取代基对α-取代α,3-二去氢甲苯双基性质影响的理论研究。

IF 1.3 4区 医学 Q4 CHEMISTRY, MEDICINAL
Akira Shigenaga, Ryuji Kyan
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引用次数: 0

摘要

烯二炔类抗癌抗生素通过产生裂解DNA的活性双自由基来发挥其生物活性。单线态双自由基可以表现为两性离子性质,因此,烯二炔衍生的单线态双自由基有时会通过与水的离子反应而失活。其中一位作者所在的研究小组先前提出了一种可能性,即通过在α,3-二去氢甲苯二自由基的苯基位置引入一个吸电子基团可以抑制其两性离子性质。本文利用密度泛函理论(DFT)计算方法研究了苯基取代基的吸电子性质与α,3-二去氢甲苯的双自由基性质之间的关系,得到了支持上述假设的计算结果。此外,还提出用DFT计算可以预测两性离子中间体中的电荷。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Theoretical Study of the Substituent Effect on the Diradical Character of α-Substituted α,3-Didehydrotoluenes.

Enediyne anticancer antibiotics exert their bioactivity by generating reactive diradical species that cleave DNA. Singlet diradicals can exhibit zwitterionic character, therefore, the enediyne-derived singlet diradicals are sometimes inactivated via ionic reaction with water. The research group to which one of the authors belonged previously proposed the possibility that the zwitterionic character of the α,3-didehydrotoluene diradical could be suppressed by introducing an electron-withdrawing group to its benzylic position. In this paper, the correlation between the electron-withdrawing properties of the benzylic substituents and the diradical character of the α,3-didehydrotoluene was investigated based on density functional theory (DFT) calculation, and the calculation results supporting the above hypothesis were obtained. Furthermore, it was suggested that the charge in the zwitterionic intermediate can be predicted by DFT calculation.

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来源期刊
CiteScore
3.20
自引率
5.90%
发文量
132
审稿时长
1.7 months
期刊介绍: The CPB covers various chemical topics in the pharmaceutical and health sciences fields dealing with biologically active compounds, natural products, and medicines, while BPB deals with a wide range of biological topics in the pharmaceutical and health sciences fields including scientific research from basic to clinical studies. For details of their respective scopes, please refer to the submission topic categories below. Topics: Organic chemistry In silico science Inorganic chemistry Pharmacognosy Health statistics Forensic science Biochemistry Pharmacology Pharmaceutical care and science Medicinal chemistry Analytical chemistry Physical pharmacy Natural product chemistry Toxicology Environmental science Molecular and cellular biology Biopharmacy and pharmacokinetics Pharmaceutical education Chemical biology Physical chemistry Pharmaceutical engineering Epidemiology Hygiene Regulatory science Immunology and microbiology Clinical pharmacy Miscellaneous.
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