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首页> 外文期刊>Nanotechnology >Intracellular protein delivery by hollow mesoporous silica capsules with a large surface hole
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Intracellular protein delivery by hollow mesoporous silica capsules with a large surface hole

机译:带有大表面孔的中空介孔二氧化硅胶囊的细胞内蛋白递送

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We prepared cell membrane-permeable hollow mesoporous silica capsules (HMSCs) by a simple new method. CTAB micellar assembly in cholesterol emulsion gave rise to a novel capsular morphology of the HMSC particles. The HMSCs consisted of mesostructured silica walls with a large surface hole (2550nm) and the average particle dimension was 100300nm. They exhibited high surface areas of up to 719.3m ~2g~1 and a mesoporous range of pores of 2.42.7nm. The surface-functionalized HMSCs could also be prepared by a similar co-condensation method using tetraethoxysilane with various organoalkoxysilane precursors in the presence of cholesterol. These organically modified HMSCs could be further modified on demand. For example, a carboxy-functionalized HMSC could be surface-functionalized by a green fluorescent 5-aminofluorescein (AFL) through an amidation reaction to afford a fluorescent AFLHMSC. The hollow capsular morphology of the HMSCs with a large surface hole enabled us to develop very efficient intracellular delivery systems for membrane-impermeable ions, molecules, and various functional proteins. Non-covalent sequestration and delivery of proteins as well as covalent linkage of fluorescent molecules on the silica surface are effective for this system. The highly negatively charged green fluorescent probe mag-fluo-4 could be intracellularly delivered into HeLa cells by HMSC without any difficulty. The HMSCs could also effectively transport large functional proteins such as antibodies into HeLa cells. The efficiency of protein delivery by HMSC seems to be 322-fold higher than that of mesoporous silica nanospheres (MSNs) based on confocal laser scanning microscopy (CLSM) analysis.
机译:我们通过一种简单的新方法制备了可渗透细胞膜的空心中孔二氧化硅胶囊(HMSC)。胆固醇乳液中的CTAB胶束组装产生了HMSC颗粒的新型荚膜形态。 HMSC由具有大表面孔(2550nm)的介孔结构二氧化硅壁组成,平均粒径为100300nm。它们表现出高达719.3m〜2g〜1的高表面积和2.42.7nm的中孔范围。表面官能化的HMSC也可以通过类似的共缩合方法制备,该方法使用四乙氧基硅烷与各种有机烷氧基硅烷前体在胆固醇存在下进行。这些有机修饰的HMSC可以根据需要进行进一步修饰。例如,可以通过酰胺化反应通过绿色荧光的5-氨基荧光素(AFL)对羧基官能化的HMSC进行表面官能化,从而得到荧光AFLHMSC。具有大表面孔的HMSC的空心荚膜形态使我们能够开发非常有效的细胞内递送系统,用于膜不可渗透的离子,分子和各种功能蛋白。蛋白质的非共价螯合和递送以及二氧化硅表面上荧光分子的共价键对于该系统是有效的。高度带负电的绿色荧光探针mag-fluo-4可以通过HMSC毫无困难地细胞内递送到HeLa细胞中。 HMSC还可以有效地将诸如抗体之类的大功能蛋白转运到HeLa细胞中。基于共聚焦激光扫描显微镜(CLSM)分析,HMSC的蛋白质递送效率似乎比中孔二氧化硅纳米球(MSN)高322倍。

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