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Sono-Assembly of the Arg-Phe4 Octapeptide into Biofunctional Nanoparticles

机译:Arg-Phe4八肽超声组装成生物功能纳米粒

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摘要

High-frequency ultrasound treatment is found to be a one-pot green technique to produce peptide-based nanostructures by ultrasound assisted self-assembly of oligopeptides. [Arg-Phe]4 octapeptides, consisting of alternating arginine (Arg/R) and phenylalanine (Phe/F) sequences, were subjected to 430 kHz ultrasound in aqueous solution in the absence of any external agents, to form [RF]4 nanoparticles ([RF]4-NPs), ~220 nm in diameter. A comprehensive analysis of the obtained nanoparticles demonstrated that the aromatic moieties of the oligopeptides can undergo oxidative coupling to form multiple oligomeric species, which then self-assemble into well-defined fluorescent nanoparticles. [RF]4-NPs were functionalized with polyethylene glycol (PEGylated) to improve their colloidal stability. Unlike the parent peptide, the PEGylated [RF]4-NPs showed limited cytotoxicity towards MDA-MB-231 cells. Furthermore, the intracellular trafficking of PEGylated [RF]4-NPs was investigated after incubation with MDA-MB-231 cells to demonstrate their efficient endo-lysosomal escape. This work highlights that the combined use of ultrasonic technologies and peptides enables easy fabrication of nanoparticles, with potential application in drug delivery.
机译:发现高频超声处理是通过寡肽的超声辅助自组装生产肽基纳米结构的一种单罐绿色技术。 [arg-phe] 4八肽,由交替的精氨酸(Arg / R)和苯丙氨酸(PHE / F)序列组成,在不存在任何外部试剂的情况下在水溶液中进行430kHz超声,形成[RF] 4纳米颗粒([rf] 4-nps),直径〜220nm。对所得纳米颗粒的综合分析表明,寡肽的芳族部分可以经历氧化偶联以形成多种低聚物质,然后将其自组装成明确定义的荧光纳米颗粒。用聚乙二醇(PEG化)官能化4-NPS,以改善其胶体稳定性。与亲本肽不同,PEG化的[RF] 4-NPS向MDA-MB-231细胞显示有限的细胞毒性。此外,在与MDA-MB-231细胞孵育后,研究了将PEG化的聚乙二醇化的细胞内运输[RF] 4-NPS进行了证明其有效的内冬溶血剂逃逸。这项工作强调了超声波技术和肽的结合使用使得能够易于制造纳米颗粒,其潜在的药物递送应用。

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