首页> 外文期刊>The Journal of Organic Chemistry >Polypyrroles as antioxidants: Kinetic studies on reactions of bilirubin and biliverdin dimethyl esters and synthetic model compounds with peroxyl radicals in solution. Chemical calculations on selected typical structures
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Polypyrroles as antioxidants: Kinetic studies on reactions of bilirubin and biliverdin dimethyl esters and synthetic model compounds with peroxyl radicals in solution. Chemical calculations on selected typical structures

机译:聚吡咯作为抗氧化剂:胆红素和胆绿素二甲酯和合成模型化合物与溶液中过氧自由基反应的动力学研究。选定典型结构的化学计算

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Rate constants for hydrogen-atom transfer (HAT) from bilirubin dimethyl ester (BRIDE) and biliverdin dimethyl ester (BVDE) to peroxyl radicals during inhibited autoxidation of styrene initiated by azobisisobutyronitrile (AIBN) were k(inh)(BRDE) = 22.5 x 10(4) and k(inh)(BVDE) = 10.2 x 10(4) M-1 s(-1), and the stoichiometric factors (it) were 2.0 and 2.7, respectively. A synthetic tetrapyrrole (bis(dipyrromethene)) containing the a-central (2,2') CH2 linkage gave k(inh) = 39.9 x 10(4) M-1 s(-1) and n = 2.3, whereas the beta-linked (3,3') isomer was not an active antioxidant. Several dipyrrinones were synthesized as mimics of the two outer heterocyclic rings of bilirubin and biliverdin. The dipyrrinones containing N-H groups in each ring were active antioxidants, whereas those lacking two such "free" N-H groups, such as N-CH3 dipyrrinones and dipyrromethenes, did not exhibit antioxidant activity. Overall the relative kinh values compared to those of phenolic antioxidants, 2,6-di-tert-butyl-4-methoxyphenol (DBHA) and 2,6-di-tertbutyl-4-methylphenol (BHT), were 2,2'-bis(dipyrromethene) > BRDE > DBHA > dipyrrinones > BVDE > BHT. This general trend in antioxidant activities was also observed for the inhibited autoxidation of cumene initiated by AIBN. Chemical calculations of the N-H bond dissociation enthalpies (BDEs) of the typical structures support a HAT mechanism from N-H groups to trap peroxyl radicals. Intramolecular hydrogen bonding of intermediate nitrogen radicals has a major influence on the antioxidant activities of all compounds studied. Indeed, chemical calculations showed that the initial nitrogen radical from a dipyrrinone is stabilized by 9.0 kcal/mol because of H-bonding between the N-H remaining on one ring and the ground-state pyrrolyl radical of the adjacent ring in the natural zusammen structure. The calculated minimum structure of bilirubin shows strong intramolecular H-bonding of the N-H groups with carbonyl groups resulting in the known "ridge-tile" structure which is not an active HAT antioxidant. The calculated minimum structure of biliverdin is planar. BRIDE is readily converted into BVDE by reaction with the electron-deficient DPPH. radical under argon in chlorobenzene. An electron-transfer mechanism is proposed for the initiating step in this reaction, and this is supported by the relatively low ionizing potential of a model dipyrrole representing the two central rings of bilirubin.
机译:在偶氮二异丁腈(AIBN)引发的苯乙烯自抑制氧化过程中,胆红素二甲基酯(BRIDE)和联肝素二甲酯(BVDE)到过氧自由基的氢原子转移(HAT)的速率常数为k(inh)(BRDE)= 22.5 x 10 (4)和k(inh)(BVDE)= 10.2 x 10(4)M-1 s(-1),化学计量系数(it)分别为2.0和2.7。包含a-中心(2,2')CH2键的合成四吡咯(bis(dipyrromethene))给出k(inh)= 39.9 x 10(4)M-1 s(-1)和n = 2.3,而β连接的(3,3')异构体不是活性抗氧化剂。合成了几个二吡啶酮类化合物,模拟胆红素和胆绿素的两个外杂环。每个环中含有N-H基的二吡啶酮是活性抗氧化剂,而缺少两个这样的“游离” N-H基的二吡啶酮,例如N-CH3二吡啶酮和二嘧啶,则没有抗氧化活性。与酚类抗氧化剂,2,6-二叔丁基-4-甲氧基苯酚(DBHA)和2,6-二叔丁基-4-甲基苯酚(BHT)相比,总体相对Kinh值为2,2'-双(二吡咯亚甲基)> BRDE> DBHA>双吡啶酮> BVDE> BHT。对于由AIBN引发的异丙基苯的自氧化抑制,也观察到了抗氧化剂活性的这种总体趋势。典型结构的N-H键离解焓(BDE)的化学计算支持了从N-H基团捕获过氧自由基的HAT机理。中间氮自由基的分子内氢键对研究的所有化合物的抗氧化活性都有重要影响。的确,化学计算表明,由于天然环孢菌素结构中一个环上保留的N-H与相邻环的基态吡咯基之间存在氢键,二吡啶酮的初始氮自由基稳定在9.0 kcal / mol。所计算的胆红素最小结构显示出N-H基团与羰基的强分子内H键结合,从而导致了已知的“脊瓦”结构,该结构不是活性的HAT抗氧化剂。计算的biliverdin的最小结构是平面的。通过与缺电子的DPPH反应,很容易将BRIDE转化为BVDE。在氯苯中的氩气下自由基。在该反应的引发步骤中提出了一种电子转移机理,这由代表胆红素两个中心环的模型双吡咯的较低电离势来支持。

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