Departamento de Química, Faculdade de Filosofia, Ciências e Letras de Ribeirão Preto, Universidade de São Paulo, Ribeirão Preto, SP, Brazil.
Anal Chim Acta. 2012 Sep 12;742:80-9. doi: 10.1016/j.aca.2012.05.056. Epub 2012 Jun 9.
The present work describes for the first time the use of SPME coupled to LC-MS/MS employing the polar organic mode in a stereoselective fungal biotransformation study to investigate the fungi ability to biotransform the drug risperidone into its chiral and active metabolite 9-hydroxyrisperidone (9-RispOH). The chromatographic separation was performed on a Chiralcel OJ-H column using methanol:ethanol (50:50, v/v) plus 0.2% triethylamine as the mobile phase at a flow rate of 0.8 mL min(-1). The SPME process was performed using a C18 fiber, 30 min of extraction time and 5 min of desorption time in the mobile phase. The method was completely validated and all parameters were in agreement with the literature recommendations. The Cunninghamella echinulata fungus was able to biotransform risperidone into the active metabolite, (+)-9-RispOH, resulting in 100% of enantiomeric excess. The Cunninghamella elegans fungus was also able to stereoselectively biotransform risperidone into (+)- and (-)-9-RispOH enantiomers at different rates.
本工作首次描述了在立体选择性真菌生物转化研究中采用极性有机模式结合 LC-MS/MS 的 SPME 的应用,以研究真菌将利培酮转化为其手性和活性代谢物 9-羟基利培酮(9-RispOH)的能力。在 Chiralcel OJ-H 柱上,以甲醇:乙醇(50:50,v/v)加 0.2%三乙胺为流动相,以 0.8 mL min(-1)的流速进行色谱分离。SPME 过程采用 C18 纤维,萃取时间 30 分钟,在流动相中解吸时间 5 分钟。该方法经过完全验证,所有参数均符合文献推荐值。盾状卷枝孢菌能够将利培酮转化为活性代谢物(+)-9-RispOH,对映体过量 100%。华丽枝孢菌也能够以不同的速率立体选择性地将利培酮转化为(+)-和(-)-9-RispOH 对映体。