Shoari Alireza, Tooyserkani Raheleh, Tahmasebi Mehdi, Löwik Dennis W P M
Department of Medical Biotechnology, Faculty of Medical Sciences, Tarbiat Modares University, Tehran 14115-111, Iran.
Bio-Organic Chemistry, Institute for Molecules and Materials, Radboud University Nijmegen, Heyendaalseweg 135, 6525 AJ Nijmegen, The Netherlands.
Pharmaceutics. 2021 Sep 2;13(9):1391. doi: 10.3390/pharmaceutics13091391.
Cell-penetrating peptides (CPPs), also known as protein transduction domains, are a class of diverse amino acid sequences with the ability to cross cellular membranes. CPPs can deliver several bioactive cargos, including proteins, peptides, nucleic acids and chemotherapeutics, into cells. Ever since their discovery, synthetic and natural CPPs have been utilized in therapeutics delivery, gene editing and cell imaging in fundamental research and clinical experiments. Over the years, CPPs have gained significant attention due to their low cytotoxicity and high transduction efficacy. In the last decade, multiple investigations demonstrated the potential of CPPs as carriers for the delivery of therapeutics to treat various types of cancer. Besides their remarkable efficacy owing to fast and efficient delivery, a crucial benefit of CPP-based cancer treatments is delivering anticancer agents selectively, rather than mediating toxicities toward normal tissues. To obtain a higher therapeutic index and to improve cell and tissue selectivity, CPP-cargo constructions can also be complexed with other agents such as nanocarriers and liposomes to obtain encouraging outcomes. This review summarizes various types of CPPs conjugated to anticancer cargos. Furthermore, we present a brief history of CPP utilization as delivery systems for anticancer agents in the last decade and evaluate several reports on the applications of CPPs in basic research and preclinical studies.
细胞穿透肽(CPPs),也被称为蛋白质转导结构域,是一类具有穿越细胞膜能力的多样氨基酸序列。CPPs能够将多种生物活性物质,包括蛋白质、肽、核酸和化疗药物,递送至细胞内。自被发现以来,合成和天然的CPPs已被用于基础研究和临床实验中的治疗递送、基因编辑和细胞成像。多年来,CPPs因其低细胞毒性和高转导效率而备受关注。在过去十年中,多项研究证明了CPPs作为治疗多种类型癌症的治疗药物载体的潜力。除了因其快速高效递送而具有显著疗效外,基于CPPs的癌症治疗的一个关键优势是能够选择性地递送抗癌药物,而不是对正常组织产生毒性。为了获得更高的治疗指数并提高细胞和组织选择性,CPP-货物构建体还可以与纳米载体和脂质体等其他试剂复合,以获得令人鼓舞的结果。本综述总结了与抗癌货物缀合的各种类型的CPPs。此外,我们介绍了CPPs在过去十年中作为抗癌药物递送系统的简要使用历史,并评估了一些关于CPPs在基础研究和临床前研究中的应用报告。