期刊文献+

Anti-uropathogenic activity, drug likeness, physicochemical and molecular docking assessment of(E-)-N'-(substituted-benzylidene)-2-(quinolin-8-yloxy) acetohydrazide

Anti-uropathogenic activity, drug likeness, physicochemical and molecular docking assessment of(E-)-N'-(substituted-benzylidene)-2-(quinolin-8-yloxy) acetohydrazide
下载PDF
导出
摘要 Objective: To deal with the anti-uropathogenic and in silico screening of(E-)-N'-(substitutedbenzylidene)-2-(quinolin-8-yloxy)acetohydrazide analogues in order to search the potential anti-uropathogenic agents.Methods: Three(E-)-N'-(substituted-benzylidene)-2-(quinolin-8-yloxy)acetohydrazide analogues were synthesized. Structure elucidation was done using various spectroscopic techniques including infrared radiation, 1hydrogen-nuclear magnetic resonance, carbon-13 nuclear magnetic resonance, etc. Physicochemical score, bioactivity score and molecular docking studies were carried out using Lipinski's rule of five, Molinspiration(web based software), Autodock 4.2 tools. In vitro anti-uropathogenic activity was carried out against four pathogens named as Staphylococcus aureus(S. aureus), Staphylococcus epidermidis, Proteus mirabilis and Escherichia coli by disc diffusion method and macro-dilution test following their morphological and biochemical characterization.Results: The formation of(E-)-N'-(substituted-benz ylidene)-2-(quinolin-8-yloxy)acetohydrazide is confirmed from the spectroscopic results. All the compounds were found in compliance with Lipinski's rule of five and exhibited bioactivity score from-0.50 to 0.00. Docking results revealed that compound-1 is forming one hydrogen bond with TYR 576 and two hydrogen bond with GLU 569, while compound-2 is forming one hydrogen bond with ARG 599, and compound-3 forming 0 hydrogen bond. The anti-uropathogenic evaluation exhibited that compound one exhibited better activity against S. aureus, while it was found to possess moderate to good activity against both Gram-positive bacteria and Gram-negative bacteria excluding S. aureus.Conclusions: Our study revealed that compound one exhibited better activity than the standard in case of S. aureus and moderate to good activity against rest of the pathogens. Molecular docking, physicochemical and bioactivity studies strongly supported the experimental results. From the well obtained results it was concluded that compound-1 can lead as potential antiuropathogenic agents. Objective: To deal with the anti-uropathogenic and in silico screening of(E-)-N’-(substitutedbenzylidene)-2-(quinolin-8-yloxy)acetohydrazide analogues in order to search the potential anti-uropathogenic agents.Methods: Three(E-)-N’-(substituted-benzylidene)-2-(quinolin-8-yloxy)acetohydrazide analogues were synthesized. Structure elucidation was done using various spectroscopic techniques including infrared radiation, 1hydrogen-nuclear magnetic resonance, carbon-13 nuclear magnetic resonance, etc. Physicochemical score, bioactivity score and molecular docking studies were carried out using Lipinski’s rule of five, Molinspiration(web based software), Autodock 4.2 tools. In vitro anti-uropathogenic activity was carried out against four pathogens named as Staphylococcus aureus(S. aureus), Staphylococcus epidermidis, Proteus mirabilis and Escherichia coli by disc diffusion method and macro-dilution test following their morphological and biochemical characterization.Results: The formation of(E-)-N’-(substituted-benz ylidene)-2-(quinolin-8-yloxy)acetohydrazide is confirmed from the spectroscopic results. All the compounds were found in compliance with Lipinski’s rule of five and exhibited bioactivity score from-0.50 to 0.00. Docking results revealed that compound-1 is forming one hydrogen bond with TYR 576 and two hydrogen bond with GLU 569, while compound-2 is forming one hydrogen bond with ARG 599, and compound-3 forming 0 hydrogen bond. The anti-uropathogenic evaluation exhibited that compound one exhibited better activity against S. aureus, while it was found to possess moderate to good activity against both Gram-positive bacteria and Gram-negative bacteria excluding S. aureus.Conclusions: Our study revealed that compound one exhibited better activity than the standard in case of S. aureus and moderate to good activity against rest of the pathogens. Molecular docking, physicochemical and bioactivity studies strongly supported the experimental results. From the well obtained results it was concluded that compound-1 can lead as potential antiuropathogenic agents.
机构地区 College of Medicine
出处 《Asian Pacific Journal of Tropical Biomedicine》 SCIE CAS 2015年第8期657-664,共8页 亚太热带生物医学杂志(英文版)
基金 Supported by College of Medicine,Shaqra University,AlDwadmi,Kingdom of Saudi Arabia(Grant No.SG/RD/001/2014)
关键词 Anti-uropathogenic Bioactivity SCORE PHYSICOCHEMICAL properties synthesis Molecular DOCKING studies Anti-uropathogenic Bioactivity score Physicochemical properties synthesis Molecular docking studies
  • 相关文献

参考文献20

  • 1Mohammad Arshad,Abdul Roouf Bhat,Smritee Pokharel,Ji-Eun Kim,Eun Ju Lee,Fareeda Athar,Inho Choi.Synthesis, characterization and anticancer screening of some novel piperonyl–tetrazole derivatives[J]. European Journal of Medicinal Chemistry . 2014
  • 2Jingwen Ren,Xiangrong Liu,Zaiwen Yang,Shunsheng Zhao.Thermal properties and DNA-binding studies of a new kind of acyl hydrazone compounds containing imidazole ring[J]. Thermochimica Acta . 2014
  • 3Magdy M. Bekheit,Amira R. El-Shobaky,Mohamed T. Gad Allah.Synthesis, spectroscopic characterization and antimicrobial studies of some metal complexes with 2-acetylpyridine phenoxyacetyl hydrazone (HAPPA)[J]. Arabian Journal of Chemistry . 2013
  • 4Vijaylakshmi Tirkey,Sasmita Mishra,Hirak R. Dash,Surajit Das,Bibhukalyan Prasad Nayak,Shaikh M. Mobin,Saurav Chatterjee.Synthesis, characterization and antibacterial studies of ferrocenyl and cymantrenyl hydrazone compounds[J]. Journal of Organometallic Chemistry . 2013
  • 5Adam M. Pieczonka,Aleksandra Strzelczyk,Beata Sadowska,Grzegorz Mlostoń,Pawe? St?czek.Synthesis and evaluation of antimicrobial activity of hydrazones derived from 3-oxido-1 H -imidazole-4-carbohydrazides[J]. European Journal of Medicinal Chemistry . 2013
  • 6Amita Verma.Lead finding from Phyllanthus debelis with hepatoprotective potentials[J]. Asian Pacific Journal of Tropical Biomedicine . 2012 (3)
  • 7Abdul R. Bhat,Tazeem,Amir Azam,Inho Choi,Fareeda Athar.3-(1,3,4-Thiadiazole-2-yl)quinoline derivatives: Synthesis, characterization and anti-microbial activity[J]. European Journal of Medicinal Chemistry . 2011 (7)
  • 8A.M. Vijesh,Arun M. Isloor,Sandeep Telkar,T. Arulmoli.Molecular docking studies of some new imidazole derivatives for antimicrobial properties[J]. Arabian Journal of Chemistry . 2011
  • 9Vivek Asati,Nitendra K. Sahu,Ankita Rathore,Satish Sahu,D.V. Kohli.Synthesis, characterization and antimicrobial evaluation of some 1,3-benzothiazole-2-yl-hydrazone derivatives[J]. Arabian Journal of Chemistry . 2011
  • 10Faisal Hayat,Emma Moseley,Attar Salahuddin,Robyn L. Van Zyl,Amir Azam.Antiprotozoal activity of chloroquinoline based chalcones[J]. European Journal of Medicinal Chemistry . 2011 (5)

共引文献2

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部