首页> 外文期刊>Journal of Pharmaceutical and Biomedical Analysis: An International Journal on All Drug-Related Topics in Pharmaceutical, Biomedical and Clinical Analysis >Thermal stability of the prototypical Mn porphyrin-based superoxide dismutase mimic and potent oxidative-stress redox modulator Mn(III) meso-tetrakis(N-ethylpyridinium-2-yl)porphyrin chloride, MnTE-2-PyP5+
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Thermal stability of the prototypical Mn porphyrin-based superoxide dismutase mimic and potent oxidative-stress redox modulator Mn(III) meso-tetrakis(N-ethylpyridinium-2-yl)porphyrin chloride, MnTE-2-PyP5+

机译:典型的基于Mn卟啉的超氧化物歧化酶模拟物和有效的氧化应激氧化还原调节剂Mn(III)中四(N-乙基吡啶-2-基)卟啉氯化物MnTE-2-PyP5 +的热稳定性

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摘要

Cationic Mn porphyrins are among the most potent catalytic antioxidants and/or cellular redox modulators. Mn(III) meso-tetrakis(N-ethylpyridinium-2-yl)porphyrin chloride (MnTE-2-PyPCl5) is the Mn porphyrin most studied in vivo and has successfully rescued animal models of a variety of oxidative stress-related diseases. The stability of an authentic MnTE-2-PyPCl5 sample was investigated hereon by thermogravimetric, derivative thermogravimetric, and differential thermal analyses (TG/DTG/DTA), under dynamic air, followed by studies at selected temperatures to evaluate the decomposition path and appropriate conditions for storage and handling of these materials. All residues were analyzed by thin-layer chromatography (TLC) and UV-vis spectroscopy. Three thermal processes were observed by TG/DTG. The first event (endothermic) corresponded to dehydration, and did not alter the MnTE-2-PyPCl5 moiety. The second event (endothermic) corresponded to the loss of EtCl(dealkylation), which was characterized by gas chromatography-mass spectrometry. The residue at 279 degrees C had UV-vis and TLC data consistent with those of the authentic, completely dealkylated analog, MnT-2-PyPCl. The final, multi-step event corresponded to the loss of the remaining organic matter to yield Mn3O4 which was characterized by FR spectroscopy. Isothermal treatment at 188 degrees C under static air for 3 h yielded a mixture of partially dealkylated MnPs and traces of the free-base, dealkylated ligand, H2T-2-PyP, which reveals that dealkylation is accompanied by thermal demetallation under static air conditions. Dealkylation was not observed if the sample was heated as a solid or in aqueous solution up to similar to 100 degrees C. Whereas moderate heating changes sample composition by loss of H2O, the dehydrated sample is indistinguishable from the original sample upon dissolution in water, which indicates that catalytic activity (on Mn basis) remains unaltered. Evidently, dealkylation at high temperature compromises sample activity. (C) 2012 Elsevier B.V. All rights reserved.
机译:阳离子锰卟啉是最有效的催化抗氧化剂和/或细胞氧化还原调节剂。 Mn(III)介孔四(N-乙基吡啶-2-基)卟啉氯化物(MnTE-2-PyPCl5)是体内研究最多的Mn卟啉,已成功拯救了多种与氧化应激相关疾病的动物模型。在动态空气下,通过热重分析,微分热重分析和差热分析(​​TG / DTG / DTA),对真实的MnTE-2-PyPCl5样品的稳定性进行了研究,然后在选定的温度下进行了研究,以评估分解路径和合适的条件。用于存储和处理这些材料。通过薄层色谱法(TLC)和紫外可见光谱法分析所有残留物。 TG / DTG观察到三个热过程。第一个事件(吸热)对应于脱水,并且没有改变MnTE-2-PyPC15部分。第二个事件(吸热)对应于EtCl(去烷基化)的损失,这是通过气相色谱-质谱法表征的。 279℃下的残留物的UV-vis和TLC数据与真实的,完全脱烷基的类似物MnT-2-PyPC1一致。最终的多步骤事件对应于剩余有机物的损失,从而生成Mn3O4,这通过FR光谱学进行了表征。在188°C的静态空气下等温处理3小时,得到的是部分脱烷基的MnPs和痕量的游离碱,脱烷基的配体H2T-2-PyP的混合物,这表明脱烷基化伴随着在静态空气条件下的热脱金属作用。如果将样品作为固体或在水溶液中加热至接近100摄氏度,则不会观察到脱烷基。尽管适度加热会因水的流失而改变样品成分,但是在溶解于水中后,脱水样品与原始样品没有区别。表明催化活性(以Mn为基准)保持不变。显然,高温下的脱烷基会损害样品的活性。 (C)2012 Elsevier B.V.保留所有权利。

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