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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Assessing the uptake kinetics and internalization mechanisms of cell-penetrating peptides using a quenched fluorescence assay.
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Assessing the uptake kinetics and internalization mechanisms of cell-penetrating peptides using a quenched fluorescence assay.

机译:使用淬灭荧光分析评估细胞穿透肽的吸收动力学和内在化机理。

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Cell-penetrating peptides (CPPs) have shown great potency for cargo delivery both in vitro and in vivo. Different biologically relevant molecules need to be delivered into appropriate cellular compartments in order to be active, for instance certain drugs/molecules, e.g. antisense oligonucleotides, peptides, and cytotoxic agents require delivery into the cytoplasm. Assessing uptake mechanisms of CPPs can help to develop novel and more potent cellular delivery vectors, especially in cases when reaching a specific intracellular target requires involvement of a specific internalization pathway. Here we measure the overall uptake kinetics, with emphasis on cytoplasmic delivery, of three cell-penetrating peptides M918, TP10 and pVec using a quenched fluorescence assay. We show that both the uptake levels and kinetic constants depend on the endocytosis inhibitors used in the experiments. In addition, in some cases only the internalization rate is affected by the endocytosis inhibitors while the total uptake level is not and vice versa, which emphasizes importance of kinetic studies when assessing the uptake mechanisms of CPPs. Also, there seems to be a correlation between lower total cellular uptake and higher first-order rate constants. Furthermore, this may indicate simultaneous involvement of different endocytic pathways with different efficacies in the internalization process, as hypothesized but not shown earlier in an uptake kinetics assay.
机译:细胞穿透肽(CPPs)已显示出在体内和体外转运货物的强大功效。需要将不同的生物学上相关的分子递送到适当的细胞区室中以使其活性,例如某些药物/分子,例如药物。反义寡核苷酸,肽和细胞毒性剂需要传递到细胞质中。评估CPPs的摄取机制可以帮助开发新型且更有效的细胞递送载体,尤其是在达到特定细胞内靶标需要特定内在化途径参与的情况下。在这里,我们使用淬灭荧光测定法测量了三种穿透细胞的肽M918,TP10和pVec的总体吸收动力学,重点是细胞质传递。我们表明摄取水平和动力学常数均取决于实验中使用的内吞抑制剂。另外,在某些情况下,内吞作用抑制剂仅影响内化速率,而总摄取水平则不受其影响,反之亦然,这强调了动力学研究在评估CPPs摄取机制时的重要性。同样,较低的总细胞摄取与较高的一级速率常数之间似乎存在相关性。此外,这可能表明不同的内吞途径以不同的效率同时参与内在化过程,这是假设的,但在吸收动力学测定中并未更早显示。

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