Pepe Antonietta, Bochicchio Brigida, Tamburro Antonio M
Università della Basilicata, Department of Chemistry, Via N. Sauro 85, 85100 Potenza, Italy.
Nanomedicine (Lond). 2007 Apr;2(2):203-18. doi: 10.2217/17435889.2.2.203.
The ultrastructure of elastin has been extensively analyzed by different methodologies. Starting from the first descriptions, where elastin was depicted as an amorphous structure, more complex and, in some cases, varied morphologies were revealed. The supramolecular structures found for elastin have been compared with those found for other elastin-related polypeptides, such as alpha-elastin and tropoelastin, and very similar features emerged. This review will deal with the supramolecular organization exhibited by many elastin-related compounds, starting from elastin, going through polypeptides constituted by different domains of tropoelastin, up to polymers containing repetitive sequences of elastin. In particular, recent developments on biopolymers of general type poly(Val-Pro-Gly-Xaa-Gly) and poly(Xaa-Gly-Gly-Zaa-Gly) (Xaa, Zaa = Val, Leu, Lys, Glu, Orn) obtained either by chemical synthesis or recombinant DNA techniques will be discussed in detail. The general aim is to describe the supramolecular features useful for the identification of elastin-inspired nanostructured biopolymers for developing highly functional and biocompatible vascular grafts as well as scaffolds for tissue regeneration.
弹性蛋白的超微结构已通过不同方法进行了广泛分析。从最初将弹性蛋白描述为无定形结构开始,人们发现了更复杂且在某些情况下形态各异的结构。已将弹性蛋白的超分子结构与其他弹性蛋白相关多肽(如α-弹性蛋白和原弹性蛋白)的超分子结构进行了比较,发现了非常相似的特征。本综述将探讨许多弹性蛋白相关化合物所呈现的超分子组织形式,从弹性蛋白开始,经过由原弹性蛋白不同结构域构成的多肽,直至含有弹性蛋白重复序列的聚合物。特别是,将详细讨论通过化学合成或重组DNA技术获得的一般类型的聚(缬氨酸-脯氨酸-甘氨酸-Xaa-甘氨酸)和聚(Xaa-甘氨酸-甘氨酸-Zaa-甘氨酸)(Xaa、Zaa = 缬氨酸、亮氨酸、赖氨酸、谷氨酸、鸟氨酸)生物聚合物的最新进展。总体目标是描述有助于鉴定受弹性蛋白启发的纳米结构生物聚合物的超分子特征,以开发高功能和生物相容性的血管移植物以及用于组织再生的支架。