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首页> 外文期刊>Journal of chromatography, B. Analytical technologies in the biomedical and life sciences >Post-column detection of cadmium chelators by high-performance liquid chromatography using 5,10,15,20-tetraphenyl-21H,23H-porphinetetrasulfonic acid
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Post-column detection of cadmium chelators by high-performance liquid chromatography using 5,10,15,20-tetraphenyl-21H,23H-porphinetetrasulfonic acid

机译:使用5,10,15,20-四苯基-21h,23h-卟啉四磺酸的高效液相色谱柱柱检测镉螯合剂

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Cd(II) is toxic to many species, including humans, because it inactivates a number of enzymes and induces cytopathic effects in the liver, kidney, and skeletal tissues in humans. Metallothionein and glutathione (GSH) play a major role in the protection against Cd(II)-induced toxicity in mammalian cells. In this study, a relatively simple method for detecting trace amounts of Cd(II) chelators was developed by using 5,10,15,20-tetraphenyl-21H,23H-porphinetetrasulfonic acid (TPPS). The TPPS-Cd(II) complex was added to the elutions of high-performance liquid chromatography. The Cd(II) chelators separated by column chromatography were mixed with Cd(II)-bound TPPS (TPPS-Cd(II)). Cd(II) from TPPS-Cd(II) was chelated by the eluted Cd(II) chelators, resulting in the formation of free TPPS. The absorbance of TPPS shifted from 434 nm (TPPS-Cd(II)) to 414 nm (TPPS), and this characteristic shift was used to estimate the quantity and affinity of the Cd(H) chelators. This new method was compared with the bathocuproine disulfonate (BCS) method developed in our previous study. Instead of BCS-Cu(I), TPPS-Cd(II) was used as the colorimetric reagent. The experimental setup of the TPPS-based method is more general, and the preparation of the colorimetric solution is also much simpler than the BCS method. To verify the efficacy of this new method, we determined the actual Cd(II)-chelating ability of GSH in horse blood; the obtained concentration was in good agreement with the previously reported value.
机译:CD(II)对许多物种(包括人类)有毒,因为它灭活了许多酶并在人类中诱导肝脏,肾脏和骨骼组织中的细胞病变作用。 Metallothionein和谷胱甘肽(GSH)在对哺乳动物细胞中的毒性诱导的毒性方面发挥了重要作用。在该研究中,通过使用5,10,15,20-四苯基-21h,23h-卟啉四氢磺酸(TPP)来开发出检测痕量CD(II)螯合剂的相对简单的方法。将TPPS-CD(II)复合物加入高效液相色谱的壳中。用柱色谱分离的CD(II)螯合剂与CD(II)-命令TPP(TPPS-CD(II))混合。来自TPPS-CD(II)的CD(II)被洗脱的CD(II)螯合剂螯合,导致形成自由TPPS。 TPP的吸光度从434nm(TPPS-CD(II))转移到414nm(TPPS),并且使用该特征偏移来估计CD(H)螯合剂的量和亲和力。将该新方法与我们以前的研究中开发的浴缸普罗尼二磺酸盐(BCS)方法进行了比较。代替BCS-Cu(I),使用TPPS-CD(II)作为比色剂。基于TPPS的方法的实验设置更通用,比色溶液的制备比BCS方法更简单。为了验证这种新方法的功效,我们确定了GSH在马血液中的实际CD(II)的能力;获得的浓度与先前报告的价值吻合良好。

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