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Preparation and Characterization of Instant Casein Phosphopeptide by Supercritical Fluid Assisted Atomization

机译:超临界流体辅助雾化制备与表征瞬间酪蛋白磷肽

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摘要

Casein phosphopeptide (CPP) has been widely used as micronutrient supplementation for certain populations. However, its solubility performance is far from satisfying. In this work, instant CPP powders with micropore structures were fabricated by supercritical fluid-assisted atomization (SAA) using supercritical CO2 fluid (SC-CO2) as an atomizing agent. The effects of the processing parameters (temperature, time, and pressure) on SC-CO2 absorption rate and dissolution rate were systematically evaluated and studied. The viscosity of the CPP solution increased with increased pressure of SC-CO2 as pressure increased its solubility. The processing conditions are optimized as follows: 40 °C, 40 min, and 8.27 MPa, with an SC-CO2 absorption rate of about 8 wt.%. The dissolution time of the SAA-CPP powders was significantly decreased from 1800 s to 54 s at room temperature, due to the micropore structures and almost 10 times increase in the specific surface area of SAA-CPP. The bioactivities of the instant SAA-CPP, especially the calcium-binding capacity, were also evaluated and showed no observable difference. Among the four CPPs prepared in different ways in this work, SAA-CPP had better dissolution performance. The results show that SAA technology is a promising way to prepare instant polypeptide powders.
机译:酪蛋白磷肽(CPP)已被广泛用作某些群体的微量营养素补充。然而,其溶解性性能远非令人满意。在这项工作中,通过使用超临界CO 2流体(SC-CO2)作为雾化剂,通过超临界流体辅助雾化(SAA)制造具有微孔结构的瞬时CPP粉末。系统评价和研究了加工参数(温度,时间和压力)对SC-CO2吸收率和溶出速率的影响。由于压力增加其溶解度,CPP溶液的粘度随着SC-CO2的压力增加而增加。加工条件优化如下:40℃,40分钟和8.27MPa,SC-CO2吸收率约为8重量%。%。由于微孔结构,SAA-CPP粉末的溶解时间在室温下从180秒到54秒显着降低,并且SAA-CPP的比表面积增加几乎10倍。还评估了瞬间SAA-CPP,尤其是钙结合能力的生物活性,并且没有显示出可观察的差异。在这项工作中以不同方式编制的四个CPP中,SAA-CPP具有更好的溶解性能。结果表明,Saa技术是制备瞬发多肽粉末的有希望的方法。

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