Department of Food Engineering and Technology, School of Engineering, Tezpur University, Assam 784028, India.
Department of Food Processing Technology, GKCIET, Malda, West Bengal 732141, India.
Int J Biol Macromol. 2022 Jan 1;194:715-725. doi: 10.1016/j.ijbiomac.2021.11.116. Epub 2021 Nov 22.
The phytochemical-rich extract obtained from black jamun pulp were encapsulated using vibrating dripping extrusion technique. The utilisation of alginate (AL) with four variations of core-shell material comprising gum Arabic (AL-GA), guar gum (AL-GG), pectin (AL-P) and xanthan gum (AL-X) was engaged to form calcium-alginate based lyophilised jamun extract encapsulated beads. It resulted that among four variations, lyophilised alginate with AL-GG based encapsulated jamun extract filled beads have better physicochemical characteristics and 95% encapsulation efficiency. The results revealed the morphological comparison of each variation. The release behaviour of AL-GG based beads has a higher release of total phenolics (TPC) and total anthocyanin content (TAC). The release kinetics model involving Ritger-Peppas and Higuchi model were applied for release TPC and TAC of all variations of beads. The Ritger-Peppas model was found best suitable in terms of average R (0.965) and lowest χ (0.0039). The release kinetics study showed that AL-GA based beads followed by AL-GG could also be the best suitable in release behaviour using simulated gastrointestinal fluids at 140-160 min. Overall, results shown the encapsulated Jamun beads have the best agro-industrial efficacy in form of phytochemical compounds based microparticles, holding decent antioxidant potential.
从黑李果肉中提取的富含植物化学物质的提取物,采用振动滴注挤压技术进行包封。利用海藻酸钠(AL)与四种不同的核壳材料(阿拉伯胶(AL-GA)、瓜尔胶(AL-GG)、果胶(AL-P)和黄原胶(AL-X))结合,形成基于海藻酸钙的冻干李提取物包封珠。结果表明,在四种变化中,基于 AL-GG 的冻干藻酸盐包封李提取物填充珠具有更好的物理化学特性和 95%的包封效率。结果揭示了每种变化的形态比较。基于 AL-GG 的珠子具有更高的总酚(TPC)和总花青素含量(TAC)释放。应用 Ritger-Peppas 和 Higuchi 模型对所有珠粒变化的 TPC 和 TAC 释放进行了释放动力学模型。Ritger-Peppas 模型在平均 R(0.965)和最低 χ(0.0039)方面被发现是最合适的。释放动力学研究表明,AL-GA 基珠粒随后是 AL-GG,也可能是在模拟胃肠道液体中以 140-160 分钟释放行为的最佳选择。总的来说,结果表明包封的李珠具有基于植物化学物质的微粒的最佳农业工业功效,具有良好的抗氧化潜力。