Department of Chemistry, Dyal Singh College, University of Delhi, Lodhi Road, New Delhi 110003, India.
Department of Chemistry, Dyal Singh College, University of Delhi, Lodhi Road, New Delhi 110003, India; Nucleic Acids Research Laboratory, CSIR-Institute of Genomics and Integrative Biology, Delhi University Campus, Mall Road, Delhi 110007, India.
Int J Biol Macromol. 2018 May;111:880-893. doi: 10.1016/j.ijbiomac.2018.01.079. Epub 2018 Jan 31.
The present article describes designing and fabrication of nanostructures from a mixed α/β-pentapeptide, Lys-βAla-βAla-Lys-βAla, which majorly contains non-natural β-alanine residues in the backbone with two α-lysine residues at 1- and 4-positions. The amphiphilic pentapeptide showed the ability to self-assemble into cationic nanovesicles in an aqueous solution. The average size of peptide nanostructures was found to be ~270 nm with a very high cationic charge of ~+40 mV. TEM micrographs revealed the average size of the same nanostructures ~80 nm bearing vesicular morphology. CD and FTIR spectroscopic studies on self-assembled pentapeptide hinted at random coil conformation which was also correlated with conformational search program using Hyper Chem 8.0. The pentapeptide nanostructures were then tested for encapsulation of hydrophobic model drug moieties, L-Dopa, and curcumin. Transfection efficiency of the generated cationic nanostructures was evaluated on HEK293 cells and compared the results with those obtained in the presence of chloroquine. The cytotoxicity assay performed using MTT depicted ~75-80% cell viability. The obtained nanostructures also gave positive results against both Gram-negative and Gram-positive bacterial strains. Altogether the results advocate the promising potential of the pentapeptide foldamer, H-Lys-βAla-βAla-Lys-βAla-OEt, for drug and gene delivery applications along with the antimicrobial activity.
本文描述了一种由混合的 α/β-五肽,Lys-βAla-βAla-Lys-βAla 设计和制造纳米结构的方法,该五肽的主链主要含有非天然的β-丙氨酸残基,在 1-和 4-位上有两个α-赖氨酸残基。两亲性五肽在水溶液中能够自组装成阳离子纳米囊泡。研究发现,肽纳米结构的平均尺寸约为 270nm,带非常高的正电荷约+40mV。TEM 显微照片显示相同纳米结构的平均尺寸约为 80nm,具有囊泡形态。自组装五肽的 CD 和 FTIR 光谱研究表明其构象为无规卷曲,这与使用 Hyper Chem 8.0 的构象搜索程序也相关。然后,研究人员测试了这些五肽纳米结构对疏水性模型药物 L-Dopa 和姜黄素的包封能力。生成的阳离子纳米结构的转染效率在 HEK293 细胞上进行了评估,并与氯喹存在时的结果进行了比较。使用 MTT 进行的细胞毒性测定显示,细胞存活率约为 75-80%。所得纳米结构对革兰氏阴性和革兰氏阳性细菌菌株也呈阳性结果。总的来说,这些结果表明,这种五肽折叠体 H-Lys-βAla-βAla-Lys-βAla-OEt 在药物和基因传递应用以及抗菌活性方面具有很大的应用潜力。