National Renewable Energy Laboratory , 15013 Denver West Parkway , Golden , Colorado 80401 , United States.
J Agric Food Chem. 2019 May 15;67(19):5672-5679. doi: 10.1021/acs.jafc.9b00884. Epub 2019 May 7.
The analysis of protein in algal biomass is one of the most critical areas of commercial development of algae characterization for nutritional or other high value applications. A new rapid and accurate method is required that can be widely implemented and that is free from interferences from the complex algal biomass matrix. We developed a simple spectrophotometric method for primary amino acid quantification bulk measurement in an acid hydrolyzed algal biomass preparation, as an alternative to the more labor-intensive amino HPLC acid analysis or less specific nitrogen-to-protein conversion. We have validated an O-phthalaldehyde (OPA)-based derivatization method, showing accurate and linear quantification for standard reference amino acids as well as mixtures, mimicking the amino acid complexity found in algal biomass. The presence of interferences that may be derived from the complex biomass biochemical composition was tested during the method validation phase. We document the application of a novel method of OPA derivatization with 3-mercaptopropionic acid (3MPA) to determine the total amino acid content of harvested algal biomass collected from different, controlled cultivation conditions and demonstrated a within 10% accuracy against a reference measurement of amino acid content in at least 4 species and 10 algal biomass samples, across early, mid, and late-stages of cultivation.
对藻类生物质中的蛋白质进行分析是藻类特性商业化开发的最关键领域之一,这些藻类特性用于营养或其他高价值的应用。需要一种新的快速而准确的方法,该方法可以广泛实施,并且不受藻类生物质基质的复杂干扰。我们开发了一种简单的分光光度法,用于在酸水解的藻类生物质制备物中进行初级氨基酸的批量测量,这是对更耗时的氨基酸 HPLC 酸分析或不太具体的氮到蛋白质的转换的替代方法。我们已经验证了基于邻苯二甲醛(OPA)的衍生化方法,该方法对标准参考氨基酸以及混合物进行了准确且线性的定量,模拟了藻类生物质中发现的氨基酸复杂性。在方法验证阶段测试了可能源自复杂生物质生化组成的干扰物的存在。我们记录了将 3-巯基丙酸(3MPA)与新型OPA 衍生化方法一起用于确定从不同控制培养条件下收集的收获藻类生物质的总氨基酸含量的应用,并证明了该方法在至少 4 种和 10 种藻类生物质样品中,在培养的早期,中期和后期阶段,相对于氨基酸含量的参考测量值,其准确度在 10%以内。