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果胶-二氧化硅微胶囊作为双响应载体提高了井冈霉素的稳定性和抗菌效力。

Pectin-conjugated silica microcapsules as dual-responsive carriers for increasing the stability and antimicrobial efficacy of kasugamycin.

机构信息

College of Plant Protection, China Agricultural University, Beijing, China.

College of Plant Protection, China Agricultural University, Beijing, China.

出版信息

Carbohydr Polym. 2017 Sep 15;172:322-331. doi: 10.1016/j.carbpol.2017.05.050. Epub 2017 May 21.

Abstract

Kasugamycin is an aminoglycoside antibiotic originally isolated from Streptomyces kasugaensis, which has been widely used for the management of plant diseases. However, photo-thermal instability and low efficiency limit its application. Therefore, it is an urgent task to prevent unwanted loss of kasugamycin and ensure maximum bioactivity at target site. In this work, a novel formulation of kasugamycin that responds to different biological stimuli produced by pests was prepared using silica microcapsules crosslinked with pectin via special disulfide bonds. The results demonstrated that the silica-SS-pectin microcapsules had a high loading efficiency (20% w/w) and could effectively enhance the thermal and light stability of kasugamycin. The microcapsules displayed excellent pectinase and glutathione dual-responsive properties and the release kinetics investigated by Riger-Peppas model suggested combination of various release mechanisms. Compared with kasugamycin wettable powder, the microcapsules possessed sustained and improved antimicrobial efficacy against Erwinia carotovora. Thus, the dual-responsive microcapsules potentially have agricultural application as a controlled release system.

摘要

井冈霉素是一种氨基糖苷类抗生素,最初从吸水链霉菌中分离得到,已广泛用于植物病害的防治。然而,光热不稳定性和低效率限制了其应用。因此,防止井冈霉素的不必要损失并确保在靶标部位具有最大的生物活性是当务之急。在这项工作中,使用通过特殊二硫键交联的果胶交联的二氧化硅微胶囊制备了一种对害虫产生的不同生物刺激物有响应的井冈霉素新型制剂。结果表明,硅石-SS-果胶微胶囊具有较高的负载效率(20%w/w),并且可以有效地增强井冈霉素的热稳定性和光稳定性。微胶囊表现出优异的果胶酶和谷胱甘肽双重响应特性,通过 Riger-Peppas 模型研究的释放动力学表明存在各种释放机制的结合。与井冈霉素可湿性粉剂相比,微胶囊对胡萝卜软腐欧文氏菌具有持续和改善的抗菌功效。因此,这种双重响应微胶囊有可能作为一种控释系统在农业中应用。

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