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Review Biology of the cell. 2025 Jun;117(6):e70012. doi: 10.1111/boc.70012 Q42.42025

The Different Cellular Entry Routes for Drug Delivery Using Cell Penetrating Peptides

用于药物传递的细胞穿膜肽的不同细胞内吞途径 翻译改进

Michael Okafor  1  2, David Schmitt  1  3, Stéphane Ory  1, Stéphane Gasman  1, Christelle Hureau  3, Peter Faller  2, Nicolas Vitale  1

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作者单位

  • 1 Institut des Neurosciences Cellulaires et Intégratives-CNRS UPR3212, Université de Strasbourg, Strasbourg, France.
  • 2 Institut de Chimie-UMR7177, Université de Strasbourg/CNRS, Strasbourg, France.
  • 3 Laboratoire de Chimie de Coordination-CNRS UPR8241, Université de Toulouse, Toulouse, France.
  • DOI: 10.1111/boc.70012 PMID: 40490965

    摘要 中英对照阅读

    The cell plasma membrane acts as a semi-permeable barrier essential for cellular protection and function, posing a challenge for therapeutic molecule delivery. Conventional techniques for crossing this barrier, including biophysical and biochemical methods, often exhibit limitations such as cytotoxicity and the risk of genomic integration when viral vectors are involved. In contrast, cell-penetrating peptides (CPPs) offer a promising non-invasive means to deliver a broad range of molecular cargoes, including proteins, nucleic acids and small molecules, into cells. CPPs, typically 5 to 30 amino acids long and rich in basic or non-polar residues, interact favourably with different cell membranes. These peptides have evolved since the discovery of the HIV-1 TAT peptide in the 1980s, expanding into various CPP families with diverse therapeutic applications. CPPs can form covalent or non-covalent complexes with their cargo, influencing their stability and efficacy. Based on their sequence properties and interactions, CPPs can be amphipathic or non-amphipathic, with distinct mechanisms of membrane penetration, such as direct penetration and endocytosis. While their uptake mechanisms are complex and not fully elucidated, ongoing optimization aims to enhance CPP specificity and efficacy. CPPs have demonstrated potential in drug delivery, gene therapy, cancer treatment and vaccine development, addressing key safety and efficiency concerns associated with viral vectors. This review explores the classification, mechanisms of action and therapeutic potential. It focuses on the intracellular vesicular trafficking of CPPs, highlighting their role as transformative tools in advancing cellular therapies and medical treatments.

    Keywords: cell penetrating peptides; endocytosis; endosomes; macropinocytosis; membrane penetration.

    Keywords:drug delivery; cell penetrating peptides; cellular entry routes

    细胞质膜作为半透屏障,在细胞保护和功能中起着至关重要的作用,这对治疗分子的递送构成了挑战。传统技术如生物物理和生化方法在穿越这一障碍时常常表现出局限性,包括细胞毒性以及涉及病毒载体时基因组整合的风险。相比之下,穿膜肽(Cell-Penetrating Peptides, CPPs)提供了一种有前景的非侵入手段,可以将广泛的分子负载物递送至细胞中,这些负载物包括蛋白质、核酸和小分子等。CPPs通常由5到30个氨基酸组成,并富含碱性或疏水残基,与不同类型的细胞膜相互作用良好。自从20世纪80年代发现HIV-1 TAT肽以来,CPPs已经发展成为多个具有不同治疗应用的家族。CPPs可以与其负载物形成共价或非共价复合体,影响它们的稳定性和效力。根据其序列特性和相互作用,CPPs可分为两亲性或非两亲性,并且有不同的膜穿透机制,如直接穿透和内吞作用。虽然它们的摄取机制复杂且尚未完全阐明,但正在进行的优化旨在提高CPP的选择性和效率。CPP在药物递送、基因治疗、癌症治疗及疫苗开发方面展示了其潜力,解决了与病毒载体相关的关键安全性和效率问题。本综述探讨了CPPs的分类、作用机制和治疗潜力,并重点关注了它们在细胞内囊泡转运中的角色,突显出其作为促进细胞疗法和医疗治疗变革工具的重要地位。

    关键词: 穿膜肽;内吞作用;内体;巨胞饮;膜穿透。

    关键词:药物输送; 细胞穿透肽; 细胞进入途径

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    期刊名:Biology of the cell

    缩写:BIOL CELL

    ISSN:0248-4900

    e-ISSN:1768-322X

    IF/分区:2.4/Q4

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