Jancic-Stojanovic B, Malenovic A, Ivanovic D, Rakic T, Medenica M
Faculty of Pharmacy, Institute of Drug Analysis, Vojvode Stepe 450, Belgrade, Serbia.
J Chromatogr A. 2009 Feb 20;1216(8):1263-9. doi: 10.1016/j.chroma.2008.10.059. Epub 2008 Oct 19.
The aim of this study was the chemometrical evaluation of ropinirole and its impurity's (4-[2-(dipropylamino)ethyl]-1H-indol-2,3-dione) chromatographic behavior in systematic and the most efficient way. For that purpose, as very descriptive, response surface designs are most preferable. Face-centered central composite design (CCD) with 2(3) full factorial design, +/-1 star design and four replication in central point was applied for a response surface study, in order to examine in depth the effects of the most important factors. Factors-independent variables (acetonitrile content, pH of the mobile phase and concentration of sodium heptane sulfonate in water phase) were extracted from the preliminary study and as dependent variables five responses (retention factor of ropinirole, retentin factor of its impurity, resolution, symmetry of ropinirole peak and symmetry of impurity peak) were selected. For the improvement of method development and optimization step, Derringer's desirability function was applied to simultaneously optimize the five chosen responses. The procedure allowed deduction of optimal conditions and the predicted optimum was acetonitrile-5mM of sodium heptane sulfonate (21.6:78.4, v/v), pH of the mobile phase adjusted at 2.0 with ortho phosphoric acid. By calculating global desirability's determination coefficients (R(D)(2)), as well as by the visual inspection of 3D graphs for global desirability, robustness of the proposed method was also estimated.
本研究的目的是以系统且高效的方式对罗匹尼罗及其杂质(4-[2-(二丙基氨基)乙基]-1H-吲哚-2,3-二酮)的色谱行为进行化学计量学评估。为此目的,响应面设计非常具有描述性,是最为可取的方法。采用具有2(3)全因子设计、±1星号设计且中心点有四次重复的面心中央复合设计(CCD)进行响应面研究,以便深入考察最重要因素的影响。从初步研究中提取了独立变量(乙腈含量、流动相pH值和水相中庚烷磺酸钠浓度)作为因子,选择了五个响应作为因变量(罗匹尼罗的保留因子、其杂质的保留因子、分离度、罗匹尼罗峰的对称性和杂质峰的对称性)。为了改进方法开发和优化步骤,应用了Derringer期望函数来同时优化所选的五个响应。该程序能够推导出最佳条件,预测的最佳条件是乙腈-5mM庚烷磺酸钠(21.6:78.4,v/v),用正磷酸将流动相pH值调节至2.0。通过计算全局期望的决定系数(R(D)(2)),以及通过对全局期望三维图的目视检查,还评估了所提出方法的稳健性。