探索紫山药(Dioscorea alata L.)淀粉提取、改性、表征及在食品和其他行业应用的新进展前沿

Ayush Shrivastava, Rakesh Kumar Gupta, Prem Prakash Srivastav
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引用次数: 0

摘要

紫山药(Dioscorea alata)淀粉作为一种功能性配料,在各行各业,尤其是食品和制药业具有相当大的潜力。本研究深入探讨了紫山药淀粉提取、改性、表征及其应用拓展的新领域。为了获得高质量的淀粉,我们对提取工艺进行了优化,重点关注环保技术。提取后,淀粉会经过一系列改性,包括物理、化学和酶法,以提高其功能特性,如溶解性、粘度、糊化性和抗逆性。我们采用了光谱、显微镜和流变分析等综合表征技术来分析原生淀粉和改性淀粉的结构和理化特性。结果表明,淀粉的性能指标有了明显改善,使其适用于多种应用。在食品工业中,变性紫薯淀粉正在成为一种多功能增稠剂、稳定剂和质构剂,可用于汤、调味汁和烘焙食品等产品。由于花青素的作用,其独特的紫色还增加了美学价值和潜在的健康益处。除食品外,这种淀粉还可应用于生物塑料、药品和化妆品中,其生物相容性和功能特性受到高度重视。对紫山药淀粉提取和改性先进技术的探索突出了其多方面的应用,使其成为传统淀粉的一种有前途的替代品。未来的研究重点应是扩大这些工艺的工业应用规模,确保其可持续性,并探索其在新兴领域的新应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Exploring novel frontiers of advancements in purple yam (Dioscorea alata L.) starch extraction, modification, characterization, applications in food and other industries

Purple yam (Dioscorea alata) starch holds considerable potential as a functional ingredient in various industries, particularly food and pharmaceuticals. This study delves into the novel frontiers of purple yam starch extraction, modification, characterization, and its expanding applications. The extraction process has been optimized to yield high-quality starch, focusing on environmentally friendly techniques. Post-extraction, the starch undergoes a series of modifications, including physical, chemical, and enzymatic methods, to enhance its functional properties, such as solubility, viscosity, gelatinization, and resistance to retrogradation. Comprehensive characterization techniques, including spectroscopy, microscopy, and rheological analysis, have been employed to analyze the structural and physicochemical properties of native and modified starches. The results reveal significant improvements in the performance metrics of the starch, rendering it suitable for diverse applications. In the food industry, modified purple yam starch is emerging as a versatile thickener, stabilizer, and texturizer in products such as soups, sauces, and baked goods. Its unique purple hue, attributed to anthocyanins, also adds aesthetic value and potential health benefits. Beyond food, this starch finds applications in bioplastics, pharmaceuticals, and cosmetics, where its biocompatibility and functional properties are highly valued. This exploration into the advanced techniques of purple yam starch extraction and modification highlights its multifaceted applications, positioning it as a promising alternative to traditional starches. Future research should focus on scaling these processes for industrial use, ensuring sustainability, and exploring new applications in emerging sectors.

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