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过氧自由基加成到(E)-视黄酸的区域特异性。

Regiospecificity of peroxyl radical addition to (E)-retinoic acid.

作者信息

Samokyszyn V M, Freyaldenhoven M A, Chang H C, Freeman J P, Compadre R L

机构信息

Department of Pharmacology & Toxicology (Division of Taxicology), University of Arkansas for Medical Sciences, Little Rock 72205, USA.

出版信息

Chem Res Toxicol. 1997 Jul;10(7):795-801. doi: 10.1021/tx970045m.

Abstract

The regiochemistry of peroxyl radical addition to (E)-retinoic acid (RA) was investigated. Peroxyl radicals, generated by reaction of 13-hydroperoxy-(9Z,11E)-octadecadienoic acid with hydroxo(porphyrinato)iron(III) in Tween 20 micelles, were reacted with RA. The major, and virtually exclusive, RA oxidation product was 5,6-epoxy-RA which was identified on the basis of cochromatography with the synthetic synthetic oxirane (in a reverse phase HPLC system), electronic absorption spectroscopy, high-field 1H-NMR, and EI mass spectrometry. These results suggest that peroxyl radicals react with RA by regioselective addition to either C5 or C6 yielding an endocyclic tertiary allylic or tertiary carbon-centered radical adduct, respectively. Subsequent beta-elimination of an alkoxyl radical yields the oxirane. Computational studies were carried out in order to gain mechanistic insights into the observed regiospecificity of the peroxyl radical-dependent epoxidation reaction; molecular mechanics and semiempirical quantum mechanical calculations were carried out using Tripos force field parameters and AM1, respectively. The results suggest that the regiospecific epoxidation may be influenced by the 5,6-olefinic function behaving as a partially-isolated double bond as well as inherent allylic A1,2 strain in the substituted cyclohexene ring as a consequence of substitutions at C1 and C6. In addition, calculated heats of formation indicated preferential peroxyl radical addition to C5 versus C6; this may reflect differences in the geometries of sp2-orbitals containing the radical densities rather than resonance contributions by the highly conjugated polyene system.

摘要

研究了过氧自由基加成到(E)-视黄酸(RA)上的区域化学。由13-氢过氧-(9Z,11E)-十八碳二烯酸与羟基(卟啉)铁(III)在吐温20胶束中反应生成的过氧自由基与RA反应。主要的,实际上也是唯一的RA氧化产物是5,6-环氧-RA,它是通过与合成的环氧乙烷(在反相高效液相色谱系统中)共色谱、电子吸收光谱、高场1H-NMR和EI质谱鉴定的。这些结果表明,过氧自由基与RA通过区域选择性加成到C5或C6上分别生成环内叔烯丙基或叔碳中心自由基加合物。随后烷氧基自由基的β-消除产生环氧乙烷。进行了计算研究以深入了解过氧自由基依赖性环氧化反应中观察到的区域特异性的机理;分别使用Tripos力场参数和AM1进行了分子力学和半经验量子力学计算。结果表明,区域特异性环氧化可能受到5,6-烯键官能团作为部分隔离的双键的影响,以及由于C1和C6处的取代而在取代的环己烯环中固有的烯丙基A1,2应变的影响。此外,计算的生成热表明过氧自由基优先加成到C5而不是C6上;这可能反映了含有自由基密度处的sp2轨道几何形状的差异,而不是高度共轭多烯系统的共振贡献。

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