a Division of Mucosal Immunology and Diagnostics, Priority Area Asthma & Allergy , Research Center Borstel , Borstel , Germany.
Drug Deliv. 2018 Nov;25(1):928-937. doi: 10.1080/10717544.2018.1458921.
Delivering reagents into cells is a key demand in molecular medicine. The vehicle of choice is often cell penetrating peptides (CPPs), which can ferry conjugated cargo across membranes. Although numerous peptides have been shown to promote such uptake events, there has been no comprehensive comparison of individual performance under standardized conditions. We have devised a method to rapidly analyze the ability of a multitude of CPP conjugates to carry a model cargo into HeLa cells. Sequence information for 474 CPPs was collected from literature sources, and the respective peptides were synthesized and modified with carboxyfluorescein (FAM) as model cargo. All candidates were evaluated in an identical uptake test, and transport was quantified using cellular fluorescence intensities. Substantial differences in the ability to carry the fluorophore into the cells were observed, with transport performance differing by a factor of 70 between the best CPP investigated and cargo alone. Strong correlations were observed between uptake efficiency and both sequence length and the presence of positive net charge. A compilation of the 20 top performers with regard to cargo delivery performance and cell compatibility is provided.
将试剂递送到细胞中是分子医学的一项关键需求。常用的载体是细胞穿透肽(CPPs),它可以将共轭货物输送穿过细胞膜。尽管已经有许多肽被证明可以促进这种摄取事件,但在标准化条件下对单个性能的综合比较还没有。我们设计了一种快速分析多种 CPP 缀合物将模型货物输送到 HeLa 细胞的能力的方法。从文献中收集了 474 个 CPP 的序列信息,并将相应的肽用羧基荧光素(FAM)合成和修饰为模型货物。所有候选物都在相同的摄取试验中进行评估,并使用细胞荧光强度定量运输。观察到将荧光团输送到细胞中的能力存在显著差异,研究的最佳 CPP 与单独的货物之间的转运性能差异高达 70 倍。在摄取效率与序列长度和净正电荷的存在之间观察到强相关性。提供了一份关于货物输送性能和细胞相容性方面的 20 个最佳表现者的汇编。