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两亲性辛烯基丙氨酸修饰肽介导有效的小干扰RNA递送。

Amphipathic Octenyl-Alanine Modified Peptides Mediate Effective siRNA Delivery.

作者信息

Lehto Tõnis, Isakannu Marit, Sork Helena, Lorents Annely, Bazaz Safa, Wiklander Oscar P B, Andaloussi Samir El, Lehto Taavi

机构信息

Institute of Technology, University of Tartu, Tartu, Estonia.

Faculty of Medicine, Institute of Pharmacy, University of Tartu, Tartu, Estonia.

出版信息

J Pept Sci. 2025 Oct;31(10):e70054. doi: 10.1002/psc.70054.

Abstract

The development of therapeutic small interfering RNAs (siRNAs) has lately gained significant momentum due to their ability to silence genes in a highly specific manner. The main obstacle withholding the wider translation of siRNA-based drug modalities is their limited half-life and poor bioavailability, especially in extra-hepatic tissues. Consequently, various drug delivery systems (DDSs) have been developed to improve the delivery of siRNAs, including short delivery peptides called cell-penetrating peptides (CPPs). In this study, we explore the potential of using alkenyl-alanine modifications to enhance the siRNA delivery efficacy with CPPs. We demonstrate on hPep peptides that incorporation of alkenyl-alanines enhances the encapsulation of siRNAs into stable nanoparticles and contributes to increased cellular uptake. Furthermore, we demonstrate that the lead peptide, hPep3, induces effective RNAi-mediated gene silencing in a reporter cell model as well as on the disease-implicated endogenous CD45 gene target. The biodistribution studies in mice show that the alkenyl-alanines are systemically well tolerated, and employing such modifications in the peptide backbone improves siRNA delivery in several tissues, including extra-hepatic sites. As demonstrated on hPep peptides, alkenyl-alanines offer a simple yet robust way to enhance the delivery efficacy of CPPs and have the potential to advance siRNA therapeutics beyond the liver targets.

摘要

治疗性小干扰RNA(siRNA)的开发近来由于其能够以高度特异性的方式使基因沉默而获得了显著的发展势头。阻碍基于siRNA的药物形式更广泛应用的主要障碍是它们有限的半衰期和较差的生物利用度,尤其是在肝外组织中。因此,已经开发了各种药物递送系统(DDS)来改善siRNA的递送,包括称为细胞穿透肽(CPP)的短递送肽。在本研究中,我们探索了使用烯基丙氨酸修饰来增强CPP介导的siRNA递送效果的潜力。我们在hPep肽上证明,烯基丙氨酸的掺入增强了siRNA包封到稳定纳米颗粒中的能力,并有助于增加细胞摄取。此外,我们证明先导肽hPep3在报告细胞模型以及与疾病相关的内源性CD45基因靶点上诱导有效的RNAi介导的基因沉默。在小鼠中的生物分布研究表明,烯基丙氨酸在全身具有良好的耐受性,并且在肽主链中采用这种修饰可改善siRNA在包括肝外部位在内的多个组织中的递送。如在hPep肽上所证明的,烯基丙氨酸提供了一种简单而有效的方法来增强CPP的递送效果,并有可能将siRNA治疗扩展到肝脏靶点之外。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/837e/12414742/8e5a3a398bcc/PSC-31-e70054-g004.jpg

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