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利用新型细胞穿透肽-siRNA缀合物负载的纳米气泡和超声实现高效的siRNA递送

Efficient siRNA Delivery Using Novel Cell-Penetrating Peptide-siRNA Conjugate-Loaded Nanobubbles and Ultrasound.

作者信息

Xie Xiangyang, Lin Wen, Li Mingyuan, Yang Yang, Deng Jianping, Liu Hui, Chen Ying, Fu Xudong, Liu Hong, Yang Yanfang

机构信息

Department of Pharmacy, Wuhan General Hospital of Guangzhou Military Command, Wuhan, China.

Department of Clinical Laboratory, Huangshi Love & Health Hospital of Hubei Province, Huangshi, China.

出版信息

Ultrasound Med Biol. 2016 Jun;42(6):1362-74. doi: 10.1016/j.ultrasmedbio.2016.01.017.

Abstract

Because of the absence of tolerable and effective carriers for in vivo delivery, the applications of small interfering RNA (siRNA) in the clinic for therapeutic purposes have been limited. In this study, development of a novel siRNA delivery system based on ultrasound-sensitive nanobubbles (NBs, nano-sized echogenic liposomes) and cell-permeable peptides (CPPs) is described. A CPP-siRNA conjugate was entrapped in an NB, (CPP-siRNA)-NB, and the penetration of CPP-siRNA was temporally masked; local ultrasound stimulation triggered the release of CPP-siRNA from the NBs and activated its penetration. Subsequent research revealed that the (CPP-siRNA)-NBs had a mean particle size of 201 ± 2.05 nm and a siRNA entrapment efficiency >85%. In vitro release results indicated that >90% of the encapsulated CPP-siRNA was released from NBs in the presence of ultrasound, whereas <1.5% (30 min) was released in the absence of ultrasound. Cell experiments indicated higher cellular CPP-siRNA uptake of (CPP-siRNA)-NBs with ultrasound among the various formulations in human breast adenocarcinoma cells (HT-1080). Additionally, after systemic administration in mice, (CPP-siRNA)-NBs accumulated in the tumor, augmented c-myc silencing and delayed tumor progression. In conclusion, the application of (CPP-siRNA)-NBs with ultrasound may constitute an approach to selective targeted delivery of siRNA.

摘要

由于缺乏适用于体内递送的可耐受且有效的载体,小干扰RNA(siRNA)在临床治疗中的应用受到了限制。在本研究中,描述了一种基于超声敏感纳米气泡(NBs,纳米级回声脂质体)和细胞穿透肽(CPPs)的新型siRNA递送系统的开发。一种CPP-siRNA偶联物被包裹在NBs中,即(CPP-siRNA)-NBs,CPP-siRNA的穿透在时间上被掩盖;局部超声刺激触发了CPP-siRNA从NBs中的释放并激活了其穿透。后续研究表明,(CPP-siRNA)-NBs的平均粒径为201±2.05 nm,siRNA包封效率>85%。体外释放结果表明,在有超声的情况下,>90%封装的CPP-siRNA从NBs中释放出来,而在没有超声的情况下,<1.5%(30分钟)被释放。细胞实验表明,在人乳腺腺癌细胞(HT-1080)的各种制剂中,经超声处理的(CPP-siRNA)-NBs对细胞CPP-siRNA的摄取更高。此外,在小鼠体内全身给药后,(CPP-siRNA)-NBs在肿瘤中积累,增强了c-myc基因沉默并延缓了肿瘤进展。总之,超声介导的(CPP-siRNA)-NBs的应用可能构成一种siRNA选择性靶向递送的方法。

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