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真菌衍生除草代谢物负载淀粉-壳聚糖-阿拉伯胶-琼脂基生物复合材料:制备、表征、除草活性、释放特性和生物相容性。

Fungal derived herbicidal metabolite loaded starch-chitosan-gum acacia-agar based bio composite: Preparation, characterization, herbicidal activity, release profile and biocompatibility.

机构信息

Center for Applied Research, Saveetha School of Engineering, Saveetha Institute of Medical and Technical Sciences (SIMATS), Chennai 602105, Tamil Nadu, India.

Centre for Bioresource Research and Development, Department of Biotechnology, Sathyabama Institute of Science and Technology, Chennai 600112, Tamil Nadu, India.

出版信息

Int J Biol Macromol. 2024 Feb;259(Pt 1):129264. doi: 10.1016/j.ijbiomac.2024.129264. Epub 2024 Jan 8.

Abstract

Biocomposites based on starch- gum acacia- agar, chitosan- starch- agar, starch- poly vinyl alcohol- agar were synthesized by simple, green route principles and the various characterization techniques like fourier infrared spectroscopy, SEM revealed the highly stable micro dimenstional that specially interacted with functional groups of polymers -herbicidal metabolites. Respective biocomposite was prepared by mixing equal volume of the selected polymer (1;1;1 ratio) with known concentration (100 mg of in distilled water followed by the addition of reconstituted herbicidal metabolites (100 mg or 0.1 g). Though all the biocomposites were capable of inducing herbicidal effect, notable impact was recorded in chitosan- starch- gum acacia treatment. In this case, the necrotic lesions were initiated at the early incubation period (6 h), progressively developing into dark brownish black lesions with 30.0 mm diameter. Release profile of the metabolites from the respective composite was also under in vitro and soil assay. Release profile study under in vitro and soil condition showed the sustained or controlled manner in distilled water and ethyl acetate treatment. No sign of toxic effect on the soil, parameters plant growth, rhizobacteria and peripheral blood cells clearly revealed the best biocompatibility of the presently proposed biocomposite.

摘要

基于淀粉-阿拉伯胶-琼脂、壳聚糖-淀粉-琼脂、淀粉-聚乙烯醇-琼脂的生物复合材料是通过简单、绿色的路线原则合成的,各种特性分析技术,如傅里叶变换红外光谱、SEM 表明高度稳定的微观尺寸,特别是与聚合物的功能基团相互作用 - 除草剂代谢物。相应的生物复合材料是通过混合等量的选定聚合物(1:1:1 比例)与已知浓度(100mg 在蒸馏水中,然后加入再悬浮的除草剂代谢物(100mg 或 0.1g)。虽然所有的生物复合材料都能够诱导除草效果,但在壳聚糖-淀粉-阿拉伯胶处理中记录到了显著的影响。在这种情况下,坏死损伤在早期孵育期(6 小时)开始,逐渐发展成直径为 30.0mm 的深棕色黑色损伤。在体外和土壤分析中,对代谢物从相应复合材料的释放情况进行了研究。在体外和土壤条件下的释放情况研究表明,在蒸馏水和乙酸乙酯处理中以持续或控制的方式释放。对土壤没有毒性作用的迹象,植物生长、根际细菌和外周血细胞等参数清楚地表明了目前提出的生物复合材料的最佳生物相容性。

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