Vitamin-B12-conjugated PLGA-PEG nanoparticles incorporating miR-532-3p induce mitochondrial damage by targeting apoptosis repressor with caspase recruitment domain (ARC) on CD320-overexpressed gastric cancer

细胞凋亡 细胞色素c 化学 线粒体 线粒体通透性转换孔 细胞生物学 癌细胞 分子生物学 程序性细胞死亡 生物 癌症 生物化学 遗传学
作者
Zhian Chen,Yanrui Liang,Xiaoli Feng,Liang Yu,Guodong Shen,Huilin Huang,Zhaoyu Chen,Jiang Yu,Hao Liu,Lin Tian,Hao Chen,Dong Wu,Guoxin Li,Bingxia Zhao,Weihong Guo,Yanfeng Hu
出处
期刊:Materials Science and Engineering: C [Elsevier BV]
卷期号:120: 111722-111722 被引量:31
标识
DOI:10.1016/j.msec.2020.111722
摘要

Among various methods, the use of targeting nucleic acid therapy is a promising method for inhibiting gastric cancer (GC) cells' rapid growth and metastasis abilities. In this study, vitamin B12-labeled poly (d,l-lactide-co-glycolide) and polyethylene glycol nanoparticles (PLGA-PEG-VB12 NPs) were developed for microRNAs-532-3p mimics incorporating as targeting gene delivery systems ([email protected] NPs) to fight against transcobalamin II (CD320)-overexpressed GC cells' progression. The PLGA-PEG-VB12 NPs with appropriate particle sizes and good bio-compatibility could be selectively delivered into CD320-overexpressed GC cells, and significantly decrease the expression of apoptosis repressor with caspase recruitment domain (ARC). Following that, more pro-apoptotic protein (Bax) flowed from cytoplasm into mitochondria to form Bax oligomerization, thus induced mitochondrial damage, including mitochondrial membrane potentials (MMPs) loss and excessive production of mitochondrial reactive oxygen species (mitoROS). Since that, mitochondrial permeability transition pore (mPTP) was opened, followed by induced more cytochrome c (Cyto C) releasing from mitochondria into cytosol, and finally activated caspase-depended cell apoptosis pathway. Therefore, our designed [email protected] NPs showed enhanced GC targeting ability, and could induce apoptosis through activating ARC/Bax/mitochondria-mediated apoptosis signaling pathway, finally remarkably suppressed proliferation of GC cells both in vitro and in vivo, which presented a promising treatment for GC.

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