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为骨基因治疗设计的定制型载寡核苷酸脂质-聚合物纳米系统。

Tailor-made oligonucleotide-loaded lipid-polymer nanosystems designed for bone gene therapy.

机构信息

Department of Chemical Engineering and Pharmaceutical Technology, Universidad de La Laguna, 38200, La Laguna, Spain.

R+D Pharma Group (GI-1645); Strategic Grouping in Materials (AEMAT)Department of Pharmacology, Pharmacy and Pharmaceutical TechnologyFaculty of Pharmacy, Universidade de Santiago de Compostela-Campus Vida, 15782, Santiago de Compostela, Spain.

出版信息

Drug Deliv Transl Res. 2021 Apr;11(2):598-607. doi: 10.1007/s13346-021-00926-5. Epub 2021 Feb 24.

Abstract

Gene therapy has emerged as a tool for the treatment of systemic metabolic disorders as osteoporosis (OP). However, the design of a suitable vehicle able to efficiently load and release the genetic material on the target cells is still a challenge. Moreover, the internalization pathway of nanosystems has been described to be dependent on their surface characteristics and the cell type evaluated. In this study, we aim at obtaining PEGylated lipid-PLGA nanoparticles (NPs) with variable surface charge able to incorporate GapmeRs (single-strand antisense oligonucleotides) for OP treatment. Nanoparticles showing negative, positive, and neutral surface charge were obtained by modulating the lipid composition. All formulations showed a remarkably low polydispersity index with adequate size. NPs were loaded with GapmeRs showing a high encapsulation efficiency and a surface charge-independent oligonucleotide loading. All the formulations were adequately internalized by MSCs. Future experiments will be devoted to use the developed formulations to clarify if the intracellular distribution of hybrid NPs on mesenchymal stem cells (MSCs) is dependent on surface charge. This portfolio of NPs will serve as a tool to analyze the effect of NP surface charge on gene therapy efficiency.

摘要

基因治疗已成为治疗系统性代谢紊乱(如骨质疏松症)的一种手段。然而,设计一种合适的载体,使其能够有效地将遗传物质装载并释放到靶细胞中仍然是一个挑战。此外,纳米系统的内化途径已被描述为依赖于其表面特性和所评估的细胞类型。在本研究中,我们旨在获得具有可变表面电荷的 PEGylated 脂质-PLGA 纳米颗粒(NPs),以用于治疗 OP。通过调节脂质组成,获得了具有负、正和中性表面电荷的纳米颗粒。所有制剂的多分散指数均较低,且粒径适中。NPs 被 GapmeRs 负载,具有较高的包封效率和与表面电荷无关的寡核苷酸负载。所有制剂均能被 MSC 有效内化。未来的实验将致力于使用所开发的制剂来阐明混合纳米颗粒在间充质干细胞(MSCs)中的细胞内分布是否依赖于表面电荷。该纳米颗粒组合将作为一种工具,用于分析 NP 表面电荷对基因治疗效率的影响。

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