一种从静电纺丝丝素纳米纤维模板制备溶菌酶负载介孔硅纳米管的简便策略。
A Facile Strategy for Fabrication Lysozyme-Loaded Mesoporous Silica Nanotubes from Electrospun Silk Fibroin Nanofiber Templates.
机构信息
College of Materials Science and Engineering, Taiyuan University of Technology, Taiyuan 030024, China.
BOE Photoelectricity Technology Co., Ltd., Chengdu 611731, China.
出版信息
Molecules. 2021 Feb 18;26(4):1073. doi: 10.3390/molecules26041073.
This paper presents a facile and low-cost strategy for fabrication lysozyme-loaded mesoporous silica nanotubes (MSNTs) by using silk fibroin (SF) nanofiber templates. The "top-down method" was adopted to dissolve degummed silk in CaCl/ formic acid (FA) solvent, and the solution containing SF nanofibrils was used for electrospinning to prepare SF nanofiber templates. As SF contains a large number of -OH, -NH and -COOH groups, the silica layer could be easily formed on its surface by the Söber sol-gel method without adding any surfactant or coupling agent. After calcination, the MSNTs were obtained with inner diameters about 200 nm, the wall thickness ranges from 37 ± 2 nm to 66 ± 3 nm and the Brunauer-Emmett-Teller (BET) specific surface area was up to 200.48 m/g, the pore volume was 1.109 cm/g. By loading lysozyme, the MSNTs exhibited relatively high drug encapsulation efficiency up to 31.82% and an excellent long-term sustained release in 360 h (15 days). These results suggest that the MSNTs with the hierarchical structure of mesoporous and macroporous will be a promising carrier for applications in biomacromolecular drug delivery systems.
本文提出了一种简便、低成本的策略,通过使用丝素蛋白(SF)纳米纤维模板来制备溶菌酶负载的介孔硅纳米管(MSNTs)。采用“自上而下法”将脱胶丝溶解在 CaCl/甲酸(FA)溶剂中,含有 SF 纳米原纤维的溶液用于静电纺丝制备 SF 纳米纤维模板。由于 SF 中含有大量的-OH、-NH 和-COOH 基团,因此可以通过 Söber 溶胶-凝胶法在其表面上轻松形成硅层,而无需添加任何表面活性剂或偶联剂。煅烧后,得到内径约为 200nm、壁厚为 37±2nm 至 66±3nm 的 MSNTs,BET 比表面积高达 200.48m/g,孔体积为 1.109cm/g。通过负载溶菌酶,MSNTs 表现出相对较高的药物包封效率,高达 31.82%,并在 360h(15 天)内具有优异的长期持续释放性能。这些结果表明,具有介孔和大孔分级结构的 MSNTs 将成为生物大分子药物传递系统应用的有前途的载体。