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  2. Identification of novel and potent triazoles targeting CYP51 for antifungal: Design, synthesis, and biological study

Identification of novel and potent triazoles targeting CYP51 for antifungal: Design, synthesis, and biological study

  • Eur J Med Chem. 2024 Oct 5:280:116942. doi: 10.1016/j.ejmech.2024.116942.
Yixiang Sun 1 Rongrong Liu 1 Zirui Luo 1 Jiachen Zhang 1 Zixuan Gao 1 Rui Liu 1 Nian Liu 1 Haoyu Zhang 1 Kejian Li 1 Xudong Wu 1 Wenbo Yin 1 Qiaohua Qin 1 Xin Su 2 Dongmei Zhao 3 Maosheng Cheng 1
Affiliations

Affiliations

  • 1 Key Laboratory of Structure-Based Drug Design and Discovery, Ministry of Education, School of Pharmaceutical Engineering, Shenyang Pharmaceutical University, 103 Wenhua Road, Shenhe District, Shenyang, 110016, PR China.
  • 2 The School of Life Science and Biopharmaceutical, Shenyang Pharmaceutical University, 103 Wenhua Road, Shenhe District, Shenyang, 110016, PR China.
  • 3 Key Laboratory of Structure-Based Drug Design and Discovery, Ministry of Education, School of Pharmaceutical Engineering, Shenyang Pharmaceutical University, 103 Wenhua Road, Shenhe District, Shenyang, 110016, PR China. Electronic address: zhaodm@syphu.edu.cn.
Abstract

Invasive Fungal infections (IFIs) are emerging as a serious infectious disease worldwide. Due to the lack of effective Antifungal drugs and serious drug resistance, the number of people with low immunity is increasing, leading to high morbidity and mortality. Azole drugs targeting CYP51 are widely used in the treatment of invasive Fungal infections. By analyzing representative azole Antifungal drugs, the characteristics of pharmacophore were summarized. The binding mode of lead compound Iodiconazole was analyzed, and it was found that the narrow hydrophobic cavity was not fully occupied. Therefore, a series of triazole compounds were designed and synthesized by fragment growth strategy. Most of the compounds showed strong inhibitory activity against pathogenic fungi, among which compound A33 showed excellent inhibitory activity against pathogenic fungi and drug-resistant strains. In addition, the preferred compound A33 can prevent Fungal phase transition, the formation of Fungal biofilm, and show satisfactory fungicidal activity. In addition, the compound A33 was almost non-toxic to mammalian HUVEC cell. These results strongly suggested that compound A33 was worth further investigation as a potential azole inhibitor.

Keywords

Antifungal activity; CYP51 inhibitor; Drug-resistant; Triazole.

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