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海藻与共晶溶剂的完美匹配:通向(蓝绿)经济即用型提取物的可持续途径——观点综述。

The perfect match between macroalgae and eutectic solvents as a sustainable gateway to ready-to-use extracts towards a (blue + green) economy ─ A perspective review.

机构信息

School of Applied Sciences (FCA), University of Campinas (UNICAMP), Rua Pedro Zaccaria, 1300, 13484-350 Limeira, São Paulo, Brazil.

出版信息

Bioresour Technol. 2024 Dec;414:131600. doi: 10.1016/j.biortech.2024.131600. Epub 2024 Oct 9.

Abstract

The article discusses how aligning with the Sustainable Development Goals (SDGs) can foster a sustainable economy, mainly through the (green + blue) economy, which involves valorizing macroalgae to produce ready-to-use extracts. It focuses on the potential of eutectic solvents (commonly known as deep eutectic solvents - DES) as promising candidates for this purpose. Traditional methods for extracting bioactive compounds from macroalgae, which rely on organic solvents and aqueous buffers, often involve harsh conditions and extensive processing. These factors can lead to reduced extract quality and/or low yields. In contrast, if properly designed, DES presents a green and sustainable alternative. They offer advantages such as low volatility, adjustable polarity, and negligible toxicity, making them a more environmentally friendly and efficient option for extraction processes. They can be customized to enhance both biological and technological properties, resulting in extracts with unique characteristics such as increased antioxidant activity, antiproliferative and anti-inflammatory effects, as well as improving the viscoelasticity of polysaccharides (fucoidans, alginates, and κ-carrageenan) from macroalgae. In this sense, the tunable nature of DES enables the optimization of extraction conditions to maximize yield, purity, and bioactivity, making it a smart alternative for producing bio-based products. Despite limited literature on DES for this purpose, the article highlights their potential and outlines the main advantages and challenges needed for macroalgae valorization.

摘要

本文讨论了如何通过(绿色+蓝色)经济与可持续发展目标(SDGs)保持一致,以促进可持续经济发展,主要是通过利用巨藻生产即用型提取物来实现。本文重点介绍了熔融盐(通常称为深共熔溶剂-DES)作为这一目标有前途的候选物的潜力。从巨藻中提取生物活性化合物的传统方法依赖于有机溶剂和水缓冲液,通常涉及苛刻的条件和广泛的处理过程。这些因素可能导致提取物质量下降和/或产量低。相比之下,如果设计得当,DES 则提供了一种绿色可持续的替代方案。它们具有低挥发性、可调极性和可忽略毒性等优点,使其成为提取过程更环保、更高效的选择。DES 可以定制以增强生物和技术特性,从而产生具有独特特性的提取物,如增加抗氧化活性、抗增殖和抗炎作用,并改善巨藻多糖(褐藻胶、海藻酸盐和 κ-卡拉胶)的粘弹性。从这个意义上说,DES 的可调性质可以优化提取条件,以最大限度地提高产量、纯度和生物活性,使其成为生产基于生物的产品的明智选择。尽管关于 DES 用于此目的的文献有限,但本文强调了它们的潜力,并概述了巨藻增值所需的主要优势和挑战。

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