Drug Quality Control Laboratory (LCQMed), Pharmaceutical Sciences Department, Federal University of Rio Grande do Norte-UFRN, Av. General Cordeiro de Faria s/n, Natal RN 59012-570, Brazil.
Laboratory of Medicinal Chemistry, Nursing and Pharmacy School, Federal University of Alagoas, ESENFAR, Av. Lourival de Mello Motta s/n, Maceió AL 57072-970, Brazil.
Molecules. 2017 Aug 30;22(9):1394. doi: 10.3390/molecules22091394.
Guanylhydrazones are molecules with great pharmacological potential in various therapeutic areas, including antitumoral activity. Factorial design is an excellent tool in the optimization of a chromatographic method, because it is possible quickly change factors such as temperature, mobile phase composition, mobile phase pH, column length, among others to establish the optimal conditions of analysis. The aim of the present work was to develop and validate a HPLC and UHPLC methods for the simultaneous determination of guanylhydrazones with anticancer activity employing experimental design. Precise, exact, linear and robust HPLC and UHPLC methods were developed and validated for the simultaneous quantification of the guanylhydrazones LQM10, LQM14, and LQM17. The UHPLC method was more economic, with a four times less solvent consumption, and 20 times less injection volume, what allowed better column performance. Comparing the empirical approach employed in the HPLC method development to the DoE approach employed in the UHPLC method development, we can conclude that the factorial design made the method development faster, more practical and rational. This resulted in methods that can be employed in the analysis, evaluation and quality control of these new synthetic guanylhydrazones.
脒腙类化合物在多个治疗领域具有巨大的药理学潜力,包括抗肿瘤活性。析因设计是优化色谱方法的优秀工具,因为它可以快速改变温度、流动相组成、流动相 pH 值、柱长等因素,从而确定分析的最佳条件。本工作旨在采用实验设计开发和验证同时测定具有抗癌活性的脒腙类化合物的 HPLC 和 UHPLC 方法。开发并验证了精确、准确、线性和稳健的 HPLC 和 UHPLC 方法,用于同时定量测定胍腙 LQM10、LQM14 和 LQM17。UHPLC 方法更经济,溶剂消耗减少四倍,进样量减少二十倍,从而提高了柱效。将 HPLC 方法开发中使用的经验方法与 UHPLC 方法开发中使用的 DOE 方法进行比较,可以得出结论,析因设计使方法开发更快、更实用、更合理。这为这些新型合成脒腙的分析、评价和质量控制提供了方法。