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手性在一组具有药学意义的关键中间体(3-芳基取代的γ-丁内酯)中的作用,通过手性高效液相色谱分离和旋光光谱法得以证明。

The role of chirality in a set of key intermediates of pharmaceutical interest, 3-aryl-substituted-γ-butyrolactones, evidenced by chiral HPLC separation and by chiroptical spectroscopies.

作者信息

Rossi Daniela, Nasti Rita, Collina Simona, Mazzeo Giuseppe, Ghidinelli Simone, Longhi Giovanna, Memo Maurizio, Abbate Sergio

机构信息

Department of Drug Sciences, Medicinal Chemistry and Pharmaceutical Technology Section, University of Pavia, Viale Taramelli 12, 27100 Pavia, Italy.

Department of Drug Sciences, Medicinal Chemistry and Pharmaceutical Technology Section, University of Pavia, Viale Taramelli 12, 27100 Pavia, Italy.

出版信息

J Pharm Biomed Anal. 2017 Sep 10;144:41-51. doi: 10.1016/j.jpba.2017.01.007. Epub 2017 Jan 5.

Abstract

The enantiomers of four chiral 3-aryl-substituted-γ-butyrolactones, key intermediates for the preparation of compounds of pharmaceutical interest, were successfully isolated by enantioselective chromatography, employing the Chiralpak AD-H chiral stationary phase. For all compounds the same elution order was observed, as monitored by a full set of chiroptical methods that we employed, namely ORD (optical rotatory dispersion), ECD (electronic circular dichroism, or CD in the UV range), and VCD (vibrational circular dichroism, or CD in the IR range). By density functional theory (DFT) calculations we were able to determine that the first eluted enantiomer has (S) absolute configuration in all four cases. We were able to justify the elution order by molecular docking calculations for all four enantiomeric pairs and suitable modeling of the stationary and mobile phases of the employed columns. The optimal performance of the chiroptical spectroscopies and of the DFT calculations allows us to formulate a lactone chirality rule out of the CO stretching region of the VCD spectra.

摘要

四种手性3-芳基取代的γ-丁内酯是制备具有药学意义化合物的关键中间体,通过使用Chiralpak AD-H手性固定相的对映体选择性色谱成功分离出了它们的对映体。对于所有化合物,我们采用的一整套手性光学方法(即ORD(旋光色散)、ECD(电子圆二色性,或紫外范围内的CD)和VCD(振动圆二色性,或红外范围内的CD))监测到的洗脱顺序相同。通过密度泛函理论(DFT)计算,我们能够确定在所有四种情况下,第一个洗脱的对映体具有(S)绝对构型。我们能够通过对所有四对对映体进行分子对接计算以及对所用色谱柱的固定相和流动相进行合适的建模来解释洗脱顺序。手性光学光谱和DFT计算的最佳性能使我们能够从VCD光谱的CO伸缩区域制定出内酯手性规则。

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