Post-collection purity correction for internal standard correction-high performance liquid chromatography-quantitative nuclear magnetic resonance.

IF 2.7 3区 化学 Q2 CHEMISTRY, ANALYTICAL Analytical Methods Pub Date : 2024-07-03 DOI:10.1039/d4ay00949e
Xueyao Li, Wei Zhang, Ting Huang, Ming Li, Fuhai Su, Huaxin Wu, Guangshi Tang
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Abstract

Quantitative nuclear magnetic resonance (qNMR) has a potential risk of inaccurate quantification of complex organic compounds with low purity due to incomplete separation of the impurity signals and the target component signals. The high performance liquid chromatography-qNMR (HPLC-qNMR) method removes impurities from the sample by HPLC and accurately determines the purity of the sample by qNMR, avoiding the laborious, time-consuming, and costly step of qualitative and quantitative determination of impurities in conventional mass balance methods. An improved method, named post-collection purity correction for internal standard correction-HPLC-qNMR (ISC-HPLC-qNMR), was developed and demonstrated on a complex compound oxytetracycline with low purity. In this method, a correction factor was introduced to compensate for the inability to achieve 100% purity through the HPLC purification procedure. The purity value with standard deviation of the oxytetracycline study material using this method was 82.00% ± 0.82%, while that obtained from the conventional qNMR with deconvolution was 81.70% ± 0.35%. The consistency of these results demonstrated that the improved method extends the applicability to the samples where HPLC is not capable of purifying complex compounds with low purity to near 100%, especially containing highly similar structural-related impurities. Furthermore, this method allows purification and quantification without the need to identify impurities in the sample, resulting in significant savings of time and cost. Additionally, it effectively compensates for the limitations of qNMR deconvolution in handling peak overlap in the sample.

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用于内标校正的采集后纯度校正--高效液相色谱-核磁共振定量分析。
定量核磁共振(qNMR)由于杂质信号和目标成分信号分离不彻底,因此存在对纯度低的复杂有机化合物定量不准确的潜在风险。高效液相色谱-qNMR(HPLC-qNMR)方法通过 HPLC 去除样品中的杂质,并通过 qNMR 精确测定样品的纯度,避免了传统质量平衡方法中费力、费时、费钱的杂质定性和定量测定步骤。研究人员开发了一种改进的方法,命名为内标校正采集后纯度校正-HPLC-qNMR(ISC-HPLC-qNMR),并在一种纯度较低的复杂化合物土霉素上进行了验证。在该方法中,引入了一个校正因子,以弥补 HPLC 纯化程序无法达到 100% 纯度的缺陷。使用该方法获得的土霉素研究材料的纯度值(含标准偏差)为 82.00% ± 0.82%,而使用传统 qNMR 和解卷积法获得的纯度值为 81.70% ± 0.35%。这些结果的一致性表明,改进后的方法适用于 HPLC 无法将纯度较低的复杂化合物纯化到接近 100% 的样品,尤其是含有高度相似的结构相关杂质的样品。此外,该方法无需识别样品中的杂质即可进行纯化和定量,从而大大节省了时间和成本。此外,它还能有效弥补 qNMR 解卷积在处理样品峰重叠方面的局限性。
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来源期刊
Analytical Methods
Analytical Methods CHEMISTRY, ANALYTICAL-FOOD SCIENCE & TECHNOLOGY
CiteScore
5.10
自引率
3.20%
发文量
569
审稿时长
1.8 months
期刊介绍: Early applied demonstrations of new analytical methods with clear societal impact
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