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