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Investigation of Antibacterial Activity of Two Kinds of Novel Schiff Bases on Escherichia coli by Microcalorimetry
作者姓名:朱军成  刘义  黄伟国  周博  殷俊
作者单位:Department of Chemical Biology College of Chemistry and Molecular Sciences,Wuhan University,Wuhan,Hubei 430072,China,Department of Chemical Biology,College of Chemistry and Molecular Sciences,Wuhan University,Wuhan,Hubei 430072,China,Department of Chemistry and Centre for Advanced Luminescence Materials,Hong Kong Baptist University,Waterloo Road,Kowloon Tong,Hong Kong,China,Department of Chemical Biology,College of Chemistry and Molecular Sciences,Wuhan University,Wuhan,Hubei 430072,China,Department of Chemical Biology,College of Chemistry and Molecular Sciences,Wuhan University,Wuhan,Hubei 430072,China
基金项目:Project supported by the National Natural Science Foundation of China(Nos.30570015 and 20373051),the Teaching and Research Award Program for Outstanding Young Professors of High Education Institutes,Ministry of Education,China(2001).
摘    要:The microcalorimetric method was used to study the antibacterial activity of two newly synthesized Schiff basecompounds(H_2L~(3')and H_2L~3)on Escherichia coli,trying to obtain the action on both of multiplying bacteria andnon-multiplying bacteria at one experiment.The metabolic power-time curves of the bacteria treated with the com-pounds were obtained,and the thermokinetic parameters were analyzed,from which the antibacterial activities ofthese compounds were evaluated.The results showed that both of the two compounds have good activity on aerobicmultiplying metabolism of E.coli,with the value of IC_(50)75.8 and 168.8 mg/L respectively,but have not effectiveaction on fermentation metabolism of E.coli.The action of the compounds on the non-multiplying metabolism wasinvestigated by taking the heat output of E.coli in the stationary phase as the guideline of the activity.The value ofMSC_(50)(minimum stationary-cidal concentration 50)of them is 118 and 187.5 mg/L,respectively.So,H_2L~(3')hasstronger antibacterial action on E.coli than H_2L~3 either for multiplying bacteria or non-multiplying bacteria,andtheir activity on the aerobic multiplying bacteria of E.coli is mainly shown.It does strongly suggest that the calo-rimetric method should play an important role in the fight against the drug-resistant bacteria.


Investigation of Antibacterial Activity of Two Kinds of Novel Schiff Bases on Escherichia coli by Microcalorimetry
ZHU Jun-Chenga LIU Yi.Investigation of Antibacterial Activity of Two Kinds of Novel Schiff Bases on Escherichia coli by Microcalorimetry[J].Chinese Journal of Chemistry,2006(10).
Authors:ZHU Jun-Chenga LIU Yi
Institution:ZHU Jun-Cheng~a LIU Yi~
Abstract:The microcalorimetric method was used to study the antibacterial activity of two newly synthesized Schiff base compounds(H_2L~(3')and H_2L~3)on Escherichia coli,trying to obtain the action on both of multiplying bacteria and non-multiplying bacteria at one experiment.The metabolic power-time curves of the bacteria treated with the com- pounds were obtained,and the thermokinetic parameters were analyzed,from which the antibacterial activities of these compounds were evaluated.The results showed that both of the two compounds have good activity on aerobic multiplying metabolism of E.coli,with the value of IC_(50)75.8 and 168.8 mg/L respectively,but have not effective action on fermentation metabolism of E.coli.The action of the compounds on the non-multiplying metabolism was investigated by taking the heat output of E.coli in the stationary phase as the guideline of the activity.The value of MSC_(50)(minimum stationary-cidal concentration 50)of them is 118 and 187.5 mg/L,respectively.So,H_2L~(3')has stronger antibacterial action on E.coli than H_2L~3 either for multiplying bacteria or non-multiplying bacteria,and their activity on the aerobic multiplying bacteria of E.coli is mainly shown.It does strongly suggest that the calo- rimetric method should play an important role in the fight against the drug-resistant bacteria.
Keywords:microcalorimetric method  Schiff base  antibacterial activity  non-multiplying  multiplying
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