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天然生物材料的生物活性潜力:生物特性的鉴定、保留和评估。

Bioactive potential of natural biomaterials: identification, retention and assessment of biological properties.

机构信息

School of Medicine, National University of Ireland, Galway, Ireland.

CÚRAM, SFI Research Centre for Medical Devices, National University of Ireland, Galway, Ireland.

出版信息

Signal Transduct Target Ther. 2021 Mar 19;6(1):122. doi: 10.1038/s41392-021-00512-8.

Abstract

Biomaterials have had an increasingly important role in recent decades, in biomedical device design and the development of tissue engineering solutions for cell delivery, drug delivery, device integration, tissue replacement, and more. There is an increasing trend in tissue engineering to use natural substrates, such as macromolecules native to plants and animals to improve the biocompatibility and biodegradability of delivered materials. At the same time, these materials have favourable mechanical properties and often considered to be biologically inert. More importantly, these macromolecules possess innate functions and properties due to their unique chemical composition and structure, which increase their bioactivity and therapeutic potential in a wide range of applications. While much focus has been on integrating these materials into these devices via a spectrum of cross-linking mechanisms, little attention is drawn to residual bioactivity that is often hampered during isolation, purification, and production processes. Herein, we discuss methods of initial material characterisation to determine innate bioactivity, means of material processing including cross-linking, decellularisation, and purification techniques and finally, a biological assessment of retained bioactivity of a final product. This review aims to address considerations for biomaterials design from natural polymers, through the optimisation and preservation of bioactive components that maximise the inherent bioactive potency of the substrate to promote tissue regeneration.

摘要

在最近几十年中,生物材料在生物医学设备设计和组织工程解决方案的开发中发挥了越来越重要的作用,用于细胞输送、药物输送、设备集成、组织替代等。在组织工程中,使用天然基质(如植物和动物中天然存在的大分子)来提高输送材料的生物相容性和可生物降解性的趋势日益增加。同时,这些材料具有优良的机械性能,通常被认为是生物惰性的。更重要的是,由于其独特的化学组成和结构,这些大分子具有固有功能和特性,这增加了它们在广泛应用中的生物活性和治疗潜力。虽然人们已经关注了通过一系列交联机制将这些材料整合到这些设备中,但对于在分离、纯化和生产过程中经常受到阻碍的残留生物活性却关注甚少。本文讨论了初始材料特性的确定方法,以确定固有生物活性,包括交联、脱细胞和纯化技术在内的材料处理方法,最后是对最终产品保留的生物活性进行生物学评估。本综述旨在解决从天然聚合物设计生物材料的考虑因素,通过优化和保护生物活性成分,最大限度地提高基质的固有生物活性潜力,以促进组织再生。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/142a/7973744/a1a0ed0eb996/41392_2021_512_Fig1_HTML.jpg

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