Decamp Antoine, Michelo Orane, Rabbat Christelle, Laroche Céline, Grizeau Dominique, Pruvost Jérémy, Gonçalves Olivier
Université de Nantes, GEPEA, UMR CNRS 6144, 37 boulevard de l'Université, 44600 Saint-Nazaire, France.
Institut Pascal UMR 6602, Université Clermont Auvergne, CNRS, SIGMA Clermont, 63000 Clermont-Ferrand, France.
Mar Drugs. 2021 Feb 10;19(2):101. doi: 10.3390/md19020101.
In this work, a new methodological approach, relying on the high specificity of enzymes in a complex mixture, was developed to estimate the composition of bioactive polysaccharides produced by microalgae, directly in algal cultures. The objective was to set up a protocol to target oligomers commonly known to be associated with exopolysaccharides' (EPS) nutraceutical and pharmaceutical activities (i.e., rhamnose, fucose, acidic sugars, etc.) without the constraints classically associated with chromatographic methods, while maintaining a resolution sufficiently high to enable their monitoring in the culture system. Determination of the monosaccharide content required the application of acid hydrolysis (2 M trifluoroacetic acid) followed by NaOH (2 M) neutralization. Quantification was then carried out directly on the fresh hydrolysate using enzyme kits corresponding to the main monosaccharides in a pre-determined composition of the polysaccharides under analysis. Initial results showed that the enzymes were not sensitive to the presence of TFA and NaOH, so the methodology could be carried out on fresh hydrolysate. The limits of quantification of the method were estimated as being in the order of the log of nanograms of monosaccharides per well, thus positioning it among the chromatographic methods in terms of analytical performance. A comparative analysis of the results obtained by the enzymatic method with a reference method (high-performance anion-exchange chromatography) confirmed good recovery rates, thus validating the closeness of the protocol. Finally, analyses of raw culture media were carried out and compared to the results obtained in miliQ water; no differences were observed. The new approach is a quick, functional analysis method allowing routine monitoring of the quality of bioactive polysaccharides in algal cultures grown in photobioreactors.
在这项工作中,开发了一种新的方法,该方法依赖于复杂混合物中酶的高特异性,可直接在藻类培养物中估算微藻产生的生物活性多糖的组成。目的是建立一种方案,以靶向通常已知与胞外多糖(EPS)的营养和药用活性相关的寡聚物(即鼠李糖、岩藻糖、酸性糖等),而不受色谱方法通常所具有的限制,同时保持足够高的分辨率,以便在培养系统中对其进行监测。单糖含量的测定需要先进行酸水解(2 M三氟乙酸),然后用NaOH(2 M)中和。然后使用与所分析多糖的预定组成中的主要单糖相对应的酶试剂盒,直接对新鲜水解产物进行定量。初步结果表明,这些酶对TFA和NaOH的存在不敏感,因此该方法可以在新鲜水解产物上进行。该方法的定量限估计为每孔单糖纳克数的对数级别,因此就分析性能而言,它与色谱方法相当。将酶法获得的结果与参考方法(高效阴离子交换色谱法)进行比较分析,证实了良好的回收率,从而验证了该方案的准确性。最后,对原始培养基进行了分析,并与在超纯水(miliQ水)中获得的结果进行了比较;未观察到差异。这种新方法是一种快速的功能分析方法,可用于对光生物反应器中培养的藻类中生物活性多糖的质量进行常规监测。