利用聚乳酸乙醇酸(PLGA)研究纳米封装白茶提取物的结构特征

IF 2.2 4区 化学 Q2 Engineering Chemical Papers Pub Date : 2024-09-28 DOI:10.1007/s11696-024-03690-1
Elham Ahmadi, Nasrin Mollania, Zahra Latifi, Amir Hossein Elhamirad, Ahmad Pedram Nia
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引用次数: 0

摘要

本研究的目的是优化在超声强度、超声时间和不同溶剂条件下萃取含有最高浓度多酚化合物(TPC)的白茶提取物(WTE)的方法,然后研究使用聚乳酸(PLGA)进行纳米包囊对优化提取物结构特征的影响。研究结果表明,超声时间、超声强度以及所用溶剂类型对提取物的提取性能有影响。因此,在最佳条件下,使用甲醇溶剂、15 分钟的时间和 70% 的超声强度提取出的提取物抗氧化能力最高,TPC 最高,分别为 77.65% 和 68.38 mg/g。利用 PLGA 制备白茶提取物纳米胶囊(WTE-NCs)的方法基于溶剂-乳液蒸发和超声。通过粒度测定、形态分析和傅立叶变换红外光谱,研究了白茶提取物纳米胶囊的微包衣效率和释放以及结构特性。第一天的微包覆效率为 91.89%,22 天后下降到 76.16%。粒度分析结果表明,WTE-NCs 的粒度为 68.36 nm,六个月后增加到 447.23 nm。从形态上看,WTE-NCs 呈球形结构。本研究结果表明,使用 PLGA 进行微涂层可有效保护和覆盖 WTE。
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Investigating the structural characteristics of nanoencapsulation white tea extract using polylactic glycolic acid (PLGA)

The objective of the present study is to optimize the extraction of white tea extract (WTE) containing the highest concentration of polyphenolic compounds (TPC) under ultrasound intensity, ultrasound time, and different solvents, and then to investigate the effect of nanoencapsulation using PLGA on the structural characteristics of the optimized extract. The results of the investigation showed the effect of the time and intensity of ultrasound as well as the type of solvent used on the extraction performance of the extract. Thus, the optimal conditions were obtained by using methanol solvent and applying 15 min of time and 70% ultrasound intensity to extract the extract with the highest antioxidant capacity and maximum TPC, respectively, at the rate of 77.65% and 68.38 mg/g. The preparation of white tea extract nanocapsules (WTE-NCs) using PLGA was based on solvent-emulsion evaporation and ultrasound. WTE-NCs were investigated in terms of efficiency and release of WTE micro-coating and structural properties through particle size determination, morphological analysis, and FT-IR. The micro-coating efficiency was 91.89% on the first day, which decreased to 76.16% after 22 days. The particle size analysis results showed that WTE-NCs with a particle size of 68.36 nm increased to 447.23 nm after six months. In terms of morphology, WTE-NCs had a spherical structure. The present study’s findings showed that micro-coating using PLGA can effectively protect and cover WTE.

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来源期刊
Chemical Papers
Chemical Papers Chemical Engineering-General Chemical Engineering
CiteScore
3.30
自引率
4.50%
发文量
590
期刊介绍: Chemical Papers is a peer-reviewed, international journal devoted to basic and applied chemical research. It has a broad scope covering the chemical sciences, but favors interdisciplinary research and studies that bring chemistry together with other disciplines.
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