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Evaluation of diverse peptidyl motifs for cellular delivery of semiconductor quantum dots Optical Nanosensing in Cells

机译:评估不同的肽基基元用于细胞中的半导体量子点细胞光学纳米传感的传递

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Cell-penetrating peptides (CPPs) have rapidly become a mainstay technology for facilitating the delivery of a wide variety of nanomaterials to cells and tissues. Currently, the library of CPPs to choose from is still limited, with the HIV TAT-derived motif still being the most used. Among the many materials routinely delivered by CPPs, nanoparticles are of particular interest for a plethora of labeling, imaging, sensing, diagnostic, and therapeutic applications. The development of nanoparticle-based technologies for many of these uses will require access to a much larger number of functional peptide motifs that can both facilitate cellular delivery of different types of nanoparticles to cells and be used interchangeably in the presence of other peptides and proteins on the same surface. Here, we evaluate the utility of four peptidyl motifs for their ability to facilitate delivery of luminescent semiconductor quantum dots (QDs) in a model cell culture system. We find that an LAH4 motif, derived from a membrane-inserting antimicrobial peptide, and a chimeric sequence that combines a sweet arrow peptide with a portion originating from the superoxide dismutase enzyme provide effective cellular delivery of QDs. Interestingly, a derivative of the latter sequence lacking just a methyl group was found to be quite inefficient, suggesting that even small changes can have significant functional outcomes. Delivery was effected using 1 h incubation with cells, and fluorescent counterstaining strongly suggests an endosomal uptake process that requires a critical minimum number or ratio of peptides to be displayed on the QD surface. Concomitant cytoviability testing showed that the QD-peptide conjugates are minimally cytotoxic in the model COS-1 cell line tested. Potential applications of these peptides in the context of cellular delivery of nanoparticles and a variety of other (bio)molecules are discussed. [Figure not available: see fulltext.]
机译:细胞穿透肽(CPPs)已迅速成为促进向细胞和组织输送各种纳米材料的主要技术。当前,可供选择的CPP库仍然有限,HIV TAT衍生的基序仍然是最常用的。在CPP常规提供的许多材料中,纳米颗粒对于众多标记,成像,传感,诊断和治疗应用特别感兴趣。用于许多这些用途的基于纳米粒子的技术的发展将需要获得大量功能性肽基序,这些基序既可以促进细胞将不同类型的纳米粒子递送到细胞,又可以在存在其他肽和蛋白质的情况下互换使用。相同的表面。在这里,我们评估了四个肽基基序在模型细胞培养系统中促进发光半导体量子点(QD)传递的能力。我们发现,从插入膜的抗菌肽中衍生出来的LAH4基序,以及将甜箭肽与源自超氧化物歧化酶的部分相结合的嵌合序列,可提供有效的QD细胞递送。有趣的是,发现后一个序列仅具有甲基基团的衍生物效率很低,这表明即使很小的变化也可以具有显着的功能结果。交付是通过与细胞孵育1小时来实现的,荧光复染色强烈表明内体摄取过程需要在QD表面展示关键的最小数量或比例的肽。伴随的细胞活力测试表明,在测试的COS-1模型细胞系中,QD-肽共轭物的细胞毒性最小。讨论了这些肽在纳米颗粒和各种其他(生物)分子的细胞递送中的潜在应用。 [图不可用:请参见全文。]

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