Nuclear Agriculture and Biotechnology Division, Bhabha Atomic Research Centre, Trombay, Mumbai 400085, India.
Enzyme Microb Technol. 2013 Dec 10;53(6-7):398-405. doi: 10.1016/j.enzmictec.2013.08.006. Epub 2013 Sep 23.
Bio-polymeric mosquitocidal formulations were developed for the control release of Bacillus sphaericus ISPC-8 by the immobilization of its spore-crystal complex onto the macroporous polymeric matrices. The biodegradable formulations were synthesized at sub-zero temperature using natural polymeric substrates like agarose, alginate, cellulose, non-adsorbent cotton, wooden cork powder and also magnetite nanoparticles. The obtained polymeric matrices were morphologically characterized, which showed 85-90% porosity, uniform pores distribution, high permeability and controlled degradation (19-30%) in 4 weeks depending upon the composition of formulations. Further, the polymeric macroporous formulations were tested for persistence of mosquitocidal activity against Culex quinquefasciatus larvae. Unformulated B. sphaericus ISPC-8 spores retained 54% of larvicidal activity after 7 days, which completely reduced after 35 days of treatment. However, the immobilized B. sphaericus spores in agarose-alginate formulations showed high larvicidal activity on day 7 and retained about 45% activity even after 35 days of treatments. Studies on UV-B and pH dependent inactivation of toxins and spore viability showed that these formulations were significantly protecting the spores as compared to the unformulated spores, which suggest its potential application for the mosquito control program.
生物聚合体杀蚊制剂通过将苏云金芽孢杆菌 ISPC-8 的孢子-晶体复合物固定在大孔聚合物基质上来控制其释放。可生物降解的制剂是在亚零温度下使用琼脂糖、藻酸盐、纤维素、非吸附性棉花、木塞粉末和磁铁矿纳米粒子等天然聚合物基质合成的。所获得的聚合物基质进行了形态学表征,结果表明,根据配方的不同,其具有 85-90%的孔隙率、均匀的孔分布、高渗透性和 4 周内(19-30%)的可控降解。此外,还测试了这些聚合物大孔制剂对库蚊幼虫的杀蚊活性的持久性。未经处理的 B. sphaericus ISPC-8 孢子在 7 天后保留了 54%的杀幼虫活性,而在 35 天的处理后完全减少。然而,在琼脂糖-藻酸盐制剂中固定的 B. sphaericus 孢子在第 7 天表现出很高的杀幼虫活性,即使在 35 天的处理后仍保留约 45%的活性。对毒素和孢子活力的 UV-B 和 pH 依赖性失活的研究表明,与未处理的孢子相比,这些制剂显著保护了孢子,这表明它们在蚊虫控制计划中有潜在的应用。