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全面鉴定和定量分析低分子量肝素的基本结构单元。

Comprehensive Identification and Quantitation of Basic Building Blocks for Low-Molecular Weight Heparin.

机构信息

National Glycoengineering Research Center, Shandong Provincial Key Laboratory of Carbohydrate Chemistry and Glycobiology, and State Key Laboratory of Microbial Technology, Shandong University , Jinan, Shandong 250100, China.

Department of Chemistry and Chemical Biology, Department of Chemical and Biological Engineering, Department of Biology, and Department of Biomedical Engineering, Center for Biotechnology and Interdisciplinary Studies, Rensselaer Polytechnic Institute , Troy, New York 12180, United States.

出版信息

Anal Chem. 2016 Aug 2;88(15):7738-44. doi: 10.1021/acs.analchem.6b01709. Epub 2016 Jul 20.

Abstract

Low-molecular weight heparins (LMWHs) are widely used anticoagulant drugs. They inherit the heterogeneous backbone sequences of the parent heparin, while the chemical depolymerization process modifies the nonreducing end (NRE) and reducing end (RE) of their sugar chains. Some side reactions may also occur and increase the structural complexity of LMWHs. It is important to precisely characterize the structures of LMWHs, especially their chemical modifications, to ensure drug quality and safety. Compositional analysis provides a powerful approach to reveal the building blocks that make up the LMWHs, which are the mutual consequence of the heparin starting materials and the manufacturing process. Here, we introduce a comprehensive analytical method to recover the most basic building blocks of LMWHs. A strategy of combining both enzymatic digestion and oxidative degradation of LMWH was used to make the NRE, RE, and backbone structures differentiable from one another. Satisfactory separation, identification, and quantitation were achieved by coupling hydrophilic interaction chromatography with a triple quadrupole mass spectrometer operating under the multiple reaction monitoring mode. After enzymatic digestion, over 30 species were detected, with both natural and chemically modified heparin basic building blocks. Two novel structures, including a trisaccharide containing two glucosamine residues and a tetrasaccharide containing a 3-O-sulfated uronic acid residue, were discovered. Reduced and oxidatively degraded samples were analyzed to provide the complementary information on both termini of LMWHs. The reproducibility of this method was evaluated, and enoxaparin injections were analyzed to demonstrate the application of this method for evaluating the sameness of LMWH products.

摘要

低分子量肝素 (LMWHs) 是广泛使用的抗凝药物。它们继承了肝素母体的不均一骨架序列,而化学解聚过程则修饰了其糖链的非还原端 (NRE) 和还原端 (RE)。一些副反应也可能发生,从而增加了 LMWHs 的结构复杂性。精确表征 LMWHs 的结构,特别是其化学修饰,对于确保药物质量和安全至关重要。组成分析提供了一种强大的方法来揭示构成 LMWHs 的构建块,这些构建块是肝素起始材料和制造过程的共同结果。在这里,我们介绍了一种全面的分析方法来回收 LMWHs 的最基本构建块。采用酶解和 LMWH 氧化降解相结合的策略,使 NRE、RE 和骨架结构彼此区分开来。通过将亲水作用色谱与三重四极杆质谱联用,并采用多反应监测模式,实现了令人满意的分离、鉴定和定量。酶解后,检测到 30 多种物质,包括天然和化学修饰的肝素基本构建块。发现了两种新结构,包括含有两个葡萄糖胺残基的三糖和含有 3-O-磺酸基糖醛酸残基的四糖。对还原和氧化降解样品进行分析,提供了 LMWHs 两端的互补信息。评估了该方法的重现性,并对依诺肝素注射液进行了分析,以证明该方法在评估 LMWH 产品一致性方面的应用。

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