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LC-MS and LC-NMR as Complementary Techniques for the Determination of Pharmaceuticals in Dosage Formulations

机译:LC-MS和LC-NMR作为确定剂型中药物的补充技术

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摘要

Pharmaceuticals contain not only pharmacologically active compounds but also a range of excipients. The danger exists that impurities may also be present in such drugs, which may adversely affect their efficacy and even endanger patient health and life. Monitoring the composition of pharmaceutical products is therefore essential. The trace amounts of such impurities in Pharmaceuticals are often identified and determined with liquid chromatography coupled with mass spectrometry (LC-MS) or with nuclear magnetic resonance spectroscopy (LC-NMR). With the LC-MS technique, compounds known or suspected to be present in the sample can be identified, but this technique is unsuitable for identifying unknown compounds. In the latter case NMR spectra usually provide reliable structural information; in combination with LC, a mixture of impurities can be identified. The simultaneous use of LC-MS and LC-NMR may supply valuable information on the molecular weight and chemical structure of a compound. This article discusses the merits and shortcomings of both methodologies for determining the structures of unknown compounds. The two approaches should be treated as complementary.
机译:药物不仅包含药理活性化合物,而且还包含多种赋形剂。存在此类药物中也可能存在杂质的危险,这可能会对它们的功效产生不利影响,甚至危及患者的健康和生命。因此,监测药品的组成至关重要。通常通过液相色谱与质谱联用(LC-MS)或核磁共振波谱(LC-NMR)鉴定和测定药物中的此类杂质的痕量。使用LC-MS技术,可以识别样品中已知或怀疑存在的化合物,但该技术不适用于识别未知化合物。在后一种情况下,NMR光谱通常可提供可靠的结构信息。与LC结合使用,可以鉴定出杂质混合物。同时使用LC-MS和LC-NMR可提供有关化合物的分子量和化学结构的有价值的信息。本文讨论了确定未知化合物结构的两种方法的优缺点。两种方法应视为互补。

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