Bermudez Gabriela, Terenzi Cristina, Medri Francesca, Andrisano Vincenza, Montanari Serena
Department for Life Quality Studies, University of Bologna, Corso d'Augusto 237, 47921 Rimini, Italy.
Mar Drugs. 2024 Nov 30;22(12):538. doi: 10.3390/md22120538.
Marine microalgae are emerging as promising sources of polyphenols, renowned for their health-promoting benefits. Recovering polyphenols from microalgae requires suitable treatment and extraction techniques to ensure their release from the biomass and analytical methodologies to assess their efficiency. This review provides a comprehensive comparison of traditional and cutting-edge extraction and analytical procedures applied for polyphenolic characterization in marine microalgae over the past 26 years, with a unique perspective on optimizing their recovery and identification. It addresses (I) cell disruption techniques, including bead milling, high-speed homogenization, pulsed electric field, ultrasonication, microwave, freeze-thawing, and enzymatic/chemical hydrolysis; (II) extraction techniques, such as solid-liquid extraction, ultrasound and microwave-assisted extraction, pressurized-liquid extraction, and supercritical CO; (III) analytical methods, including total phenolic and flavonoid content assays and advanced chromatographic techniques like GC-MS, HPLC-DAD, and HPLC-MS. Key findings showed bead milling and chemical hydrolysis as effective cell disruption techniques, pressurized-liquid extraction and microwave-assisted extraction as promising efficient extraction methods, and HPLC-MS as the finest alternative for precise phenolic characterization. Unlike previous reviews, this study uniquely integrates both extractive and analytical approaches in one work, focusing exclusively on marine microalgae, a relatively underexplored area compared to freshwater species, offering actionable insights to guide future research and industrial applications.
海洋微藻正成为有前景的多酚来源,因其对健康有益而闻名。从微藻中提取多酚需要合适的处理和提取技术,以确保其从生物质中释放出来,并需要分析方法来评估其效率。本综述全面比较了过去26年用于海洋微藻多酚表征的传统和前沿提取及分析程序,并从优化其回收和鉴定的独特视角进行了阐述。它涉及(I)细胞破碎技术,包括珠磨法、高速匀浆法、脉冲电场法、超声法、微波法、冻融法以及酶解/化学水解法;(II)提取技术,如固液萃取、超声和微波辅助萃取、加压液体萃取以及超临界CO;(III)分析方法,包括总酚和黄酮含量测定以及先进的色谱技术,如气相色谱-质谱联用(GC-MS)、高效液相色谱-二极管阵列检测(HPLC-DAD)和高效液相色谱-质谱联用(HPLC-MS)。主要研究结果表明,珠磨法和化学水解法是有效的细胞破碎技术,加压液体萃取和微波辅助萃取是有前景的高效提取方法,而HPLC-MS是精确表征酚类物质的最佳选择。与以往的综述不同,本研究在一项工作中独特地整合了提取和分析方法,专门聚焦于海洋微藻,这是一个与淡水物种相比相对未被充分探索的领域,为指导未来的研究和工业应用提供了可操作的见解。