Gorle Sridevi, Maddila Suresh, Maddila Surya N, Naicker Kovashnee, Singh Moganavelli, Singh Parvesh, Jonnalagadda Sreekantha B
Non-viral gene delivery laboratory, Discipline of Biochemistry, School of Life Sciences, University of KwaZulu-Natal, Chiltern Hills, Durban-4000, South Africa.
Department of Chemistry, School of Chemistry & Physics, University of KwaZulu-Natal, Westville Campus, Chiltern Hills, Durban-4000, South Africa.
Anticancer Agents Med Chem. 2017;17(3):464-470. doi: 10.2174/1871520616666160627090249.
Globally, cancer is regarded as one of the biggest health concern in humans and animals and is one of the most terrifying diseases. Therefore, there is a necessity for the discovery, development and improvement of novel antitumor drug molecules which could efficiently prevent proliferative pathways and clonal expansion of cells. Heterocyclic compounds like benzochromene play a key role in the development of current pharmaceuticals, natural resources, agriculture products, analytical reagents and dyes. Therefore, anticancer drugs show increased resistance, it is essential to designing the novel structured heterocyclic moieties to create potential anticancer agents with promising biological applications.
To synthesis a novel 1-(substitutedphenyl)-2-(1H-tetrazol-5-yl)-1H-benzo[f]chromene-3-amine derivatives for in vitro antitumour activity.
The reaction of 3-amino-1-(substitutedphenyl)-1H-benzo[f]chromene-2-carbonitrile with sodium azide, ammonium chloride in dimethyl formamide solvent under reflux condition for 4 h afforded products (3a-k). The synthesized molecules were subjected to possible potential anti-tumour activity in vitro in four human cancer cell lines (MCF-7, Caco-2, HeLa and SKBR-3), and one human non-cancer cell line (HEK293), using the MTT cell viability assay.
A novel series of products (3a-k) were synthesized with good yield and were identified with 1H NMR, 15N NMR, 13C NMR, FT-IR and HR-MS spectrum. The most potent compounds 3d, 3e, and 3f possessing the greatest cytotoxicity activity with IC50 values slightly higher (15-33 μM) than that of 5-Fluorouracil (10-17 μM), indicating their potential to be antitumor agents. The 3a, 3b, 3c, 3h, 3i and 3j compounds showed moderate activity. Additionally, a molecular docking analysis was conducted to predict the multi-drug resistance modulator behavior of synthesized compounds in the ATP binding site of P-glycoprotein.
We synthesized and designated eleven novel derivatives of tetrazole linked benzochromenes (3a-k) and evaluated their anti-cancer activity. Additionally, the results from the docking studies were found to be in good agreement with the results from computational profiling.
在全球范围内,癌症被视为人类和动物最重大的健康问题之一,也是最可怕的疾病之一。因此,有必要发现、开发和改进新型抗肿瘤药物分子,这些分子能够有效阻断细胞的增殖途径和克隆扩增。像苯并色烯这样的杂环化合物在当前药物、自然资源、农产品、分析试剂和染料的开发中发挥着关键作用。鉴于抗癌药物的耐药性不断增加,设计新型结构的杂环部分以创造具有潜在生物应用前景的抗癌剂至关重要。
合成一种新型的1-(取代苯基)-2-(1H-四唑-5-基)-1H-苯并[f]色烯-3-胺衍生物,用于体外抗肿瘤活性研究。
3-氨基-1-(取代苯基)-1H-苯并[f]色烯-2-腈与叠氮化钠、氯化铵在二甲基甲酰胺溶剂中回流反应4小时,得到产物(3a-k)。使用MTT细胞活力测定法,在四种人类癌细胞系(MCF-7、Caco-2、HeLa和SKBR-3)和一种人类非癌细胞系(HEK293)中对合成的分子进行体外潜在抗肿瘤活性研究。
合成了一系列产率良好的新型产物(3a-k),并通过1H NMR、15N NMR、13C NMR、FT-IR和HR-MS光谱进行了鉴定。最具活性的化合物3d、3e和3f具有最大的细胞毒性活性,其IC50值略高于5-氟尿嘧啶(10-17 μM)(15-33 μM),表明它们具有成为抗肿瘤剂的潜力。化合物3a、3b、3c、_{3h}、3i和3j表现出中等活性。此外,进行了分子对接分析,以预测合成化合物在P-糖蛋白ATP结合位点的多药耐药调节剂行为。
我们合成并命名了十一种新型的四唑连接苯并色烯衍生物(3a-k),并评估了它们的抗癌活性。此外,对接研究的结果与计算分析的结果高度一致。