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Microencapsulation of Microbial Transglutaminase by Ultrasonic Spray-Freeze Drying

机译:超声波喷涂干燥微生物转谷氨酰胺酶微胶囊

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摘要

Microencapsulation of partially purified microbial transglutaminase (mTG) was investigated using ultrasonic spray-freeze drying (USFD), and the optimum coating materials (gum arabic, maltodextrin, inulin) ratio and the process parameters (flow rate and nozzle frequency) were determined using a D-optimal combined design. Also, the microencapsulated samples by USFD were compared with microencapsulated samples by conventional freeze drying (CFD) and conventional spray drying (CSD) in terms of microencapsulation efficiency, enzyme stability at extreme pH and high temperature conditions, and the presence of metal ions, physical (moisture content, particle morphology, particle and pore size, surface area, pore volume distribution, density and flow properties, caking degree, color), and reconstitution (wettability and solubility) properties. As a result, the optimum coating materials composition was determined as 60% gum arabic and 40% inulin, and process conditions were found to be flow rate of 6.83 ml/min and nozzle frequency of 48 kHz applying desirability function method. Microcapsules with smaller particle size, pore volume, and porosity, with lower moisture content and good reconstitution characteristics, were obtained by USFD with a maximum microencapsulation efficiency of similar to 97%.
机译:采用超声波喷雾 - 冷冻干燥(USFD)研究了部分纯化的微生物转谷氨酰胺酶(MTG)的微胶囊,并使用A测定最佳涂料(牙龈阿拉伯语,麦芽糖蛋白,菊粉)比和工艺参数(流量和喷嘴频率)。 D-最佳组合设计。此外,通过通过常规冷冻干燥(CFD)和常规喷雾干燥(CSD)在微胶囊效率,极端pH和高温条件下的酶稳定性以及金属离子的存在,物理(水分含量,颗粒形态,颗粒和孔径,表面积,孔体积分布,密度和流动性,结块,颜色),以及重构(润湿性和溶解度)性能。结果,最佳涂料组合物测定为60%的阿拉伯语和40%菊粉,并发现工艺条件为6.83ml / min,喷嘴频率为48kHz的施加期望函数方法。通过USFD获得具有较小粒径,孔隙体积和孔隙率,具有较低水分含量和良好重构特性的微胶囊,最大的微胶囊效率与97%相似。

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