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基于 Mn(ii)/Mn(iii) 卟啉的生物相容性氧化还原 MRI 探针。

A biocompatible redox MRI probe based on a Mn(ii)/Mn(iii) porphyrin.

机构信息

Department of Chemistry, Faculty of Science and Technology, University of Coimbra, Rua Larga, 3004-535, Coimbra, Portugal.

出版信息

Dalton Trans. 2019 Mar 5;48(10):3249-3262. doi: 10.1039/c8dt04775h.

Abstract

For the development of redox responsive MRI probes based on the MnIII/MnII couple, stable complexation of both reduced and oxidized forms of the metal ion and appropriate tuning of the redox potential in the biologically relevant range are key elements. The water soluble fluorinated Mn-porphyrin derivative Mn-3 satisfies both requirements. In aqueous solutions, it can reversibly switch between MnIII/MnII oxidation states. In the presence of ascorbic acid or β-mercaptoethanol, the MnIII form undergoes reduction, which is slowly but fully reversed in the presence of air oxygen. A UV-Vis kinetic study of MnIII/MnII reduction under oxygen-free conditions yielded second-order rate constants, k2, of 46.1 M-1 s-1 and 13.8 M-1 s-1 for the reaction with ascorbic acid and β-mercaptoethanol, respectively. This could correspond, in the absence of oxygen, to a half-life of a few minutes in blood plasma and a few seconds in circulating immune cells where ascorbic acid reaches 20-40 μM and a few mM concentrations, respectively. In contrast to expectations based on the redox potential, reduction with glutathione or cysteine does not occur. It is prevented by the coordination of the glutathione carboxylate group(s) to MnIII in the axial position, as was evidenced by NMR data. Therefore, MnIII-3 acts as an ascorbate specific turn-on MRI probe, which in turn can be re-oxidized by oxygen. The relaxivity increase from the oxidized to the reduced form is considerably improved at medium frequencies (up to 80 MHz) with respect to the previously studied Mn-TPPS4 analogues; at 20 MHz, it amounts to 150%. No in vitro cytotoxicity is detectable for Mn-3 in the typical MRI concentration range. Finally, 19F NMR resonances of MnIII-3 are relatively sharp which could open further opportunities to exploit such complexes as paramagnetic 19F NMR probes.

摘要

为了开发基于 MnIII/MnII 配合物的氧化还原响应性 MRI 探针,稳定配合物中金属离子的还原和氧化形式以及在生物相关范围内适当调整氧化还原电位是关键要素。水溶性氟化锰卟啉衍生物 Mn-3 满足这两个要求。在水溶液中,它可以在 MnIII/MnII 氧化态之间可逆地切换。在抗坏血酸或β-巯基乙醇存在下,MnIII 形式发生还原,在存在空气氧气的情况下,还原反应缓慢但完全逆转。在无氧条件下进行的 MnIII/MnII 还原的紫外可见动力学研究得到了与抗坏血酸和β-巯基乙醇反应的二级速率常数 k2 分别为 46.1 M-1 s-1 和 13.8 M-1 s-1。在没有氧气的情况下,这对应于在血浆中的半衰期为数分钟,在循环免疫细胞中的半衰期为数秒,其中抗坏血酸分别达到 20-40 μM 和几 mM 浓度。与基于氧化还原电位的预期相反,与谷胱甘肽或半胱氨酸的还原反应不会发生。这是由于谷胱甘肽羧酸盐基团在轴向位置与 MnIII 的配位所阻止的,这一点通过 NMR 数据得到了证明。因此,MnIII-3 作为抗坏血酸特异性的开启 MRI 探针,它可以被氧气重新氧化。与之前研究的 Mn-TPPS4 类似物相比,从中氧化态到还原态的弛豫率增加在中等频率(高达 80 MHz)下得到了显著改善;在 20 MHz 下,它的增加幅度为 150%。在典型的 MRI 浓度范围内,Mn-3 没有可检测到的体外细胞毒性。最后,MnIII-3 的 19F NMR 共振相对尖锐,这可能为进一步利用此类配合物作为顺磁 19F NMR 探针提供机会。

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