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以纳米纤维素为模板,制备富含粗糙-羟基的中空硅介孔纳米球(R-nCHMSNs)用于药物输送。

Nanocellulose as template to prepare rough-hydroxy rich hollow silicon mesoporous nanospheres (R-nCHMSNs) for drug delivery.

机构信息

College of Marine Science and Biological Engineering, Qingdao University of Science and Technology, Qingdao 266042, China.

College of Chemical Engineering, Qingdao University of Science and Technology, Qingdao 266042, China.

出版信息

Int J Biol Macromol. 2021 Jun 1;180:432-438. doi: 10.1016/j.ijbiomac.2021.03.031. Epub 2021 Mar 8.

Abstract

Drug-delivery technology is an effective way to promote drug absorption and efficacy. Mesoporous hollow silica material and small-molecule drug ibuprofen were used as a carrier model and as model drug, respectively. By quantum chemical calculation (density functional theory and frontier orbital theory), it was found that the content of geminal silanols on the material surface played a decisive role in the release of the different drugs. The rough hollow materials are easily adsorbed and have a large loading capacity, and so we fabricated a mesoporous hollow silica material (R-nCHMSNs) with a rough surface and rich geminal silanols by using hydroxyl-rich nanocellulose as a template. The content and types of hydroxyl groups on the material surface were studied by Si NMR. The loading and delivery of ibuprofen and lysozyme were studied in detail. Materials with rich geminal silanols exhibited excellent delivery properties for different drugs, which shows great potential and research value for drug delivery.

摘要

药物传递技术是促进药物吸收和疗效的有效方法。介孔中空硅材料和小分子药物布洛芬分别被用作载体模型和模型药物。通过量子化学计算(密度泛函理论和前沿轨道理论),发现材料表面偕二硅醇的含量对不同药物的释放起着决定性作用。粗糙的中空材料容易被吸附且具有较大的负载能力,因此我们使用富含羟基的纳米纤维素作为模板,制备了具有粗糙表面和丰富偕二硅醇的介孔中空硅材料(R-nCHMSNs)。通过 Si NMR 研究了材料表面羟基的含量和类型。详细研究了布洛芬和溶菌酶的负载和递送。具有丰富偕二硅醇的材料对不同药物表现出优异的递送性能,这表明其在药物传递方面具有巨大的潜力和研究价值。

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