Olguín Eugenia J, Sánchez-Galván Gloria, Arias-Olguín Imilla I, Melo Francisco J, González-Portela Ricardo E, Cruz Lourdes, De Philippis Roberto, Adessi Alessandra
Environmental Biotechnology Group, Biotechnological Management of Resources Network, Institute of Ecology (INECOL), Xalapa, Veracruz 91073, Mexico.
International Centre for Clean Technologies and Sustainable Development, (CITELDES, A.C.), Xalapa, Veracruz 91190, Mexico.
Biology (Basel). 2022 Jul 29;11(8):1146. doi: 10.3390/biology11081146.
Microalgae have demonstrated a large potential in biotechnology as a source of various macromolecules (proteins, carbohydrates, and lipids) and high-added value products (pigments, poly-unsaturated fatty acids, peptides, exo-polysaccharides, etc.). The production of biomass at a large scale becomes more economically feasible when it is part of a biorefinery designed within the circular economy concept. Thus, the aim of this critical review is to highlight and discuss challenges and future trends related to the multi-product microalgae-based biorefineries, including both phototrophic and mixotrophic cultures treating wastewater and the recovery of biomass as a source of valuable macromolecules and high-added and low-value products (biofertilizers and biostimulants). The therapeutic properties of some microalgae-bioactive compounds are also discussed. Novel trends such as the screening of species for antimicrobial compounds, the production of bioplastics using wastewater, the circular economy strategy, and the need for more Life Cycle Assessment studies (LCA) are suggested as some of the future research lines.
微藻在生物技术领域已展现出巨大潜力,可作为各种大分子(蛋白质、碳水化合物和脂质)以及高附加值产品(色素、多不饱和脂肪酸、肽、胞外多糖等)的来源。当大规模生物质生产成为基于循环经济理念设计的生物精炼厂的一部分时,其在经济上变得更可行。因此,本综述的目的是突出并讨论与基于微藻的多产品生物精炼厂相关的挑战和未来趋势,包括处理废水的光养和兼养培养,以及将生物质作为有价值的大分子和高附加值及低价值产品(生物肥料和生物刺激剂)来源的回收利用。还讨论了一些微藻生物活性化合物的治疗特性。诸如筛选抗菌化合物的物种、利用废水生产生物塑料、循环经济策略以及开展更多生命周期评估研究(LCA)等新趋势被建议作为一些未来的研究方向。