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组织工程中的生物材料。

Biomaterials in tissue engineering.

作者信息

Hubbell J A

机构信息

Division of Chemistry and Chemical Engineering, California Institute of Technology, Pasadena 91125, USA.

出版信息

Biotechnology (N Y). 1995 Jun;13(6):565-76. doi: 10.1038/nbt0695-565.

Abstract

Biomaterials play a pivotal role in field of tissue engineering. Biomimetic synthetic polymers have been created to elicit specific cellular functions and to direct cell-cell interactions both in implants that are initially cell-free, which may serve as matrices to conduct tissue regeneration, and in implants to support cell transplantation. Biomimetic approaches have been based on polymers endowed with bioadhesive receptor-binding peptides and mono- and oligosaccharides. These materials have been patterned in two- and three-dimensions to generate model multicellular tissue architectures, and this approach may be useful in future efforts to generate complex organizations of multiple cell types. Natural polymers have also played an important role in these efforts, and recombinant polymers that combine the beneficial aspects of natural polymers with many of the desirable features of synthetic polymers have been designed and produced. Biomaterials have been employed to conduct and accelerate otherwise naturally occurring phenomena, such as tissue regeneration in wound healing in the otherwise healthy subject; to induce cellular responses that might not be normally present, such as healing in a diseased subject or the generation of a new vascular bed to receive a subsequent cell transplant; and to block natural phenomena, such as the immune rejection of cell transplants from other species or the transmission of growth factor signals that stimulate scar formation. This review introduces the biomaterials and describes their application in the engineering of new tissues and the manipulation of tissue responses.

摘要

生物材料在组织工程领域发挥着关键作用。人们已制备出仿生合成聚合物,以引发特定的细胞功能,并在最初无细胞的植入物(可作为引导组织再生的基质)以及支持细胞移植的植入物中引导细胞间相互作用。仿生方法基于带有生物粘附性受体结合肽以及单糖和寡糖的聚合物。这些材料已在二维和三维上进行图案化处理,以生成模型化的多细胞组织结构,并且这种方法在未来生成多种细胞类型的复杂组织的努力中可能会很有用。天然聚合物在这些努力中也发挥了重要作用,并且已经设计并生产出了将天然聚合物的有益方面与合成聚合物的许多理想特性相结合的重组聚合物。生物材料已被用于引导和加速原本自然发生的现象,例如在健康受试者伤口愈合中的组织再生;诱导可能通常不存在的细胞反应,例如在患病受试者中的愈合或生成新的血管床以接受后续的细胞移植;以及阻断自然现象,例如对来自其他物种的细胞移植的免疫排斥或刺激瘢痕形成的生长因子信号的传递。本综述介绍了生物材料,并描述了它们在新组织工程和组织反应操纵中的应用。

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