Department for Management of Science and Technology Development , Ton Duc Thang University , Ho Chi Minh City 758307 , Vietnam.
Faculty of Applied Sciences , Ton Duc Thang University , Ho Chi Minh City 758307 , Vietnam.
J Phys Chem B. 2019 Dec 19;123(50):10672-10679. doi: 10.1021/acs.jpcb.9b08912. Epub 2019 Dec 10.
Indolinonic hydroxylamine (IH) is known as a potential artificial antioxidant in apolar environments. Here, a library of 108 monosubstituted derivatives was screened in silico to identify a lead compound for increased antioxidant activity, following a strategy of shortlisting based on thermochemical and kinetic properties. It was found that the presence of substituents at the 2, 4, and 7 positions increased, while substituents in other positions decreased the BDE(O-H) values, in good correlation to the electron-donating ability of substituents. Among the studied compounds, the N and 5 amine-substituted derivatives have the lowest BDE(O-H) values (62.4-64.0 kcal mol). The presence of the strong electron-withdrawing substituents can decrease the proton affinities of the derivatives, whereas the decrease of ionization energies correlates to the electron-donating ability of the substituents. It was also found that the formal hydrogen transfer (FHT) mechanism is the favored pathway for the HOO radical scavenging. Kinetic calculations showed that the rate constant of the reaction between N-NHMe-IH compound and HOO radical following the FHT mechanism ( = 3.00 × 10 M s) is about 8223 and 5253 times higher than those of Trolox and ascorbic acid, respectively, in the pentyl ethanoate solvent. Thus, N-NHMe-IH is expected to be the most powerful antioxidant reported to date in lipid environments.
吲哚啉酮羟胺 (IH) 在非极性环境中是一种潜在的人工抗氧化剂。在这里,我们通过筛选 108 种单取代衍生物的方法,在计算机上筛选出一种具有增强抗氧化活性的先导化合物,筛选的策略是根据热化学和动力学性质进行初选。研究发现,在 2、4 和 7 位上引入取代基会增加 BDE(O-H) 值,而在其他位置上引入取代基则会降低 BDE(O-H) 值,这与取代基的供电子能力很好地相关。在所研究的化合物中,N 和 5 位胺取代衍生物具有最低的 BDE(O-H) 值(62.4-64.0 kcal mol)。强吸电子取代基的存在可以降低衍生物的质子亲和力,而电离能的降低与取代基的供电子能力相关。此外,还发现形式氢转移 (FHT) 机制是 HO0 自由基清除的有利途径。动力学计算表明,在戊基乙酸酯溶剂中,N-NHMe-IH 化合物与 HO0 自由基之间遵循 FHT 机制的反应速率常数(= 3.00×109 M s)分别比 Trolox 和抗坏血酸高约 8223 和 5253 倍。因此,在脂质环境中,N-NHMe-IH 有望成为迄今为止报道的最有效的抗氧化剂。