首页> 外文期刊>Journal of Pharmaceutical and Biomedical Analysis: An International Journal on All Drug-Related Topics in Pharmaceutical, Biomedical and Clinical Analysis >Application of an innovative design space optimization strategy to the development of LC methods for the simultaneous screening of antibiotics to combat poor quality medicines
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Application of an innovative design space optimization strategy to the development of LC methods for the simultaneous screening of antibiotics to combat poor quality medicines

机译:创新的设计空间优化策略在液相色谱方法开发中的应用,用于同时筛选与劣质药物作斗争的抗生素

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摘要

The poor quality of medicines is a crucial problem of public health. Therefore, it is important to have analytical tools to attend decisions of the legal authorities while combating this offense. In this context, the main objective of this study was to develop generic methods able to trace, screen and determine several antibiotics and common associated molecules by mean of liquid chromatographic techniques. For that purpose, an innovative Design Space optimization strategy was applied, targeting 16 antibiotics and 3 beta-lactamase inhibitors. The robustness of the developed method allowed using its use in an environment where operational factors such as temperature are not easy to control and eased its transfer to Ultra High Performance Liquid Chromatography. To demonstrate its ability to quantify the targeted molecules, the developed and transferred method was fully validated for two active ingredients commonly used in association, sulbactam and ceftriaxone, using the accuracy profile as decision tool. Based on this successful step, the method was then used for the quantitative determination of these two active ingredients in three pharmaceutical brands marketed in the Democratic Republic of Congo. Two out of the three pharmaceutical products did not comply with the specifications.
机译:药品质量差是公共卫生的关键问题。因此,在打击这种犯罪的同时,拥有分析工具来参与法律机构的决策很重要。在这种情况下,本研究的主要目的是开发能够通过液相色谱技术来追踪,筛选和确定几种抗生素及常见相关分子的通用方法。为此,采用了创新的设计空间优化策略,针对16种抗生素和3种β-内酰胺酶抑制剂。所开发方法的坚固性使其可以在不容易控制温度等操作因素的环境中使用,并易于将其转移至超高效液相色谱中。为了证明其量化目标分子的能力,使用精度曲线作为决策工具,对联合常用的两种活性成分舒巴坦和头孢曲松进行了充分验证和验证,从而验证了其开发和转移方法的有效性。基于这一成功的步骤,该方法随后被用于定量测定在刚果民主共和国销售的三个制药品牌中的这两种活性成分。三种药品中有两种不符合规格。

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