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应用于商业玉米麦芽糊精的尺寸排阻色谱图的数学离散化

Mathematical discretization of size-exclusion chromatograms applied to commercial corn maltodextrins.

作者信息

Normand Valéry, Avaltroni Fabrice, Bouquerand Pierre-Etienne

机构信息

Firmenich S.A., Corporate R and D Division, P.O. Box 148, CH-1217 Mevrin 2 Geneva, Switzerland.

出版信息

J Chromatogr Sci. 2006 Feb;44(2):91-5. doi: 10.1093/chromsci/44.2.91.

Abstract

Discretization of a size-exclusion chromatography (SEC) chromatogram is shown here to be an important calculation for characterizing the distribution of a polydisperse polymer, especially when the polydispersity is large. Commercial poly-glucose maltodextrins are known to have such a polydispersity. A mathematical discretization method with Gaussian peaks centered on each individual degree of polymerization is proposed and is performed on the entire SEC chromatogram for three different grades of corn maltodextrins. Because SEC and high-performance anion exchange chromatography with pulsed amperometric detection (HPAEC-PAD) are based on different separation mechanisms, they can be considered orthogonal techniques, and HPAEC-PAD was therefore used to validate the SEC discretization procedure. Because this validation proved satisfactory for all commercially available oligomers, the discretization is extended to all of their SEC chromatograms. Comparing the number-average molar weight and the weight-average molar weight before and after the mathematical discretization verifies that such a mathematical treatment does not denaturate the chromatogram. This approach tentatively leads to a more exhaustive characterization of a broadly polydisperse sample, such as maltodextrins, than was previously available, as it (i) gets rid of the apparent, chemically irrelevant, continuous molar weight distribution obtained by raw SEC and (ii) addresses the current detection and quantitation limits of the HPAEC-PAD technique without any sample treatment.

摘要

本文表明,尺寸排阻色谱(SEC)色谱图的离散化是表征多分散聚合物分布的一项重要计算,尤其是在多分散性较大时。已知商业聚葡萄糖麦芽糊精具有这种多分散性。本文提出了一种以每个聚合度为中心的高斯峰的数学离散化方法,并对三种不同等级的玉米麦芽糊精的整个SEC色谱图进行了该方法的操作。由于SEC和带脉冲安培检测的高效阴离子交换色谱(HPAEC-PAD)基于不同的分离机制,它们可被视为正交技术,因此使用HPAEC-PAD来验证SEC离散化程序。由于该验证对所有市售低聚物均令人满意,因此将离散化扩展到了它们所有的SEC色谱图。比较数学离散化前后的数均分子量和重均分子量,证实这种数学处理不会使色谱图变性。与以前相比,这种方法初步能够更详尽地表征多分散性很宽的样品,如麦芽糊精,因为它(i)消除了原始SEC获得的明显的、与化学无关的连续分子量分布,并且(ii)无需任何样品处理即可解决HPAEC-PAD技术当前的检测和定量限问题。

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