首页> 外文期刊>Journal of Materials Chemistry, B. materials for biology and medicine >Self-assembled dipeptide nanotubes constituted by flexible β-phenylalanine and conformationally constrained α,β-dehydrophenylalanine residues as drug delivery system
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Self-assembled dipeptide nanotubes constituted by flexible β-phenylalanine and conformationally constrained α,β-dehydrophenylalanine residues as drug delivery system

机译:由柔性β-苯丙氨酸和构象约束的α,β-脱氢苯丙氨酸残基组成的自组装二肽纳米管作为药物输送系统

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摘要

Peptide based self assembled nanostructures have attracted growing interest in recent years due to their numerous potential applications particularly in biomedical sciences. Di-peptide Phe-Phe was shown previously to self-assemble into nanotube like structures. In this work, we studied the affect of peptide backbone length and conformational flexibility on the self assembly process by using two dipeptides based on the Phe-Phe backbone (βPhe-Phe and βPhe-ΔPhe): one containing a flexible βPhe amino acid, and the other containing both a flexible PPhe as well as a backbone constraining ΔPhe (α,β-dehydrophenylalanine) amino acid. Electron microscopy and X-ray diffraction experiments revealed that these new di-peptides can self-assemble into nanotubes having different properties than the native Phe-Phe nanotubes. These nanotubes were stable over a broad range of temperatures and the introduction of non-natural amino acids provided them with stability against the action of nonspecific proteases. Moreover, these dipeptides showed no cytotoxicity towards HeLa and L929 cells, and were able to encapsulate small drug molecules. We further showed that anticancerous drug mitoxantrone was more efficient in killing HeLa and B6F10 cells when entrapped in nanotubes as compared to free mitoxantrone. Therefore, these β-phenylalanine and α,β-dehydrophenylalanine containing dipeptide nanotubes may be useful in the development of biocompatible and proteolytically stable drug delivery vehicles.
机译:近年来,基于肽的自组装纳米结构吸引了越来越多的关注,这是因为它们的众多潜在应用,特别是在生物医学领域。先前显示二肽Phe-Phe可自组装成类似纳米管的结构。在这项工作中,我们使用两种基于Phe-Phe主链的二肽(βPhe-Phe和βPhe-ΔPhe)研究了肽主链长度和构象柔韧性对自组装过程的影响:一种包含柔性βPhe氨基酸,以及另一个含有柔性PPhe和主链约束ΔPhe(α,β-脱氢苯丙氨酸)氨基酸。电子显微镜和X射线衍射实验表明,这些新的二肽可以自组装成具有与天然Phe-Phe纳米管不同性质的纳米管。这些纳米管在很宽的温度范围内都是稳定的,非天然氨基酸的引入为它们提供了抵抗非特异性蛋白酶作用的稳定性。而且,这些二肽对HeLa和L929细胞没有细胞毒性,并且能够包封小的药物分子。我们进一步表明,与游离的米托蒽醌相比,当被困在纳米管中时,抗癌药米托蒽醌更有效地杀死HeLa和B6F10细胞。因此,这些包含β-苯丙氨酸和α,β-脱氢苯丙氨酸的二肽纳米管可用于开发生物相容性和蛋白水解稳定的药物递送载体。

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