Park Jae Young, Cho Dong-Hwa, Choi Dan Jung, Moon So Yeon, Park Eun Young, Kim Jong-Yea
Department of Biotechnology, College of Life Sciences and Biotechnology, Korea University, Seoul 02841, Republic of Korea.
Eversummer Laboratory, Daegu Catholic University, Gyeongsan 38430, Republic of Korea.
Carbohydr Polym. 2024 May 15;332:121950. doi: 10.1016/j.carbpol.2024.121950. Epub 2024 Feb 15.
Starch is a biopolymer commonly used for nanoparticle synthesis. Starch nanoparticles (SNPs) have potential as encapsulation agents and Pickering emulsion stabilizers. Here, we prepared SNPs by dry heating under mildly acidic conditions to encapsulate catechin. Catechin (30 mg) and SNPs (50-150 mg) were dispersed in distilled water and freeze-dried to prepare catechin-SNP composites. Isothermal titration calorimetry and Fourier-transform infrared spectroscopy revealed that the binding of catechin to SNP may involve spontaneous hydrogen bonding and hydrophobic interactions. SNPs exhibited encapsulation efficiency for catechin, with 100 % catechin retention when 150 mg of SNP was used to prepare the composites. The catechin-SNP composites had a particle size of 54.2-74.9 nm. X-ray diffraction analysis revealed the formation of small amounts of inclusion complexes in catechin-SNP composites. As the amount of SNPs added for encapsulation increased, the catechin encapsulated in the SNP composites exhibited higher water solubility and UV stability than the pure catechin. The catechin-SNP composite with 150 mg of catechin exhibited the highest contact angle (51.37°) and formed a stable emulsion without notable droplet size changes. Therefore, catechin-SNP composites improved the encapsulation efficiency, water-solubility, stability of catechins, and Pickering emulsion stability.
淀粉是一种常用于纳米颗粒合成的生物聚合物。淀粉纳米颗粒(SNPs)有潜力作为包封剂和Pickering乳液稳定剂。在此,我们通过在温和酸性条件下干热制备SNPs以包封儿茶素。将儿茶素(30毫克)和SNPs(50 - 150毫克)分散于蒸馏水中并冻干以制备儿茶素 - SNP复合材料。等温滴定量热法和傅里叶变换红外光谱表明儿茶素与SNP的结合可能涉及自发氢键和疏水相互作用。SNPs对儿茶素表现出包封效率,当使用150毫克SNP制备复合材料时儿茶素保留率为100%。儿茶素 - SNP复合材料的粒径为54.2 - 74.9纳米。X射线衍射分析表明儿茶素 - SNP复合材料中形成了少量包合物。随着用于包封的SNPs添加量增加,包封于SNP复合材料中的儿茶素比纯儿茶素表现出更高的水溶性和紫外线稳定性。含150毫克儿茶素的儿茶素 - SNP复合材料表现出最高接触角(51.37°),并形成稳定乳液且液滴尺寸无明显变化。因此,儿茶素 - SNP复合材料提高了儿茶素的包封效率、水溶性、稳定性以及Pickering乳液稳定性。