Centre de Recherches de Biochimie Macromoleculaire, CRBM-CNRS, UMR-5237, UM1-UM2, University of Montpellier, Department of Molecular Biophysics and Therapeutics, 1919 Route de Mende, 34293 Montpellier, France.
Curr Pharm Des. 2013;19(16):2869-77. doi: 10.2174/1381612811319160004.
Although siRNA consist in very promising therapeutics, their clinical development is limited by several biological barriers including low cellular permeability, poor stability and lack of tissue specificity. Therefore the Achilles' heel for siRNA-based therapy is directly related to the lack of efficient system to promote their delivery. During the last two decades, cell-penetrating peptides (CPPs) have been widely developed to enhance the cellular delivery of therapeutics. In this context we have elaborated a new strategy based on self-assembling peptide-based nanoparticles. The CADY peptide is a 20-residue secondary amphipathic peptide which is able to spontaneously self associate with siRNA with a strong affinity, by combining both electrostatic and hydrophobic interactions, to form stable nanoparticles. Investigations of both physico-chemical properties and cellular siRNA delivery revealed that the CADY/siRNA complexes were able to enter a wide variety of cell lines by a mechanism independent of any endocytotic pathway. In addition a deeper understanding of the self assembly of CADY molecules around siRNA leads to a "raspberry"-like nanoparticle architecture which provides new perspectives for the CADY/siRNA formulations. Finally the robustness of the biological response infers that peptide-based nanoparticle technology holds a strong promise for therapeutic applications. The present review deals with most of the biophysical characteristics as well as the cellular mechanism and cellular applications of CADY/siRNA nanoparticles.
尽管 siRNA 具有非常有前途的治疗效果,但它们的临床开发受到几个生物学障碍的限制,包括细胞通透性低、稳定性差和缺乏组织特异性。因此,siRNA 治疗的阿喀琉斯之踵直接与缺乏有效的系统来促进其递呈有关。在过去的二十年中,细胞穿透肽 (CPP) 已被广泛开发以增强治疗药物的细胞递呈。在这方面,我们基于自组装肽纳米颗粒制定了一个新策略。CADY 肽是一种 20 个残基的二级两亲肽,通过结合静电和疏水相互作用,能够与 siRNA 自发强烈结合,形成稳定的纳米颗粒。对物理化学性质和细胞内 siRNA 递呈的研究表明,CADY/siRNA 复合物能够通过一种不依赖任何内吞途径的机制进入各种细胞系。此外,对 CADY 分子围绕 siRNA 自组装的深入了解导致了“覆盆子”状纳米颗粒结构,为 CADY/siRNA 制剂提供了新的前景。最后,生物反应的稳健性推断出基于肽的纳米颗粒技术具有很强的治疗应用潜力。本综述涉及 CADY/siRNA 纳米颗粒的大多数生物物理特性以及细胞机制和细胞应用。