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用于转化性骨再生工程的产氧生物材料

Oxygen-Generating Biomaterials for Translational Bone Regenerative Engineering.

作者信息

Hosseini Fatemeh S, Abedini Amir Abbas, Chen Feiyang, Whitfield Taraje, Ude Chinedu C, Laurencin Cato T

机构信息

Connecticut Convergence Institute for Translation in Regenerative Engineering, UConn Health, Farmington, Connecticut 06030, United States.

Raymond and Beverly Sackler Center for Biomedical, Biological, Physical and Engineering Sciences, UConn Health, Farmington, Connecticut 06030, United States.

出版信息

ACS Appl Mater Interfaces. 2023 Mar 29. doi: 10.1021/acsami.2c20715.

Abstract

Successful regeneration of critical-size defects remains one of the significant challenges in regenerative engineering. These large-scale bone defects are difficult to regenerate and are often reconstructed with matrices that do not provide adequate oxygen levels to stem cells involved in the regeneration process. Hypoxia-induced necrosis predominantly occurs in the center of large matrices since the host tissue's local vasculature fails to provide sufficient nutrients and oxygen. Indeed, utilizing oxygen-generating materials can overcome the central hypoxic region, induce tissue in-growth, and increase the quality of life for patients with extensive tissue damage. This article reviews recent advances in oxygen-generating biomaterials for translational bone regenerative engineering. We discussed different oxygen-releasing and delivery methods, fabrication methods for oxygen-releasing matrices, biology, oxygen's role in bone regeneration, and emerging new oxygen delivery methods that could potentially be used for bone regenerative engineering.

摘要

关键尺寸缺损的成功再生仍然是再生工程中的重大挑战之一。这些大规模骨缺损难以再生,通常使用的基质无法为参与再生过程的干细胞提供足够的氧水平。缺氧诱导的坏死主要发生在大基质的中心,因为宿主组织的局部血管系统无法提供足够的营养和氧气。事实上,利用产氧材料可以克服中心缺氧区域,诱导组织向内生长,并提高广泛组织损伤患者的生活质量。本文综述了用于转化性骨再生工程的产氧生物材料的最新进展。我们讨论了不同的氧释放和递送方法、氧释放基质的制造方法、生物学、氧在骨再生中的作用以及可能用于骨再生工程的新兴新氧递送方法。

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