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Microencapsulation of ergosterol and Agaricus bisporus L. extracts by complex coacervation using whey protein and chitosan: Optimization study using response surface methodology

机译:使用乳清蛋白和壳聚糖的复杂凝聚方法的Ergosterol和Agaricus Bisporus L.的微胶囊:使用响应表面方法的优化研究

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In the present work microencapsulation was applied to an ergosterol enriched extract (EEE) from Agaricus bisporus L. and pure ergosterol (PE) using a complex coacervation process. The process was optimized following two steps: (i) using response surface methodology to optimize the conditions of temperature (T, 55 to 95 degrees C), protein-to-chitosan ratio (P/C, 0.5 to 10.5), maximizing yield (Y-1, %, w/w), efficiency (Y-2, %, w/w) and load (Y-3, %, w/w); and (ii) using the dose-response methodology to optimize the ergosterol content (E) at the optimal conditions achieved in (i). The global optimal conditions for both cases were the same (T of 55 degrees C and a P/C of 0.5), but with maximized responses of Y-1, = 75.02%; Y-2 = 100.00%, Y-3 = 12.78%, and Y-1 = 19.19%; Y-2 = 100.00%, Y-3 = 15.87%, respectively. The effect of increasing ergosterol content led to the reduction of the microencapsulation yield, but with an increase in the ergosterol load and maintenance of the microencapsulation efficiency.
机译:在本工作中,使用复合的凝聚方法将微胶囊施用于来自姬松茸富孢子菌L.和纯代苯甾醇(PE)的Ergoster醇富集的提取物(Eee)。以下步骤优化了该过程:(i)使用响应面方法优化温度(T,55至95℃),蛋白 - 壳聚糖比(P / C,0.5至10.5)的条件,最大化产量( Y-1,%,w / w),效率(y-2,%,w / w)和载荷(y-3,%,w / w); (ii)使用剂量响应方法,以优化(I)所达到的最佳条件下的Ergoster醇含量(e)。两种情况的全局最佳条件相同(55摄氏度,P / C为0.5),但随着Y-1的最大反应,= 75.02%; Y-2 = 100.00%,Y-3 = 12.78%,y-1 = 19.19%; Y-2 = 100.00%,y-3分别= 15.87%。增加Ergosterol含量的效果导致微胶囊产量的降低,但随着Ergosterol载荷的增加和微胶囊效率的维护。

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