首页> 外文期刊>Carbohydrate Polymers: Scientific and Technological Aspects of Industrially Important Polysaccharides >Spray-drying microencapsulation of Trichoderma harzianum conidias in carbohydrate polymers matrices
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Spray-drying microencapsulation of Trichoderma harzianum conidias in carbohydrate polymers matrices

机译:喷雾干燥微囊化哈茨木霉分生孢子在碳水化合物聚合物基质中

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摘要

Microencapsulation of biological control agents in biopolymer matrices by spray-drying is a valuable alternative to produce formulations with extended shelf-life. In this work, Trichoderma harzianum conidia were microencapsulated in: maltodextrin DE10 (MD10), maltodextrin DE20 (MD20), gum Arabic (GA), and a 1:1 weight blend of MD10-GA. The effect of spray-drying inlet and outlet air temperatures, and the activation energy (E_a) of the biopolymers on the survival of T. harzianum conidia was evaluated. The highest conidia survival after spray-drying (86%) and after 8 weeks of storage at 4 °C (40%), were obtained with the MD10-GA biopolymer matrix (with the highest E_a =31.6kJ mol~(-1)). Such survivals were 11 and 330-fold times higher than those of non-encapsulated conidia, respectively. The evolution of reactive oxygen species (ROS), as a measure of oxidative stress, during storage at 29 °C was assessed. An inverse relationship was found between the conidia survival and ROS concentration during storage.
机译:通过喷雾干燥将生物控制剂微囊化在生物聚合物基质中是生产具有延长保存期限的制剂的有价值的选择。在这项工作中,哈茨木霉分生孢子被微囊化在:麦芽糖糊精DE10(MD10),麦芽糖糊精DE20(MD20),阿拉伯树胶(GA)和1:1重量比的MD10-GA混合物中。评估了喷雾干燥的入口和出口空气温度以及生物聚合物的活化能(E_a)对哈茨木霉分生孢子存活的影响。 MD10-GA生物聚合物基质(E_a = 31.6kJ mol〜(-1)最高)在喷雾干燥后(86%)和在4°C下储存8周后的最高分生孢子存活率。 )。这样的存活率分别比未包囊的分生孢子高11倍和330倍。评估了在29°C的存储过程中作为氧化应激量度的活性氧(ROS)的释放。发现分生孢子存活率与储存过程中的ROS浓度成反比关系。

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