Exo- or Endo- 1H-Pyrazole Metal Coordination Modulated by Polyamine Chain length in [1+1] Condensation Azamacrocycles. Binuclear Complexes with Remarkable SOD activity

IF 3.5 3区 化学 Q2 CHEMISTRY, INORGANIC & NUCLEAR Dalton Transactions Pub Date : 2024-07-02 DOI:10.1039/d4dt01236d
Irene Bonastre-Sabater, Alberto Lopera, Álvaro Martínez-Camarena, Salvador Blasco, Antonio Doménech-Carbó, Hermas Jimenez, Begoña Verdejo, Enrique García-España, Maria Paz Clares
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Abstract

The Cu2+ complexes of three [1+1] azacyclophane macrocycles having the 1H-pyrazole ring as spacer and the pentaamine 1,5,8,11,15-pentaazadecane (L1) or the hexaamines 1,5,8,12,15,19-hexaazanonadecane (L2) and 1,5,9,13,17,21-hexaazaheneicosane (L3) as bridges show endo coordination of the pyrazolate bridge giving rise to discrete monomeric species. Previously reported pyrazolacyclophanes evidenced, however, exo-coordination with formation of dimeric species of 2:2, 3:2 or even 4:2 Cu2+:L stoichiometry. The complexes have been characterized in solution using potentiometric studies, UV-Vis spectroscopy, paramagnetic NMR, cyclic voltammetry and mass spectrometry. The measurements show that all three ligands have as many protonation steps in water as secondary amines are in the bridge, while they are able to form both mono- and binuclear Cu2+ species. The crystal structures of the complexes [Cu(HL1)Br]Br(1+x)(ClO4)(1-x)·yH2O (1) and [Cu2(H-1L2)Cl(ClO4)](ClO4)·H2O·C2H5OH (2) have been solved by X-ray diffraction studies. In 1 the metal ion lies at one side of the macrocyclic cavity being coordinated by one nitrogen of the pyrazolate moiety and the three consecutive nitrogen atoms of the polyamine bridge. The other nitrogen of the pyrazole ring is hydrogen-bonded to an amine group. In 2 the two metal ions are interconnected by a pyrazolate bis(monodentate) moiety and complete their coordination spheres with three amines and either a bromide or a perchlorate anion, which occupy the axial positions of distorted square pyramid geometries. Paramagnetic NMR studies of the binuclear complexes confirm the coordination pattern observed in the crystal structures. Cyclic voltamperommetry data show potentials within the adequate range to exhibit superoxide dismutase (SOD) activity. The IC50 values calculated by McCord-Fridovich enzymatic assays show that the binuclear Cu2+ complexes of L2 and L3 have SOD activities that rank amongst the highest ones so far reported
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在 [1+1] 缩合偶氮环中,外向或内向 1H 吡唑金属配位受多胺链长度的调节。具有显著 SOD 活性的双核配合物
以 1H 吡唑环为间隔,五胺 1,5,8,11,15-pentaazadecane (L1) 或六胺 1,5,8、12,15,19-hexaazanonadecane (L2) 和 1,5,9,13,17,21-hexaazaheneicosane (L3) 作为桥,吡唑啉桥的内配位产生了离散的单体。然而,以前报道的吡唑环烷则显示出外配位,形成 2:2、3:2 甚至 4:2 Cu2+:L 配比的二聚物。利用电位测定法、紫外可见光谱法、顺磁性核磁共振法、循环伏安法和质谱法对溶液中的配合物进行了表征。测量结果表明,这三种配体在水中的质子化步骤与仲胺在桥中的质子化步骤一样多,同时它们能够形成单核和双核 Cu2+ 物种。通过 X 射线衍射研究解决了 [Cu(HL1)Br]Br(1+x)(ClO4)(1-x)-yH2O (1) 和 [Cu2(H-1L2)Cl(ClO4)](ClO4)-H2O-C2H5OH (2) 复合物的晶体结构。在 1 中,金属离子位于大环空腔的一侧,与吡唑烷分子的一个氮和多胺桥的三个连续氮原子配位。吡唑环上的另一个氮原子则与一个胺基团氢键连接。在 2 中,两个金属离子通过吡唑烷双(单价)分子相互连接,并与三个胺和一个溴阴离子或一个高氯酸盐阴离子完成配位。双核复合物的顺磁核磁共振研究证实了晶体结构中观察到的配位模式。循环伏安电位数据显示,其电位在足够的范围内,可以显示出超氧化物歧化酶(SOD)的活性。通过麦考德-弗里多维奇(McCord-Fridovich)酶测定法计算的 IC50 值表明,L2 和 L3 的双核 Cu2+ 复合物具有最高的 SOD 活性。
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来源期刊
Dalton Transactions
Dalton Transactions 化学-无机化学与核化学
CiteScore
6.60
自引率
7.50%
发文量
1832
审稿时长
1.5 months
期刊介绍: Dalton Transactions is a journal for all areas of inorganic chemistry, which encompasses the organometallic, bioinorganic and materials chemistry of the elements, with applications including synthesis, catalysis, energy conversion/storage, electrical devices and medicine. Dalton Transactions welcomes high-quality, original submissions in all of these areas and more, where the advancement of knowledge in inorganic chemistry is significant.
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