LGPM, CentraleSupélec, Université Paris-Saclay, SFR Condorcet FR CNRS 3417, Centre Européen de Biotechnologie et de Bioéconomie (CEBB), Pomacle, France.
Crit Rev Biotechnol. 2021 Jun;41(4):457-473. doi: 10.1080/07388551.2020.1854672. Epub 2021 Mar 2.
Microalgae are photosynthetic microorganisms that have generated increasing interest in recent years due to their potential applications. Their biological capacity to grow faster than higher plants and their ability to convert solar energy into biomass and other bioactive molecules, has led to the development of various culture systems in order to produce different high-value products with commercial interest. The industrialization of the microalgae cultivation process requires the introduction of standardized quality parameters. In order to obtain bioactive compounds with high added value at a commercial level, it is necessary to sustainably produce biomass at a large scale. Such a process would imply specific stress conditions, such as variation in temperature, light or pH. These environmental conditions would make it more difficult to maintain the viability of the culture and protect the yield and condition of the target molecules. The physiological and biochemical impact of these stress factors on the microalgae biomass can be potentially measured by the presence and activity of various biochemical indicators called biomarkers. This review presents an overview of the main techniques that exist for assessing the "quality" of microalgae cultures through quantification of cell viability and vitality by monitoring specific markers indicative of the status of the culture.
微藻是光合微生物,由于其潜在的应用,近年来引起了越来越多的关注。它们比高等植物生长更快的生物能力,以及将太阳能转化为生物质和其他生物活性分子的能力,促使人们开发了各种培养系统,以生产具有商业利益的不同高价值产品。微藻培养过程的工业化需要引入标准化的质量参数。为了获得具有高附加值的生物活性化合物,需要在大规模可持续地生产生物质。这样的过程将意味着特定的压力条件,例如温度、光照或 pH 值的变化。这些环境条件将使维持培养物的活力以及保护目标分子的产量和状态变得更加困难。这些应激因素对微藻生物质的生理和生化影响可以通过存在和活性的各种生化指标来衡量,这些生化指标被称为生物标志物。本文综述了主要的技术,通过监测指示培养物状态的特定标记物来定量细胞活力和活力,评估微藻培养物的“质量”。