Elçin Y M
Ankara University, Science Faculty, Chemistry Department, Tandoğan, Turkey.
J Microencapsul. 1995 Sep-Oct;12(5):515-23. doi: 10.3109/02652049509006782.
Bacillus thuringiensis var. israelensis (B.t.i.) containing alginate microcapsules were prepared in order to maintain durable formulations which could resist several effects causing reduced efficiency during applications. B.t.i. spores were harvested through NYSM agar plates and encapsulated in Ca-alginate (0.5-2.0% w/v) gels without any significant loss of sporal or larvicidal activity. The effect of acidic pH on the larvicidal toxin was tested using Culex sp. larvae in the laboratory. The alginate microcapsules pretreated with saturated KH2PO4 solution gave larvicidal activity after 24-48 h, by bioassay. Suspension and encapsulated forms of the pathogenic bacterium were exposed to pH variations (3.0-10.0), UV light and high temperature (50 degrees C). Durability to Pb++, Cu++, Fe++ compounds and phenol was also examined. As the alginate content increased, stability of B.t.i. drastically increased against the tested effects, but to obtain useful releasing microcapsules, 1.0-1.5% w/v alginate concentrations were found to be optimum.
制备了含有藻酸盐微胶囊的苏云金芽孢杆菌以色列变种(B.t.i.),以维持持久的制剂,使其能够抵抗在应用过程中导致效率降低的多种因素。通过NYSM琼脂平板收获B.t.i.孢子,并将其封装在藻酸钙(0.5 - 2.0% w/v)凝胶中,孢子或杀幼虫活性没有任何显著损失。在实验室中使用库蚊幼虫测试了酸性pH对杀幼虫毒素的影响。经饱和KH2PO4溶液预处理的藻酸盐微胶囊通过生物测定在24 - 48小时后具有杀幼虫活性。将致病细菌的悬浮液和封装形式暴露于pH变化(3.0 - 10.0)、紫外线和高温(50摄氏度)下。还检测了对Pb++、Cu++、Fe++化合物和苯酚的耐受性。随着藻酸盐含量的增加,B.t.i.对测试因素的稳定性急剧增加,但为了获得有用的缓释微胶囊,发现1.0 - 1.5% w/v的藻酸盐浓度是最佳的。