. MBEC publishes original research articles as well as reviews and technical notes. Its Rapid Communications category focuses on material of immediate value to the readership, while the Controversies section provides a forum to exchange views on selected issues, stimulating a vigorous and informed debate in this exciting and high profile field. MBEC is an official journal of the International Federation of Medical and Biological Engineering (IFMBE).
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