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使用介孔硅颗粒将抗蠕虫蛋白Cry5B递送至线虫并实现保护

Protection and Delivery of Anthelmintic Protein Cry5B to Nematodes Using Mesoporous Silicon Particles.

作者信息

Wu Chia-Chen, Hu Yan, Miller Melanie, Aroian Raffi V, Sailor Michael J

机构信息

†Materials Science and Engineering, ‡Section of Cell and Development Biology, and §Department of Chemistry and Biochemistry, University of California, San Diego, La Jolla, California 92093, United States.

出版信息

ACS Nano. 2015 Jun 23;9(6):6158-67. doi: 10.1021/acsnano.5b01426. Epub 2015 May 20.

Abstract

The ability of nano- and microparticles of partially oxidized mesoporous silicon (pSi) to sequester, protect, and deliver the anthelmintic pore-forming protein Cry5B to nematodes is assessed in vitro and in vivo. Thermally oxidized pSi particles are stable under gastric conditions and show relatively low toxicity to nematodes. Fluorescence images of rhodamine-labeled pSi particles within the nematodes Caenorhabditis elegans and Ancylostoma ceylanicum show that ingestion is dependent on particle size: particles of a 0.4 ± 0.2 μm size are noticeably ingested by both species within 2 h of introduction in vitro, whereas 5 ± 2 μm particles are excluded from C. elegans but enter the pharynx region of A. ceylanicum after 24 h. The anthelmintic protein Cry5B, a pore-forming crystal (Cry) protein derived from Bacillus thuringiensis, is incorporated into the pSi particles by aqueous infiltration. Feeding of Cry5B-loaded pSi particles to C. elegans leads to significant intoxication of the nematode. Protein-loaded particles of size 0.4 μm display the highest level of in vitro toxicity toward C. elegans on a drug-mass basis. The porous nanostructure protects Cry5B from hydrolytic and enzymatic (pepsin) degradation in simulated gastric fluid (pH 1.2) for time periods up to 2 h. In vivo experiments with hookworm-infected hamsters show no significant reduction in worm burden with the Cry5B-loaded particles, which is attributed to slow release of the protein from the particles and/or short residence time of the particles in the duodenum of the animal.

摘要

在体外和体内评估了部分氧化的介孔硅(pSi)纳米颗粒和微米颗粒隔离、保护并向线虫递送驱虫成孔蛋白Cry5B的能力。热氧化的pSi颗粒在胃部条件下稳定,对线虫显示出相对较低的毒性。秀丽隐杆线虫和锡兰钩虫体内罗丹明标记的pSi颗粒的荧光图像表明,摄取情况取决于颗粒大小:在体外引入后2小时内,0.4±0.2μm大小的颗粒被这两种线虫显著摄取,而5±2μm的颗粒被秀丽隐杆线虫排除在外,但在24小时后进入锡兰钩虫的咽部区域。驱虫蛋白Cry5B是一种源自苏云金芽孢杆菌的成孔晶体(Cry)蛋白,通过水渗透法掺入pSi颗粒中。将负载Cry5B的pSi颗粒喂食给秀丽隐杆线虫会导致线虫显著中毒。基于药物质量,0.4μm大小的负载蛋白颗粒对秀丽隐杆线虫显示出最高水平的体外毒性。多孔纳米结构可在长达2小时的时间内保护Cry5B免受模拟胃液(pH 1.2)中的水解和酶(胃蛋白酶)降解。对感染钩虫的仓鼠进行的体内实验表明,负载Cry5B的颗粒对线虫负担没有显著降低,这归因于蛋白从颗粒中的缓慢释放和/或颗粒在动物十二指肠中的停留时间较短。

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