Engwa Godwill Azeh, Ayuk Eugene Lekem, Igbojekwe Benardeth Ujunwa, Unaegbu Marcellus
Biochemistry, Chemical Sciences Department, Godfrey Okoye University, PMB 01014, Thinkers Corner, Enugu, Nigeria.
Industrial Chemistry, Chemical Sciences Department, Godfrey Okoye University, PMB 01014, Thinkers Corner, Enugu, Nigeria.
Biochem Res Int. 2016;2016:9896575. doi: 10.1155/2016/9896575. Epub 2016 Apr 4.
The global increase in oxidative stress related diseases such as cancer, cardiovascular, and inflammatory diseases caused by overwhelming level of free radicals in the body has encouraged the search for new antioxidant agents. Based on the ability of newly synthesized phenothiazine derivatives (6-chloro-11-azabenzo[a]phenothiazine-5-one and 6-[4-bromophenyl]-10-methyl-11-azabenzo[a]phenothiazine-5-one) to oxidize H2O2, a known free radical to sulfoxide, this study assessed the in vitro and in vivo antioxidant activity. The synthesized phenothiazine derivatives exhibited reducing power potential to convert Fe(3+) to Fe(2+) and high ability to scavenge H2O2 free radical in vitro. These activities were comparable to ascorbic acid, a standard antioxidant. The catalase activity significantly increased (p < 0.05) in groups 1 and 2 animals that received the phenothiazine derivatives compared to the controls (groups 3 and 4) suggesting the ability of the phenothiazine derivatives to scavenge H2O2 in vivo. The malondialdehyde level in groups 1 and 2 animals was lower than that in group 3 that received the reference compound (ascorbic acid) and group 4 that received the solvent suggesting the ability of the phenothiazine derivatives to prevent lipid membrane damage. AST and bilirubin levels were higher in group 2 animals which received 6-[4-bromophenyl]-10-methyl-11-azabenzo[a]phenothiazine-5-one compared to group 3, the positive control. The results suggest that phenothiazine derivatives, especially 6-chloro-11-azabenzo[a]phenothiazine-5-one, possess antioxidant activity though 6-[4-bromophenyl]-10-methyl-11-azabenzo[a]phenothiazine-5-one was slightly toxic. This activity may be due to the presence of electron donors such as sulfur as well as the richness of hydrogen in the additional benzene rings for substitution. Further study is needed to identify tolerable doses for possible therapeutic purposes.
全球范围内,由体内自由基水平过高引发的与氧化应激相关的疾病(如癌症、心血管疾病和炎症性疾病)不断增加,这促使人们寻找新的抗氧化剂。基于新合成的吩噻嗪衍生物(6-氯-11-氮杂苯并[a]吩噻嗪-5-酮和6-[4-溴苯基]-10-甲基-11-氮杂苯并[a]吩噻嗪-5-酮)能将已知的自由基过氧化氢氧化为亚砜的能力,本研究评估了其体外和体内的抗氧化活性。合成的吩噻嗪衍生物在体外具有将Fe(3+)转化为Fe(2+)的还原能力以及清除过氧化氢自由基的高能力。这些活性与标准抗氧化剂抗坏血酸相当。与对照组(第3组和第4组)相比,接受吩噻嗪衍生物的第1组和第2组动物的过氧化氢酶活性显著增加(p < 0.05),这表明吩噻嗪衍生物在体内具有清除过氧化氢的能力。第1组和第2组动物的丙二醛水平低于接受参考化合物(抗坏血酸)的第3组和接受溶剂的第4组,这表明吩噻嗪衍生物具有防止脂质膜损伤的能力。与阳性对照组第3组相比,接受6-[4-溴苯基]-10-甲基-11-氮杂苯并[a]吩噻嗪-5-酮的第2组动物的谷草转氨酶和胆红素水平更高。结果表明,吩噻嗪衍生物,尤其是6-氯-11-氮杂苯并[a]吩噻嗪-5-酮,具有抗氧化活性,尽管6-[4-溴苯基]-10-甲基-11-氮杂苯并[a]吩噻嗪-5-酮有轻微毒性。这种活性可能是由于存在硫等电子供体以及额外苯环中丰富的可用于取代的氢。需要进一步研究以确定可能用于治疗目的的可耐受剂量。