Synthesis and microcalorimetric determination of the bioactivities of a new Schiff base and its bismuth(III) complex derived from o-vanillin and 2,6-pyridinediamine

被引:0
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作者
Xu Li
Chuan-Hua Li
Jian-Hong Jiang
Hui-Wen Gu
De-Liang Wei
Li-Juan Ye
Ji-Lin Hu
Sheng-Xiong Xiao
Dong-Cai Guo
Xia Li
Hui Zhang
Qiang-Guo Li
机构
[1] Xiangnan University,Hunan Provincial Key Laboratory of Xiangnan Rare
[2] Yangtze University,Precious Metals Compounds and Applications, College of Chemistry Biology and Environmental Engineering
[3] Hunan University,College of Chemistry and Environmental Engineering
关键词
Microcalorimetry; Bioactivities; Thermokinetics; Schiff base bismuth(III) complex;
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摘要
In this work, a new Schiff base [N,N′-bis(2-hydroxy-3-methoxyphenylmethylidene)-2,6-pyridinediamine, C21H19N3O4] and its bismuth(III) complex [Bi(C21H17N3O4)]Cl·2H2O were synthesized with o-vanillin and 2,6-pyridinediamine in ethanol and THF solvent, respectively. The compositions and structures of the two synthetic compounds were characterized by elemental analysis, chemical analysis, spectrum analysis (including MS, FT-IR, NMR, and UV–Vis), and thermogravimetric analysis. The thermogenic curves for the growth metabolism of Helicobacter pylori (H. pylori) and Schizosaccharomyces pombe (S. pombe) treated by different concentrations of the two synthetic compounds were determined by isothermal heat conduction microcalorimetry at 37.00 and 32.00 °C, respectively. Based on the thermogenic curves, some important thermokinetic parameters including the microbial growth rate constant (k), inhibition ratio (I), and half inhibition concentration (IC50) were calculated. The obtained results revealed that the Schiff base stimulated the growth of H. pylori, while the complex inhibited its growth. By contrast, both the Schiff base and the complex inhibited the growth of S. pombe, but the inhibitory effect of the complex was stronger than that of the Schiff base.
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页码:1767 / 1776
页数:9
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