通过亲水增溶作用释放绿色化学在植物成分提取中的能量

Devika Tripathi, Sakshi Sharma, Gauransh Mishra, Tanya Gupta, Manjunatha Prabhu B.H., Jagannath Sahoo
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引用次数: 0

摘要

天然产品的萃取是应用化学、生物学和技术等跨学科领域的一个重要焦点,其重点是开发生态友好和可持续的方法,因为消费者对环保替代品的需求日益增长,而工业界也对可持续、无毒的萃取技术十分关注。天然提取物的产量和成分取决于所采用的提取方法和所选择的溶剂。新兴技术旨在缩短萃取时间、提高萃取率、消除溶剂的使用以及减少对环境的影响。制药业对创新提取技术(包括绿色技术)的应用进行了广泛的研究。随着 "绿色技术 "的发展,与传统的非环保溶剂相比,使用绿色溶剂提取植物化学物质至关重要。Hydrotropes 就是这样一类绿色溶剂,它可以通过降低毒性、成本效益和 pH 值独立性来提高水溶性差或疏水性化合物在水溶液中的溶解度。这些化合物具有提高提取植物成分的生物利用度、溶解度、溶解速率、提取率和纯度的潜力。使用它们可以最大限度地降低能耗和成本,使其成为萃取过程中高效、可持续的选择。本综述重点介绍了水提法在植物活性化合物创新萃取中的广泛应用。该综述全面概述了水托普化学,探讨了毒理学问题,并讨论了最先进的萃取技术。综述还研究了影响植物成分产量的因素,并探讨了可用的给药系统。在这种情况下,水苏碱的潜力是巨大的,它为更高效、更环保的萃取方法铺平了道路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Unleashing the Power of Green Chemistry in Phytoconstituent Extraction by Hydrotropic Solubilization
The extraction of natural products is a critical area of focus in the interdisciplinary domain of applied chemistry, biology, and technology, with an emphasis on the development of eco-friendly and sustainable methodologies driven by increasing consumer demand for environmentally friendly alternatives and industry concerns about sustainable, non-toxic extraction techniques. The yield and composition of natural extracts are contingent upon the extraction method employed and the solvent selected. Emerging technologies are designed to reduce extraction time, increase extraction yield, eliminate the use of solvents, and lessen environmental impact. The pharmaceutical industry has conducted extensive research into the application of innovative extraction technologies, including green technologies. In line with the development of “green technology,” the use of green solvents for the extraction of phytochemicals, as opposed to conventional non-eco-friendly solvents, is of paramount importance. Hydrotropes are one such class of green solvents that enhance the solubility of poorly water-soluble or hydrophobic compounds in aqueous solutions by reducing toxicity, cost-effectiveness, and pH independence. These compounds have the potential to enhance the bioavailability, solubility, dissolution rate, extraction yield, and purity of extracted phytoconstituents. Their use minimizes energy consumption and costs, making them an efficient and sustainable choice in the extraction process. This review highlights the extensive use of hydrotropes in the innovative extraction of phytoactive compounds. It provides a comprehensive overview of hydrotrope chemistry, addresses toxicological concerns, and discusses state-of-the-art extraction technologies. The review also examines factors affecting the yield of phytoconstituents and explores available drug delivery systems. The potential of hydrotropes in this context is promising, paving the way for more efficient and environmentally friendly extraction methodologies.
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来源期刊
Current Materials Science
Current Materials Science Materials Science-Materials Science (all)
CiteScore
0.80
自引率
0.00%
发文量
38
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