核磁共振波谱作为一种优雅的工具,对粗肝素材料进行全面的质量控制

IF 3.1 3区 医学 Q2 CHEMISTRY, ANALYTICAL
Yulia B. Monakhova , Bernd W.K. Diehl
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引用次数: 2

摘要

提出了用核磁共振(NMR)光谱法定量分析粗肝素中纯肝素的方法。为了定量,采用USP肝素标准样品进行校准,苯甲酸作为内标,建立了两步常规。该方法的准确度、重现性和精密度均得到了验证。采用该方法对20份肝素含量在4.25 ~ 64.4 w/w %之间的正品猪类肝素样品进行了分析。粗肝素产品的表征进一步扩展到同时分析这些常见离子:钠、钙、醋酸和氯。抗凝血活性与测定肝素含量之间存在显著的线性关系,13种肝素样品的参考数据可用。扩散有序核磁共振实验(DOSY)可用于类肝素基质中特异性糖胺聚糖(GAGs)的定性分析,并有可能用于定量预测GAGs的分子量。因此,核磁共振光谱法是一种独特的分析方法,适用于同时定量控制粗肝素样品的有机和无机成分(特别是肝素含量),以及估计其他物理和质量参数(分子量、动物来源和活性)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Nuclear magnetic resonance spectroscopy as an elegant tool for a complete quality control of crude heparin material

Nuclear magnetic resonance (NMR) spectrometric methods for the quantitative analysis of pure heparin in crude heparin is proposed. For quantification, a two-step routine was developed using a USP heparin reference sample for calibration and benzoic acid as an internal standard. The method was successfully validated for its accuracy, reproducibility, and precision. The methodology was used to analyze 20 authentic porcine heparinoid samples having heparin content between 4.25 w/w % and 64.4 w/w %. The characterization of crude heparin products was further extended to a simultaneous analysis of these common ions: sodium, calcium, acetate and chloride. A significant, linear dependence was found between anticoagulant activity and assayed heparin content for thirteen heparinoids samples, for which reference data were available. A Diffused-ordered NMR experiment (DOSY) can be used for qualitative analysis of specific glycosaminoglycans (GAGs) in heparinoid matrices and, potentially, for quantitative prediction of molecular weight of GAGs. NMR spectrometry therefore represents a unique analytical method suitable for the simultaneous quantitative control of organic and inorganic composition of crude heparin samples (especially heparin content) as well as an estimation of other physical and quality parameters (molecular weight, animal origin and activity).

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来源期刊
CiteScore
6.70
自引率
5.90%
发文量
588
审稿时长
37 days
期刊介绍: This journal is an international medium directed towards the needs of academic, clinical, government and industrial analysis by publishing original research reports and critical reviews on pharmaceutical and biomedical analysis. It covers the interdisciplinary aspects of analysis in the pharmaceutical, biomedical and clinical sciences, including developments in analytical methodology, instrumentation, computation and interpretation. Submissions on novel applications focusing on drug purity and stability studies, pharmacokinetics, therapeutic monitoring, metabolic profiling; drug-related aspects of analytical biochemistry and forensic toxicology; quality assurance in the pharmaceutical industry are also welcome. Studies from areas of well established and poorly selective methods, such as UV-VIS spectrophotometry (including derivative and multi-wavelength measurements), basic electroanalytical (potentiometric, polarographic and voltammetric) methods, fluorimetry, flow-injection analysis, etc. are accepted for publication in exceptional cases only, if a unique and substantial advantage over presently known systems is demonstrated. The same applies to the assay of simple drug formulations by any kind of methods and the determination of drugs in biological samples based merely on spiked samples. Drug purity/stability studies should contain information on the structure elucidation of the impurities/degradants.
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