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一种带有吡唑啉酮基团的新型三嗪,能够螯合铜、镍和锌。

A new triazine bearing a pyrazolone group capable of copper, nickel, and zinc chelation.

作者信息

Yepremyan Akop, Mehmood Arshad, Brewer Samantha, Barnett Madalyn M, Janesko Benjamin G, Akkaraju Giridhar, Simanek Eric E, Green Kayla N

机构信息

Department of Chemistry and Biochemistry, Texas Christian University, Fort Worth, Texas 76129.

Department of Biology, Texas Christian University, Fort Worth, Texas 76129.

出版信息

RSC Adv. 2018;8(6):3024-3035. doi: 10.1039/c7ra09459k. Epub 2018 Jan 16.

Abstract

Interests in inorganic applications of triazines is growing. In this report, metal complexes of copper(II), nickel(II), and zinc(II) and a novel class of chelates comprising a triazine ring substituted with a hydrazine group and pyralozone are evaluated using spectrophotometric methods, single crystal X-ray diffractometry, and electrochemistry. Complexes with copper(II) include a single chelate and two chloride atoms to satisfy a trigonal bipryamidal coordination sphere. The nickel(II) and zinc(II) complexes are comprised of two chelating groups that adopt an octahedral geometry around the metal ion. Irreversible redox activity was observed with the copper(II) complex but no redox activity was observed with the ligand alone or zinc(II) and nickel(II) complexes. Use of the coumarin carboxylic acid assay shows that the ligand motif is capable of preventing redox cycling of copper in biological conditions and could thus serve as an antioxidant preventative agent. Cellular toxicity studies show that the new triazine molecule could have therapeutic applications in the µM concentration range based on the measured EC=1.183±2 mM. Altogether this work shows that by merging triazine chemistry into inorganic compounds, there is potential to explore a range applications thanks to the new architecture.

摘要

三嗪在无机应用方面的研究兴趣日益浓厚。在本报告中,使用分光光度法、单晶X射线衍射法和电化学方法对铜(II)、镍(II)和锌(II)的金属配合物以及一类新型螯合物进行了评估,这类螯合物包含一个被肼基和吡唑啉酮取代的三嗪环。铜(II)的配合物包括一个单一螯合物和两个氯原子,以满足三角双锥配位球。镍(II)和锌(II)的配合物由两个螯合基团组成,它们在金属离子周围采用八面体几何构型。观察到铜(II)配合物具有不可逆的氧化还原活性,但单独的配体或锌(II)和镍(II)配合物未观察到氧化还原活性。香豆素羧酸测定法的使用表明,配体基序能够在生物条件下防止铜的氧化还原循环,因此可作为抗氧化预防剂。细胞毒性研究表明,基于测得的EC = 1.183±2 mM,新的三嗪分子在微摩尔浓度范围内可能具有治疗应用。总之,这项工作表明,通过将三嗪化学融入无机化合物中,由于新的结构,有潜力探索一系列应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2a7f/9077575/e68c15ea7d40/c7ra09459k-c1.jpg

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