Qiu Yue, Yu Qianwen, Shi Kairong, Zhang Mengmeng, Zhou Xianyang, Yang Yuting, Liu Yayuan, Tang Jiajing, Wang Xuhui, He Qin
Key Laboratory of Drug Targeting and Drug Delivery Systems, Ministry of Education, West China School of Pharmacy, Sichuan University, Chengdu, Sichuan, People's Republic of China.
Amino Acids. 2017 Jan;49(1):75-88. doi: 10.1007/s00726-016-2327-8. Epub 2016 Sep 19.
Cell-penetrating peptides (CPPs) are widely used in the development of various drug delivery systems because of their ability of penetrating plasma membrane. However, the safety of their application remains largely unknown. In this study, we found that the incubation of two main kinds of CPPs with human normal liver cells could cause the occurrence of apoptosis and necrosis, then the detailed apoptosis-related protein were detected out. To discover the specific way which leads to these results, several methods were used in this study. Several cytokines, such as Caspase3 and Bcl-2, were detected to prove that the damage happened after treated with different CPPs. Then shielding the positive charge of TAT and R8, depletion of Na in culturing medium and addition of several inhibitors of specific ATPase site were used to investigate whether the cytotoxicity were charge-dependent and ATPase-related. Furthermore, the membrane potential of mitochondria and the leakage of mitochondrial cytochrome c were detected after treated with CPPs to investigate the damage on mitochondria. In general, our results assess the cytotoxicity caused by two main kinds of CPPs and reveal the clear mechanism of how it occurs. This study reveals the essence of cytotoxicity caused by CPPs, and the methods we followed can be used to evaluate the biocompatibility of new-designed CPPs, which makes the application of CPPs better and safer.
细胞穿透肽(CPPs)因其穿透质膜的能力而被广泛应用于各种药物递送系统的开发。然而,其应用的安全性在很大程度上仍然未知。在本研究中,我们发现两种主要类型的CPPs与人正常肝细胞孵育会导致凋亡和坏死的发生,随后检测了详细的凋亡相关蛋白。为了发现导致这些结果的具体方式,本研究采用了几种方法。检测了几种细胞因子,如半胱天冬酶3(Caspase3)和Bcl-2,以证明在用不同的CPPs处理后发生了损伤。然后通过屏蔽TAT和R8的正电荷、耗尽培养基中的钠以及添加几种特异性ATP酶位点的抑制剂来研究细胞毒性是否与电荷和ATP酶相关。此外,在用CPPs处理后检测线粒体膜电位和线粒体细胞色素c的泄漏,以研究对线粒体的损伤。总的来说,我们的结果评估了两种主要类型的CPPs引起的细胞毒性,并揭示了其发生的明确机制。本研究揭示了CPPs引起细胞毒性的本质,我们采用的方法可用于评估新设计的CPPs的生物相容性,从而使CPPs的应用更好、更安全。