<p>In this study, a novel series of diastereomerically enriched lactic-derived pyrazoline compounds <b>7(a–l)</b> were synthesized via cyclocondensation of (<i>S</i>)-lactic Hydrazide with various substituted Chalcones under basic conditions. The methodology benefits from the inherent chirality of (<i>S</i>)-ethyl lactate, serving as a chiral precursor, allowing diastereoselectivity in the formation of (<i>S</i>,<i>R</i>)-pyrazoline derivatives. Structural confirmation was achieved using IR, <sup>1</sup>H NMR, <sup>13</sup>C NMR, mass spectroscopic data, and elemental analysis. The proposed stereochemistry of compound <b>7b</b> has been further corroborated by X-ray diffraction study. This selectivity can be related to the stability of (<i>S</i>,<i>R</i>)-pyrazolines versus (<i>S</i>,<i>S</i>)-pyrazoline derivatives, that our DFT calculation method confirmed this idea. The yields of the target compounds ranged from 24 to 63%, with approximately 100% diastereoselectivity giving exclusively the corresponding diastereoisomers that have (<i>R</i>)-configuration of the chiral carbon in their pyrazoline ring moiety. Evaluation of the antibacterial activity revealed that compounds <b>7g</b> (IZD: 12&#xa0;mm, MIC: 264&#xa0;µg/ml) and <b>7j</b> (IZD: 14&#xa0;mm, MIC: 264&#xa0;µg/ ml) exhibited considerable effect against Gram-positive <i>S. aureus</i>. Additionally, compound <b>7h</b> (IZD: 10&#xa0;mm, MIC: 512&#xa0;µg/ml) demonstrated activity against <i>P. aeruginosa</i> and <i>A. baumannii</i>.</p>

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Diastereoselective synthesis of novel (S)-lactic pyrazoline derivatives and investigation of antibacterial capabilities

  • Maryam Gholami,
  • Gholamhassan Imanzadeh,
  • Farhad Kabiri Esfahani,
  • Morteza Karami-Zarandi,
  • Amir Nasser Shamkhali

摘要

In this study, a novel series of diastereomerically enriched lactic-derived pyrazoline compounds 7(a–l) were synthesized via cyclocondensation of (S)-lactic Hydrazide with various substituted Chalcones under basic conditions. The methodology benefits from the inherent chirality of (S)-ethyl lactate, serving as a chiral precursor, allowing diastereoselectivity in the formation of (S,R)-pyrazoline derivatives. Structural confirmation was achieved using IR, 1H NMR, 13C NMR, mass spectroscopic data, and elemental analysis. The proposed stereochemistry of compound 7b has been further corroborated by X-ray diffraction study. This selectivity can be related to the stability of (S,R)-pyrazolines versus (S,S)-pyrazoline derivatives, that our DFT calculation method confirmed this idea. The yields of the target compounds ranged from 24 to 63%, with approximately 100% diastereoselectivity giving exclusively the corresponding diastereoisomers that have (R)-configuration of the chiral carbon in their pyrazoline ring moiety. Evaluation of the antibacterial activity revealed that compounds 7g (IZD: 12 mm, MIC: 264 µg/ml) and 7j (IZD: 14 mm, MIC: 264 µg/ ml) exhibited considerable effect against Gram-positive S. aureus. Additionally, compound 7h (IZD: 10 mm, MIC: 512 µg/ml) demonstrated activity against P. aeruginosa and A. baumannii.