Shah Asima, Ashraf ZanoorUl, Gani Asir, Jhan Faiza, Gani Adil, Sidiq Munazah
Department of Food Science and Technology, University of Kashmir, Srinagar 190006, India.
Foods. 2022 May 20;11(10):1493. doi: 10.3390/foods11101493.
In this study, the nanoencapsulation of catechin into the β-glucan matrix from oats [O-Glu (C)] and barley [B-Glu (C)] was performed using the coupled approach of ultrasonication and wet milling. The nanoencapsulated catechin was characterised by particle size distribution, surface charge, SEM, and FTIR. The particle size was found to be 200 nm and 500 nm while zeta potential was found -27.13 and -24 mV for O-Glu (C) and B-Glu (C), respectively. The encapsulation efficiency of O-Glu (C) and B-Glu (C) was found to be 86.5% and 88.2%. FTIR and SEM revealed successful entrapment of catechin in β-glucan. The encapsulated capsules showed sustainable release during simulated gastrointestinal conditions. Moreover, both O-Glu (C) and B-Glu (C) showed that biological activity such as lipase inhibition activity and antioxidant assay were retained after in vitro digestion. It was concluded that O-Glu (C) and B-Glu (C) can be used as functional ingredients effectively in food as well as in the pharmaceutical field.
在本研究中,采用超声处理和湿磨相结合的方法,将儿茶素纳米包封到燕麦[O-Glu (C)]和大麦[B-Glu (C)]的β-葡聚糖基质中。通过粒度分布、表面电荷、扫描电子显微镜(SEM)和傅里叶变换红外光谱(FTIR)对纳米包封的儿茶素进行了表征。发现O-Glu (C)和B-Glu (C)的粒径分别为200 nm和500 nm,ζ电位分别为-27.13 mV和-24 mV。发现O-Glu (C)和B-Glu (C)的包封效率分别为86.5%和88.2%。FTIR和SEM显示儿茶素成功包封在β-葡聚糖中。包封的胶囊在模拟胃肠道条件下表现出可持续释放。此外,O-Glu (C)和B-Glu (C)均表明,体外消化后仍保留脂肪酶抑制活性和抗氧化测定等生物活性。得出的结论是,O-Glu (C)和B-Glu (C)可有效地用作食品以及制药领域的功能成分。