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原位组织再生的生物材料:综述。

Biomaterials for In Situ Tissue Regeneration: A Review.

机构信息

Centre for Rapid and Sustainable Product Development, Polytechnic of Leiria, 2430-080 Marinha Grande, Portugal.

出版信息

Biomolecules. 2019 Nov 19;9(11):750. doi: 10.3390/biom9110750.

Abstract

This review focuses on a somewhat unexplored strand of regenerative medicine, that is in situ tissue engineering. In this approach manufactured scaffolds are implanted in the injured region for regeneration within the patient. The scaffold is designed to attract cells to the required volume of regeneration to subsequently proliferate, differentiate, and as a consequence develop tissue within the scaffold which in time will degrade leaving just the regenerated tissue. This review highlights the wealth of information available from studies of ex-situ tissue engineering about the selection of materials for scaffolds. It is clear that there are great opportunities for the use of additive manufacturing to prepare complex personalized scaffolds and we speculate that by building on this knowledge and technology, the development of in situ tissue engineering could rapidly increase. Ex-situ tissue engineering is handicapped by the need to develop the tissue in a bioreactor where the conditions, however optimized, may not be optimum for accelerated growth and maintenance of the cell function. We identify that in both methodologies the prospect of tissue regeneration has created much promise but delivered little outside the scope of laboratory-based experiments. We propose that the design of the scaffolds and the materials selected remain at the heart of developments in this field and there is a clear need for predictive modelling which can be used in the design and optimization of materials and scaffolds.

摘要

这篇综述专注于再生医学中一个尚未得到充分探索的领域,即原位组织工程。在这种方法中,制造的支架被植入受损区域,以在患者体内进行再生。支架的设计目的是吸引细胞到所需的再生体积,随后增殖、分化,并在支架内形成组织,随着时间的推移,支架会降解,只留下再生组织。本综述强调了从体外组织工程研究中获得的大量信息,这些信息涉及支架材料的选择。很明显,使用增材制造来制备复杂的个性化支架有很大的机会,我们推测,通过利用这些知识和技术,原位组织工程的发展可能会迅速增加。体外组织工程受到在生物反应器中开发组织的限制,无论如何优化条件,都可能无法实现细胞功能的快速生长和维持。我们发现,在这两种方法中,组织再生的前景都带来了很大的希望,但除了实验室实验的范围之外,几乎没有什么实际应用。我们认为,支架的设计和所选材料仍然是该领域发展的核心,因此非常需要能够用于材料和支架设计和优化的预测模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f6db/6920773/929ea7dcafe7/biomolecules-09-00750-g001.jpg

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