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Solid-Phase Synthesis of Cellulose Acetate Butyrate as Microsphere Wall Materials for Sustained Release of Emamectin Benzoate

机译:固相合成乙酸丁酸纤维素作为微球壁材料的缓释阿米菌素苯甲酸酯的释放

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摘要

Emamectin benzoate (EB), a widely used pesticide, is prone to decomposition by ultraviolet light and suffers from the corresponding loss of efficacy. The timed release of EB based on microspheres is one of the effective methods to solve this issue. As a non-toxic cellulose ester, cellulose acetate butyrate (CAB) is regarded as one of the best wall-forming materials for microcapsules with a good controlled release performance. Herein, two methods—mechanical activation (MA) technology and a conventional liquid phase (LP) method—were employed to synthesize different CABs, namely CAB-MA and CAB-LP, respectively. The molecular structure, rheological property, and thermal stability of these CABs were investigated. The two CABs were used to prepare microspheres for the loading and release of EB via an o/w (oil-in-water) solvent evaporation method. Moreover, the performances such as drug loading, drug entrapment, and anti-photolysis of the drug for these microspheres were studied. The results showed that both CABs were available as wall materials for loading and releasing EB. Compared with CAB-LP, CAB-MA presented a lower molecular weight and a narrower molecular weight distribution. Moreover, the MA method endowed the CAB with more ester substituent groups and less crystalline structure in comparison to the LP method, which had benefits including pelletizing and drug loading.
机译:苯甲酸阿米菌素(EB)是一种广泛使用的农药,很容易被紫外线分解,并相应地丧失功效。基于微球的EB的定时释放是解决此问题的有效方法之一。作为一种无毒的纤维素酯,醋酸丁酸纤维素(CAB)被认为是具有良好控释性能的微胶囊最佳成壁材料之一。本文中,采用了两种方法-机械活化(MA)技术和常规液相(LP)方法-分别合成了不同的CAB,即CAB-MA和CAB-LP。研究了这些CAB的分子结构,流变性质和热稳定性。这两种CAB用于通过o / w(水包油)溶剂蒸发法制备用于EB负载和释放的微球。此外,还研究了这些微球的载药量,药物截留和药物的抗光解性能。结果表明,两种CAB均可作为壁材料用于加载和释放EB。与CAB-LP相比,CAB-MA具有较低的分子量和较窄的分子量分布。而且,与LP方法相比,MA方法赋予CAB更多的酯取代基基团和更少的晶体结构,其具有包括造粒和载药量的优点。

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