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傅里叶变换红外光谱法作为一种工具,用于分析海藻多糖的季节性变化和质量控制。

The Use of FTIR Spectroscopy as a Tool for the Seasonal Variation Analysis and for the Quality Control of Polysaccharides from Seaweeds.

机构信息

Laboratory of Marine Biotechnology and Chemistry (LBCM), University Bretagne Sud (UBS), EMR CNRS 6076, IUEM, Campus Tohannic, 56000 Vannes, France.

Research Unit in Process and Environmental Engineering (URGPGE), Faculty of Sciences, PEI, University of Antananarivo, Antananarivo 101, Madagascar.

出版信息

Mar Drugs. 2023 Sep 1;21(9):482. doi: 10.3390/md21090482.

Abstract

Macroalgae are a potentially novel source of nutrition and biologically active molecules. Proliferative species such as , (red algae) and (brown alga) constitute a huge biomass that can be exploited. In this study, we focus on the extraction of polysaccharides from these three macroalgae species and the characterization of cell wall polysaccharides such as carrageenans, fucoidans and alginates by Fourier Transform Infrared spectroscopy with Attenuated Reflectance Module (FTIR-ATR). The comparison of purified extracts with commercial solutions of fucoidans, alginates or carrageenans shows a strong similarity between the spectra. It demonstrates that the methods of extraction that have been used are also suitable purifying technics. Moreover, it validates infrared spectroscopy as a quick, simple and non-destructive method for the accurate analysis of polysaccharides. The FTIR technique applied to samples collected at different periods of the year allowed us to highlight differences in the composition of fucoidans, alginates and carrageenans. Different classes corresponding to the season can be distinguished by statistical multidimensionnal analysis (Principal Component Analysis) showing that the structure of algal polysaccharides, related to bioactivity, depends on the period of harvest. FTIR results showed that and possess a dominant type of carrageenan called iota-carrageenan. This type of carrageenan is in the majority when the alga is at maturity in its development cycle. During its growth phase, iota-carrageenan precursors can be detected by FTIR spectra, enabling a better control of the extraction and an application of these compounds in various economic sectors. When the alga is in its juvenile stage, we found traces of kappa-carrageenan and nu-carrageenan polysaccharides in some extracts.

摘要

大型藻类是营养和具有生物活性分子的潜在新来源。增殖物种,如 (红藻)和 (褐藻),构成了可以开发的巨大生物量。在这项研究中,我们专注于从这三种大型藻类中提取多糖,并通过傅里叶变换衰减全反射红外光谱法(FTIR-ATR)对角叉菜胶、褐藻胶和藻酸盐等细胞壁多糖进行表征。与商业褐藻胶、藻酸盐或角叉菜胶溶液相比,纯化提取物的光谱具有很强的相似性。这表明所使用的提取方法也是合适的纯化技术。此外,它验证了红外光谱作为一种快速、简单和非破坏性的方法,可用于准确分析多糖。FTIR 技术应用于一年内不同时期采集的样品,使我们能够突出褐藻胶、藻酸盐和角叉菜胶组成的差异。通过统计多维分析(主成分分析)可以区分不同季节对应的类别,表明与生物活性相关的藻类多糖结构取决于收获期。FTIR 结果表明 和 含有一种称为iota-角叉菜胶的主要角叉菜胶类型。当藻类在其发育周期中成熟时,这种类型的角叉菜胶占多数。在生长阶段,可以通过 FTIR 光谱检测到 iota-角叉菜胶的前体,从而更好地控制提取,并将这些化合物应用于各个经济部门。当藻类 处于幼年阶段时,我们在一些提取物中发现了kappa-角叉菜胶和nu-角叉菜胶多糖的痕迹。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c4e9/10532535/5297be72d6eb/marinedrugs-21-00482-g001.jpg

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