Department of Experimental and Health Sciences, Pompeu Fabra University, Barcelona Biomedical Research Park, 08003 Barcelona, Spain.
Department of Experimental and Health Sciences, Pompeu Fabra University, Barcelona Biomedical Research Park, 08003 Barcelona, Spain.
Arch Biochem Biophys. 2019 Jan;661:74-86. doi: 10.1016/j.abb.2018.11.010. Epub 2018 Nov 14.
In 1988, two unrelated papers reported the discovery of peptide vectors with innate cell translocation properties, setting the ground for a new area of research that over the years has grown into considerable therapeutic potential. The vectors, named cell-penetrating peptides (CPPs), constitute a now large and diversified family, sharing the extraordinary ability to diffuse unaltered across cell membranes while ferrying diverse associated cargos. Such properties have made CPPs ideal tools for delivery of nucleic acids, proteins and other therapeutic/diagnostic molecules to cells and tissues via covalent conjugation or complexation. This year 2018 marks the 30 anniversary of a peptide research landmark opening new perspectives in drug delivery. Given its vastness, exhaustive coverage of the main features and accomplishments in the CPP field is virtually impossible. Hence this manuscript, after saluting the above 30 jubilee, focuses by necessity on the most recent contributions, providing a comprehensive list of recognized CPPs and their latest-reported applications over the last two years. In addition, it thoroughly reviews three areas of peptide vector research of particular interest to us, namely (i) efficient transport of low-bioavailability drugs into the brain; (ii) CPP-delivered disruptors of G protein-coupled receptor (GPCRs) heteromers related to several disorders, and (iii) CPP-mediated delivery of useful but poorly internalized drugs into parasites.
1988 年,两篇不相关的论文报道了具有天然细胞转位特性的肽载体的发现,为一个新的研究领域奠定了基础,多年来,该领域已经发展出相当大的治疗潜力。这些载体被命名为细胞穿透肽(CPPs),构成了一个庞大而多样化的家族,它们具有非凡的能力,可以在不改变细胞膜的情况下扩散,同时携带不同的相关货物。这些特性使 CPP 成为通过共价连接或复合物将核酸、蛋白质和其他治疗/诊断分子递送到细胞和组织的理想工具。今年 2018 年标志着肽研究的一个里程碑 30 周年,为药物输送开辟了新的视角。鉴于其广泛性,全面涵盖 CPP 领域的主要特征和成就几乎是不可能的。因此,本文在向上述 30 周年致敬之后,必然侧重于最近的贡献,提供了一个公认的 CPP 及其最近两年最新报道的应用的综合列表。此外,它还彻底审查了我们特别感兴趣的三个肽载体研究领域,即(i)将低生物利用度药物有效递送到大脑;(ii)CPP 递送至与多种疾病相关的 G 蛋白偶联受体(GPCR)异源二聚体的破坏者,以及(iii)CPP 介导的将有用但内化不良的药物递送至寄生虫。