De Strayo, Adhikari S, Tilak-Jain J, Menon V P, Devasagayam T P A
Radiation Biology and Health Sciences, Bhabha Atomic Research Centre, Mumbai-400085, India.
Chem Biol Interact. 2008 Jun 17;173(3):215-23. doi: 10.1016/j.cbi.2008.03.011. Epub 2008 Mar 26.
Oceans are among the richest natural sources of many bioactive compounds. Several of these compounds have shown pharmacological activities for many diseases. Dendrodoine (5-[(3-N-dimethylamino)-1,2,4-thiadiazolyl]-3-indanyl methanone) is an alkaloid extracted from the marine tunicate Dendrodoa grossularia. Aminothiazoles have a wide range of biological activities including anti-tumor and antioxidant properties. The aim of our study was to examine the antioxidant ability of an aminothiazole derivative, dendrodoine analogue (DA) [(4-amino-5-benzoyl-2-(4-methoxy phenylamino) thiazole] which has been chemically synthesized and is similar to dendrodoine. In all the biochemical assays used in our study, corresponding to different levels of protection, DA showed concentration dependent antioxidant ability. DA (3.07 microM) showed an ability to inhibit 2,2'-azobis-3-ethylbenzthiazoline-6-sulfonic acid (ABTS) radical formation to the extent of 0.17 microM of 6-hydroxy-2,5,7,8-tetramethylchroman-2-carboxylic acid (Trolox). The ferric complex reducing ability of 3.07 microM DA was equivalent to 110 microM Trolox. 3.07 microM DA gave 84% protection against deoxyribose degradation, a measure of hydroxyl radical scavenging. DA also has an ability to scavenge NO radical, 3.07 microM DA effecting 20% scavenging. Concentration dependent inhibition of lipid peroxidation and protein oxidation induced by 2,2'-azobis (2-amidinopropane) dihydrochloride (AAPH) and ascorbate-Fe2+ was observed with low concentrations of DA (1.5-3.07 microM). Mechanistic studies using pulse radiolysis revealed that DA scavenges peroxyl radicals with a bimolecular rate constant of 3 x 10(8)M(-1)s(-1). Moreover, the initially formed nitrogen-centered radical gets transformed into sulfur-centered radical before furnishing any final product. Our results indicated that DA can be a free radical scavenger and potential antioxidant for future application.
海洋是许多生物活性化合物最丰富的天然来源之一。其中几种化合物已显示出对多种疾病的药理活性。树突状碱(5-[(3-N-二甲基氨基)-1,2,4-噻二唑基]-3-茚满基甲酮)是一种从海洋被囊动物粗皮树突状海鞘中提取的生物碱。氨基噻唑具有广泛的生物活性,包括抗肿瘤和抗氧化特性。我们研究的目的是检测一种氨基噻唑衍生物——树突状碱类似物(DA)[(4-氨基-5-苯甲酰基-2-(4-甲氧基苯氨基)噻唑]的抗氧化能力,该化合物已通过化学合成,且与树突状碱相似。在我们研究中使用的所有生化分析中,对应于不同程度的保护,DA显示出浓度依赖性抗氧化能力。DA(3.07微摩尔)能够抑制2,2'-偶氮二(3-乙基苯并噻唑啉-6-磺酸)(ABTS)自由基的形成,其程度相当于0.17微摩尔的6-羟基-2,5,7,8-四甲基色满-2-羧酸(Trolox)。3.07微摩尔DA的铁络合物还原能力相当于110微摩尔Trolox。3.07微摩尔DA对脱氧核糖降解(一种羟基自由基清除的指标)提供了84%的保护。DA还具有清除NO自由基的能力,3.07微摩尔DA实现了20%的清除。在低浓度DA(1.5 - 3.07微摩尔)下,观察到对2,2'-偶氮二(2-脒基丙烷)二盐酸盐(AAPH)和抗坏血酸 - Fe2+诱导的脂质过氧化和蛋白质氧化的浓度依赖性抑制。使用脉冲辐解的机理研究表明,DA以3×10(8)M(-1)s(-1)的双分子速率常数清除过氧自由基。此外,最初形成的以氮为中心的自由基在提供任何最终产物之前会转化为以硫为中心的自由基。我们的结果表明,DA可以作为一种自由基清除剂和潜在的抗氧化剂供未来应用。