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本文引用的文献

1
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RSC Adv. 2020 Mar 25;10(21):12272-12288. doi: 10.1039/d0ra01348j. eCollection 2020 Mar 24.
2
Drug Discovery for Using Structure-Based Computer-Aided Drug Design Approach.基于结构的计算机辅助药物设计方法在药物发现中的应用。
Int J Mol Sci. 2021 Dec 9;22(24):13259. doi: 10.3390/ijms222413259.
3
Novel phenanthridine amide analogs as potential anti-leishmanial agents: In vitro and in silico insights.新型菲啶酰胺类似物作为潜在的抗利什曼原虫药物:体外和计算机模拟研究
Bioorg Chem. 2021 Dec;117:105414. doi: 10.1016/j.bioorg.2021.105414. Epub 2021 Oct 9.
4
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Eur J Med Chem. 2021 Nov 5;223:113627. doi: 10.1016/j.ejmech.2021.113627. Epub 2021 Jun 15.
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Synthesis, Characterization, and Biological Evaluation of New Derivatives Targeting MbtI as Antitubercular Agents.靶向MbtI的新型抗结核药物衍生物的合成、表征及生物学评价
Pharmaceuticals (Basel). 2021 Feb 13;14(2):155. doi: 10.3390/ph14020155.
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菲啶酰胺和1,2,3-三唑类似物针对……的设计、合成及生物学评价

Design, synthesis and biological evaluation of phenanthridine amide and 1,2,3-triazole analogues against .

作者信息

Nandikolla Adinarayana, Khetmalis Yogesh Mahadu, Venkata Siva Kumar Boddupalli, Chandu Ala, Karan Kumar Banoth, Shetye Gauri, Ma Rui, Murugesan Sankaranarayanan, Franzblau Scott G, Chandra Sekhar Kondapalli Venkata Gowri

机构信息

Department of Chemistry, Birla Institute of Technology and Science, Pilani Hyderabad Campus, Jawahar Nagar, Kapra Mandal Hyderabad - 500078 Telangana India

Medicinal Chemistry Research Laboratory, Department of Pharmacy, Birla Institute of Technology and Science Pilani Pilani Campus Pilani-333031 Rajasthan India.

出版信息

RSC Med Chem. 2023 Jun 2;14(8):1549-1561. doi: 10.1039/d3md00115f. eCollection 2023 Aug 16.

DOI:10.1039/d3md00115f
PMID:37593576
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC10429663/
Abstract

The phenanthridine core exhibits antitubercular activity, according to reports from the literature. Several 1,2,3-triazole-based heterocyclic compounds are well-known antitubercular agents. A series of twenty-five phenanthridine amide and 1,2,3-triazole derivatives are synthesized and analyzed using ESI-MS, HNMR, and CNMR on the basis of our earlier findings that phenanthridine and 1,2,3-triazoles shown good antitubercular activity. The synthesized phenanthridine amide and 1,2,3-triazole analogues were tested against H37Rv and minimum inhibitory concentration (MIC) values were determined utilizing non-replicating and replicating low-oxygen recovery assay (LORA) and microplate Alamar Blue assay (MABA) methodologies. The phenanthridine amide derivative PA-01 had an MIC of 61.31 μM in MABA and 62.09 μM in the LORA technique, showing intense anti-TB activity. Amongst the phenanthridine triazole derivatives, PT-09, with MICs of 41.47 and 78.75 μM against the tested strain of Mtb in both MABA and LORA was the most active one. The final analogues' drug-likeness is predicted using absorption, distribution, metabolism, excretion, and toxicity (ADMET) studies. The most active compounds PA-01 and PT-09 were further subjected to docking studies. Using the Glide module of Schrodinger, molecular docking analysis was carried out to estimate the plausible binding pattern of PA-01 and PT-09 at the active site of DNA topoisomerase II (PDB code: ). Further, molecular dynamics studies of PA-01 and PT-09 were also carried out.

摘要

根据文献报道,菲啶核心具有抗结核活性。几种基于1,2,3-三唑的杂环化合物是众所周知的抗结核药物。基于我们早期发现菲啶和1,2,3-三唑具有良好的抗结核活性,合成了一系列25种菲啶酰胺和1,2,3-三唑衍生物,并使用电喷雾电离质谱(ESI-MS)、核磁共振氢谱(HNMR)和核磁共振碳谱(CNMR)进行分析。对合成的菲啶酰胺和1,2,3-三唑类似物进行了针对H37Rv的测试,并利用非复制和复制低氧恢复试验(LORA)以及微孔板阿拉玛蓝试验(MABA)方法测定了最低抑菌浓度(MIC)值。菲啶酰胺衍生物PA-01在MABA中的MIC为61.31μM,在LORA技术中的MIC为62.09μM,显示出强烈的抗结核活性。在菲啶三唑衍生物中,PT-09在MABA和LORA中对测试的结核分枝杆菌菌株的MIC分别为41.47和78.75μM,是活性最高的一种。使用吸收、分布、代谢、排泄和毒性(ADMET)研究预测了最终类似物的类药性质。对活性最高的化合物PA-