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基于弹性蛋白的生物材料的最新进展。

Recent Advances in Elastin-Based Biomaterial.

机构信息

Departamento de Farmacia, Facultad de Química, Universidad Nacional Autónoma de México, Ciudad de México, 04510, Mexico. Escuela de Ingeniería y Ciencias, Departamento de Bioingeniería, Tecnológico de Monterrey, Campus Ciudad de México, Ciudad de México, 14380, Mexico.

Facultad de Ciencias Químicas, Universidad de Colima, Colima, 28400, Mexico.

出版信息

J Pharm Pharm Sci. 2020;23:314-332. doi: 10.18433/jpps31254.

Abstract

Elastin is one of the main components of the extracellular matrix; it provides resistance and elasticity to a variety of tissues and organs of the human body, besides participating in cellular signaling. On the other hand, elastin-derived peptides are synthetic biopolymers with a similar conformation and structure to elastin, but these possess the advantage of solubility in aqueous mediums. Due to their biological activities and physicochemical properties, elastin and related peptides may be applied as biomaterials to develop diverse biomedical devices, including scaffolds, hydrogels, and drug delivery systems for tissue engineering. Likewise, the combination of elastin with natural or synthetic polymers has demonstrated to improve the mechanical properties of biomedical products and drug delivery systems. Here we comprehensively describe the physicochemical properties and physiological functions of elastin. Moreover, we offer an overview of the use of elastin and its derivative polymers as biomaterials to develop scaffolds and hydrogels for tissue engineering. Finally, we discuss some perspectives on the employment of these biopolymers to fabricate new biomedical products.

摘要

弹性蛋白是细胞外基质的主要成分之一;它为人体的各种组织和器官提供阻力和弹性,此外还参与细胞信号传递。另一方面,弹性蛋白衍生肽是具有与弹性蛋白相似构象和结构的合成生物聚合物,但这些聚合物具有在水介质中溶解的优点。由于其生物活性和物理化学性质,弹性蛋白和相关肽可能被用作生物材料来开发各种生物医学设备,包括组织工程中的支架、水凝胶和药物输送系统。同样,弹性蛋白与天然或合成聚合物的结合已被证明可以改善生物医学产品和药物输送系统的机械性能。在这里,我们全面描述了弹性蛋白的物理化学性质和生理功能。此外,我们概述了弹性蛋白及其衍生聚合物作为生物材料在开发组织工程支架和水凝胶中的应用。最后,我们讨论了使用这些生物聚合物制造新型生物医学产品的一些观点。

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