Racané Livio, Zlatić Katarina, Cindrić Maja, Mehić Emina, Karminski-Zamola Grace, Taylor Martin C, Kelly John M, Malić Silvana Raić, Stojković Marijana Radić, Kralj Marijeta, Hranjec Marijana
Department of Applied Chemistry, Faculty of Textile Technology, University of Zagreb, Prilaz baruna Filipovića, 10000, Zagreb, Croatia.
Department of Organic Chemistry, Faculty of Chemical Engineering and Technology, University of Zagreb, Marulićev trg 19, 10000, Zagreb, Croatia.
ChemMedChem. 2023 Sep 15;18(18):e202300261. doi: 10.1002/cmdc.202300261. Epub 2023 Jul 24.
Novel benzo[b]thienyl- and 2,2'-bithienyl-derived benzothiazoles and benzimidazoles were synthesized to study their antiproliferative and antitrypanosomal activities in vitro. Specifically, we assessed the impact that amidine group substitutions and the type of thiophene backbone have on biological activity. In general, the benzothiazole derivatives were more active than their benzimidazole analogs as both antiproliferative and antitrypanosomal agents. The 2,2'-bithienyl-substituted benzothiazoles with unsubstituted and 2-imidazolinyl amidine showed the most potent antitrypanosomal activity, and the greatest selectivity was observed for the benzimidazole derivatives bearing isopropyl, unsubstituted and 2-imidazolinyl amidine. The 2,2'-bithiophene derivatives showed most selective antiproliferative activity. Whereas the all 2,2'-bithienyl-substituted benzothiazoles were selectively active against lung carcinoma, the benzimidazoles were selective against cervical carcinoma cells. The compounds with an unsubstituted amidine group also produced strong antiproliferative effects. The more pronounced antiproliferative activity of the benzothiazole derivatives was attributed to different cytotoxicity mechanisms. Cell cycle analysis, and DNA binding experiments provide evidence that the benzimidazoles target DNA, whereas the benzothiazoles have a different cellular target because they are localized in the cytoplasm and do not interact with DNA.
合成了新型苯并[b]噻吩基和2,2'-联噻吩衍生的苯并噻唑和苯并咪唑,以研究它们在体外的抗增殖和抗锥虫活性。具体而言,我们评估了脒基取代和噻吩主链类型对生物活性的影响。一般来说,作为抗增殖和抗锥虫剂,苯并噻唑衍生物比其苯并咪唑类似物更具活性。具有未取代和2-咪唑啉基脒的2,2'-联噻吩基取代的苯并噻唑显示出最有效的抗锥虫活性,并且对于带有异丙基、未取代和2-咪唑啉基脒的苯并咪唑衍生物观察到最大的选择性。2,2'-联噻吩衍生物显示出最具选择性的抗增殖活性。所有2,2'-联噻吩基取代的苯并噻唑对肺癌具有选择性活性,而苯并咪唑对宫颈癌细胞具有选择性。具有未取代脒基的化合物也产生强烈的抗增殖作用。苯并噻唑衍生物更明显的抗增殖活性归因于不同的细胞毒性机制。细胞周期分析和DNA结合实验提供了证据,表明苯并咪唑靶向DNA,而苯并噻唑具有不同的细胞靶点,因为它们定位于细胞质中且不与DNA相互作用。