Ciências Químicas e das Biomoléculas/CISA, Escola Superior de Saúde-Instituto Politécnico do Porto, Rua Doutor António Bernardino de Almeida, 400, 4200-072 Porto, Portugal.
LAQV-REQUIMTE, Instituto Superior de Engenharia do Porto, Instituto Politécnico do Porto, Rua Doutor António Bernardino de Almeida 431, 4249-015 Porto, Portugal.
Mar Drugs. 2022 Oct 28;20(11):677. doi: 10.3390/md20110677.
Marine macroalgae are rich in bioactive compounds that can be applied in several fields, mainly food, cosmetics, and medicine. The health-promoting effects of bioactive compounds, such as polyphenols, polysaccharides, carotenoids, proteins, and fatty acids, have been increasingly explored, especially regarding their antioxidant activity and improvement in human health. To extract these valuable compounds, advanced technologies that include Supercritical-Fluid Extraction (SFE), Pressurised-Liquid Extraction (PLE), Ultrasound-Assisted Extraction (UAE), Microwave-Assisted Extraction (MAE), Enzyme-Assisted Extraction (EAE), Ultrasound-Microwave-Assisted Extraction (UMAE) and Liquefied Gas Extraction (LGE) have been assessed due to their notable advantages over the conventional methods (Solid-Liquid and Soxhlet extraction). These advanced techniques are considerably influenced by different extraction parameters such as temperature, pressure, type of solvent, extraction time, solvent:solid material ratio, power (MAE, UAE, and UMAE), enzymes used (EAE), and factors related to the macroalgae matrix itself. Optimizing these process parameters for each method is critical to obtain better efficiency results for the targeted bioactive compounds. Macroalgae are natural sources with undeniable beneficial effects on human health. In this context, optimising the extraction techniques discussed in this review should prioritise exploiting these valuable resources' wide range of bioactive properties.
海洋大型藻类富含生物活性化合物,可应用于多个领域,主要是食品、化妆品和医药。生物活性化合物的健康促进作用,如多酚、多糖、类胡萝卜素、蛋白质和脂肪酸,越来越受到关注,特别是它们的抗氧化活性和对人类健康的改善作用。为了提取这些有价值的化合物,已经评估了包括超临界流体萃取(SFE)、加压液体萃取(PLE)、超声辅助提取(UAE)、微波辅助提取(MAE)、酶辅助提取(EAE)、超声-微波辅助提取(UMAE)和液化气体萃取(LGE)在内的先进技术,因为它们相对于传统方法(固液和索氏提取)具有显著优势。这些先进技术受到不同提取参数的显著影响,如温度、压力、溶剂类型、提取时间、溶剂-固体材料比、功率(MAE、UAE 和 UMAE)、使用的酶(EAE)以及与大型藻类基质本身相关的因素。为每种方法优化这些工艺参数对于获得目标生物活性化合物更好的效率结果至关重要。海洋大型藻类是对人类健康具有不可否认有益影响的天然来源。在这种情况下,优化本文中讨论的提取技术应该优先考虑利用这些有价值资源的广泛生物活性特性。
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