Kim In Gyu, Jung Won Ho, You Gayeon, Lee Hyukjin, Shin Yoo Jin, Lim Sun Woo, Chung Byung Ha, Mok Hyejung
Department of Bioscience and Biotechnology, Konkuk University, Seoul, 05029, Republic of Korea.
College of Pharmacy, Graduate School of Pharmaceutical Sciences, Ewha Womans University, Seoul, 03760, Republic of Korea.
Macromol Biosci. 2023 Apr;23(4):e2200423. doi: 10.1002/mabi.202200423. Epub 2023 Feb 10.
In this study, a novel polyhistidine-incorporated lipid nanoparticle (pHis/LNP) is developed for the delivery of therapeutic globotriaosylceramide (Gb3) synthase siRNAs using a microfluidic device with pHis as a biocompatible method of endosome escape. To inhibit the expression of Gb3 synthase, six siRNAs against Gb3 synthase are designed and an optimal siRNA sequence is selected. Selected Gb3 synthase siRNA is incorporated into pHis/LNP to prepare a spherical siRNA pHis/LNP with a size of 62.5 ± 1.9 nm and surface charge of -13.3 ± 4.2 mV. The pHis/LNP successfully protects siRNAs from degradation in 50% serum condition for 72 h. Prepared pHis/LNP exhibits superior stability for 20 days and excellent biocompatibility for A549 cells. After treatment with fluorescence-labeled LNPs, dotted fluorescent signals are co-localized with Lysotracker in cells with LNPs, whereas strong and diffused fluorescence intensity is observed in cells with pHis/LNPs probably due to successful endosomal escape. The extent of Gb3 synthase gene silencing by siRNA pHis/LNP is greatly improved (6.0-fold) compared to that by siRNA/LNP. Taken together, considering that the fabricated siRNA pHis/LNP exhibits excellent biocompatibility and superior gene silencing activity over conventional LNP, these particles can be utilized for the delivery of a wide range of therapeutic siRNAs.
在本研究中,开发了一种新型的聚组氨酸掺入脂质纳米颗粒(pHis/LNP),用于使用微流控装置递送治疗性球三糖神经酰胺(Gb3)合酶小干扰RNA(siRNA),其中pHis作为一种生物相容性的内体逃逸方法。为了抑制Gb3合酶的表达,设计了六种针对Gb3合酶的siRNA,并选择了最佳的siRNA序列。将选定的Gb3合酶siRNA掺入pHis/LNP中,制备出尺寸为62.5±1.9nm、表面电荷为-13.3±4.2mV的球形siRNA pHis/LNP。pHis/LNP在50%血清条件下能成功保护siRNA不被降解达72小时。制备的pHis/LNP在20天内表现出优异的稳定性,对A549细胞具有良好的生物相容性。用荧光标记的LNP处理后,点状荧光信号在含有LNP的细胞中与溶酶体追踪染料共定位,而在含有pHis/LNP的细胞中观察到强烈且弥散的荧光强度,这可能是由于成功的内体逃逸。与siRNA/LNP相比,siRNA pHis/LNP对Gb3合酶基因的沉默程度大大提高(6.0倍)。综上所述,鉴于制备的siRNA pHis/LNP表现出优异的生物相容性以及优于传统LNP的基因沉默活性,这些颗粒可用于递送多种治疗性siRNA。