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基于微流控的阳离子胆固醇脂质 siRNA 递药纳米系统:高效的体外基因沉默及细胞内行为。

Microfluidic-Based Cationic Cholesterol Lipid siRNA Delivery Nanosystem: Highly Efficient In Vitro Gene Silencing and the Intracellular Behavior.

机构信息

School of Pharmacy, Shanghai Jiao Tong University, No. 800, Dongchuan Road, Shanghai 200240, China.

Instrumental Analysis Center, Shanghai Jiao Tong University, No. 800, Dongchuan Road, Shanghai 200240, China.

出版信息

Int J Mol Sci. 2022 Apr 3;23(7):3999. doi: 10.3390/ijms23073999.

Abstract

Safe and efficient delivery of small interfering RNA (siRNA) is essential to gene therapy towards intervention of genetic diseases. Herein, we developed a novel cationic cholesterol lipid derivative (CEL) in which cholesterol hydrophobic skeleton was connected to L-lysine cationic headgroup via a hexanediol linker as the non-viral siRNA delivery carrier. Well-organized CEL/siRNA nanocomplexes (100-200 nm) were prepared by microfluidic-assisted assembly of CEL and siRNA at various N/P ratios. The CEL and CEL/siRNA nanocomplexes have lower cytotoxicity compared with bPEI25k. Delightfully, we disclosed that, in Hela-Luc and H1299-Luc cell lines, the micro-fluidic-based CEL/siRNA nanocomplexes exhibited high siRNA transfection efficiency under both serum-free condition (74-98%) and low-serum circumstances (80-87%), higher than that of lipofectamine 2000. These nanocomplexes also showed high cellular uptake through the caveolae/lipid-raft mediated endocytosis pathway, which may greatly contribute to transfection efficiency. Moreover, the time-dependent (0-12 h) dynamic intracellular imaging demonstrated the efficient delivery to cytoplasm after lysosomal co-localization. The results indicated that the microfluidic-based CEL/siRNA nanosystems possessed good stability, low cytotoxicity, high siRNA delivery efficiency, rapid cellular uptake and caveolae/lipid raft-dependent internalization. Additionally, this study provides a simple approach for preparing and applying a "helper lipid-free" cationic lipid siRNA delivery system as potential nanotherapeutics towards gene silencing treatment of (tumor) diseases.

摘要

安全有效的小干扰 RNA (siRNA) 传递对于基因治疗干预遗传疾病至关重要。本文中,我们开发了一种新型阳离子胆固醇脂质衍生物 (CEL),其中胆固醇疏水性骨架通过己二醇连接子与 L-赖氨酸阳离子头基相连,作为非病毒 siRNA 递药载体。通过微流控辅助组装 CEL 和 siRNA,在不同 N/P 比下制备了有序的 CEL/siRNA 纳米复合物(100-200nm)。与 bPEI25k 相比,CEL 和 CEL/siRNA 纳米复合物的细胞毒性更低。令人高兴的是,我们发现,在 Hela-Luc 和 H1299-Luc 细胞系中,基于微流控的 CEL/siRNA 纳米复合物在无血清条件(74-98%)和低血清条件(80-87%)下均表现出高的 siRNA 转染效率,高于 lipofectamine 2000。这些纳米复合物还通过胞饮作用的 caveolae/脂筏介导内吞途径表现出高的细胞摄取能力,这可能极大地促进转染效率。此外,时间依赖性(0-12h)动态细胞内成像显示,在溶酶体共定位后,能够有效递送到细胞质。结果表明,基于微流控的 CEL/siRNA 纳米系统具有良好的稳定性、低细胞毒性、高 siRNA 递送效率、快速的细胞摄取以及 caveolae/脂筏依赖性内化。此外,该研究提供了一种简单的方法来制备和应用“无辅助脂质”阳离子脂质 siRNA 递药系统,作为用于(肿瘤)疾病基因沉默治疗的潜在纳米疗法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f957/8999516/8589db6ab576/ijms-23-03999-g001.jpg

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