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首页> 外文期刊>Carbohydrate Polymers: Scientific and Technological Aspects of Industrially Important Polysaccharides >Recrystallization of waxy maize starch during manufacturing of starch microspheres for drug delivery:Optimization by experimental design
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Recrystallization of waxy maize starch during manufacturing of starch microspheres for drug delivery:Optimization by experimental design

机译:蜡质玉米淀粉在制备用于药物递送的淀粉微球过程中的重结晶:通过实验设计进行优化

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摘要

Gelatinized starch/water dispersions with a water content of 70% w/w were studied in order to evaluate the influence of the incubation time at two fixed temperatures(6 and 37 deg C)on the recrystallization behavior.The starch material was produced from waxy maize starch by acid hydrolysis followed by a mechanical treatment,i.e.a high pressure homogenization.Empirical models for the recrystallization of the model starch dispersions were investigated by using a central composite circumscribed(CCC)design in two factors involving 11 trials.The rebuilt crystalline structure was estimated by measuring the melting transition parameters with differential scanning calorimetry(DSC).The designed models for the melting enthalpy,the melting transition temperatures,and the melting interval as the responses were reproducible and predictable and the results were analyzed by using a response surface modeling.Operative conditions for the formation of the most thermally stable crystalline structure with the highest possible crystallinity were determined.It was also concluded that the decisive factor for the crystallinity of the given starch material was a prolonged storage at 6 deg C,while thermal characteristics of the crystallites could be controlled by storage at 37 deg C.An interaction effect was observed between the incubation time at these two experimental temperatures regarding enthalpy values and the melting interval of the samples.
机译:为了研究在两个固定温度(6和37摄氏度)下孵育时间对重结晶行为的影响,研究了含水量为70%w / w的糊化淀粉/水分散体。玉米淀粉经酸水解后进行机械处理(即高压均质化)。采用中心复合外接设计(CCC)设计,在涉及11个试验的两个因素中研究了模型淀粉分散体重结晶的经验模型。通过差示扫描量热法(DSC)测量熔融转变参数进行估算。所设计的熔融焓,熔融转变温度和熔融间隔模型是可重复且可预测的,并使用响应表面建模对结果进行了分析形成最热稳定的晶体结构的操作条件得出的结论是,给定淀粉原料结晶度的决定性因素是在6摄氏度下可长时间储存​​,而微晶的热特性可通过在37摄氏度下储存来控制。在这两个实验温度下的保温时间之间,关于焓值和样品的熔化时间间隔,观察到了影响。

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