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1,3,4-噻二唑衍生物作为PI3Ks抑制剂:设计、计算机模拟研究、合成、表征及抗菌评估

1,3,4-thiadiazole derivatives as PI3Ks inhibitor: design, in silico studies, synthesis, characterization, and antimicrobial evaluation.

作者信息

Singh Dharmvir, Kumar Pankaj, Kumar Anoop, Bhosale Vivek V, Sharma Kalicharan, Kumar Deepak, Khatri Ramchander, Hooda Tanuj, Lather Amit

机构信息

Department of Pharmaceutical Chemistry, Ch. Devilal College of Pharmacy, Jagadhri, Haryana, India.

Department of Pharmaceutics, Dharamputra College of Pharmacy, Sonepat, India.

出版信息

Turk J Chem. 2025 Feb 24;49(3):325-335. doi: 10.55730/1300-0527.3732. eCollection 2025.

DOI:10.55730/1300-0527.3732
PMID:40656878
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC12253968/
Abstract

Since PI3Ks are targeted by a variety of bacterial pathogens, they represent a promising target for host-directed immune therapy and may be beneficial in managing persistent bacterial infections. In the present study, computational studies of 5-(pyridin-4-yl)-1,3,4-thiadiazol-2-amine derivatives for phosphoinositide-3-kinases (PI3Ks) inhibitors were carried out using dock scores, Glide scores, and the MMGBSA dG method, with comparison to standard drugs (ofloxacin and fluconazole). A series of 5-(pyridin-4-yl)-1,3,4-thiadiazol-2-amine derivatives (D1-D17) were synthesized and evaluated for their in vitro antimicrobial activity against both gram-positive and gram-negative bacterial strains, as well as fungal strains, using the tube dilution method. The synthesized compounds were characterized based on their physicochemical properties, and spectral data confirmed consistency with the proposed molecular structures. Docking studies, the MMGBSA analyses, and in vitro antimicrobial activity results indicated that compounds D, D, D, and D were the most active against different microbial species and also showed favorable docking results in comparison with the PDB ligand and standard antimicrobial drugs (ofloxacin and fluconazole). This study highlights the potential of these compounds for future in vivo antimicrobial and anticancer investigations.

摘要

由于PI3K是多种细菌病原体的作用靶点,它们是宿主导向免疫治疗的一个有前景的靶点,可能有助于控制持续性细菌感染。在本研究中,使用对接分数、Glide分数和MMGBSA dG方法对5-(吡啶-4-基)-1,3,4-噻二唑-2-胺衍生物作为磷酸肌醇-3-激酶(PI3K)抑制剂进行了计算研究,并与标准药物(氧氟沙星和氟康唑)进行了比较。合成了一系列5-(吡啶-4-基)-1,3,4-噻二唑-2-胺衍生物(D1-D17),并采用试管稀释法评估了它们对革兰氏阳性和革兰氏阴性细菌菌株以及真菌菌株的体外抗菌活性。根据合成化合物的物理化学性质对其进行了表征,光谱数据证实与所提出的分子结构一致。对接研究、MMGBSA分析和体外抗菌活性结果表明,化合物D、D、D和D对不同微生物种类的活性最强,与PDB配体和标准抗菌药物(氧氟沙星和氟康唑)相比,对接结果也较好。本研究突出了这些化合物在未来体内抗菌和抗癌研究中的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9252/12253968/9f638ebfe64e/tjc-49-03-325f4.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9252/12253968/fdc841f3fa4c/tjc-49-03-325f1.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9252/12253968/bd20d13faf67/tjc-49-03-325f2.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9252/12253968/a44a5698883e/tjc-49-03-325f3.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9252/12253968/9f638ebfe64e/tjc-49-03-325f4.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9252/12253968/fdc841f3fa4c/tjc-49-03-325f1.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9252/12253968/bd20d13faf67/tjc-49-03-325f2.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9252/12253968/a44a5698883e/tjc-49-03-325f3.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9252/12253968/9f638ebfe64e/tjc-49-03-325f4.jpg

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