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New PEG-ylated Mn(III) porphyrins approaching catalytic activity of SOD enzyme

机译:接近SOD酶催化活性的新型PEG化Mn(III)卟啉

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Two new tri(ethyleneglycol)-derivatized Mn(III) porphyrins were synthesized with the aim of increasing their bioavailability, and blood-circulating half-life. These are Mn(III) tetrakis(N-(1-(2-(2-(2-methoxyethoxy)ethoxy)ethyl)pyridinium-2-yl)porphyrin, MnTTEG-2-PyP5+ and Mn(III) tetrakis(N,N'-di(1-(2-(2-(2-methoxyethoxy)ethoxy)ethyl)imidazolium-2-yl)porphyrin, MnTDTEG-2-ImP(5+). Both porphyrins have ortho pyridyl or di-ortho imidazolyl electron-withdrawing substituents at meso positions of the porphyrin ring that assure highly positive metal centered redox potentials, E-1/2 = +250 mV vs. NHE for MnTTEG-2-PyP5+ and E-1/2 = + 412 mV vs. NHE for MnTDTEG-2-ImP(5+). As expected, from established E-1/2 vs. log k(cat)(O-2(center dot-)) structure-activity relationships for metalloporphyrins (Batinic-Haberle et al., Inorg. Chem., 1999, 38, 4011), both compounds exhibit higher SOD-like activity than any meso-substituted Mn(III) porphyrins-based SOD mimic thus far, log k(cat) = 8.11 (MnTTEG-2-PyP5+) and log k(cat) = 8.55 (MnTDTEG-2-ImP(5+)), the former being only a few-fold less potent in disproportionating O-2(center dot-) than the SOD enzyme itself. The new porphyrins are stable to both acid and EDTA, and non toxic to E. coli. Despite elongated substituents, which could potentially lower their ability to cross the cell wall, MnTTEG-2-PyP5+ and MnTDTEG-2-ImP(5+) exhibit similar protection of SOD-deficient E. coli as their much smaller ethyl analogues MnTE-2-PyP5+ and MnTDE-2-ImP(5+), respectively. Consequently, with anticipated increased blood-circulating half-life, these new Mn(III) porphyrins may be more effective in ameliorating oxidative stress injuries than ethyl analogues that have been already successfully explored in vivo.
机译:为了增加它们的生物利用度和血液循环半衰期,合成了两种新的三(乙二醇)衍生的锰(III)卟啉。它们是Mn(III)四(N-(1-(2-(2-(2-(2-甲氧基乙氧基)乙氧基)乙基)吡啶-2-基)卟啉,MnTTEG-2-PyP5 +和Mn(III)四(N, N'-二(1-(2-(2-(2-(2-甲氧基乙氧基)乙氧基)乙基)咪唑-2-基)卟啉,MnTDTEG-2-ImP(5+)。两种卟啉均具有邻吡啶基或二邻咪唑基卟啉环介孔位置的吸电子取代基可确保高度正的金属中心氧化还原电势,MnTTEG-2-PyP5 +的E-1 / 2 = +250 mV vs. NHE,Es / 1/2 = + 412 mV vs. NHE MnTDTEG-2-ImP(5+)。如所预期的,从金属卟啉的既定E-1 / 2与log k(cat)(O-2(中心点-))的结构-活性关系得出(Batinic-Haberle等等,Inorg。Chem。,1999,38,4011),到目前为止,这两种化合物都比任何基于内消旋取代的Mn(III)卟啉的SOD模拟物表现出更高的SOD-like活性,log k(cat)= 8.11(MnTTEG- 2-PyP5 +)和log k(cat)= 8.55(MnTDTEG-2-ImP(5+)),前者在歧化O-2(中心点-)中的效力仅比SOD酶本身低几倍。新的卟啉对酸和EDTA均稳定,对大肠杆菌无毒。尽管延长的取代基可能会降低其穿过细胞壁的能力,但MnTTEG-2-PyP5 +和MnTDTEG-2-ImP(5+)表现出与SOD缺陷型大肠杆菌相似的保护作用,因为它们的乙基类似物MnTE-2小得多。 -PyP5 +和MnTDE-2-ImP(5+)。因此,由于预期的血液循环半衰期延长,这些新的Mn(III)卟啉可能比体内已成功开发的乙基类似物在减轻氧化应激损伤方面更有效。

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