Department of Chemistry, Bacha Khan University Charsadda, Charsadda-24420, Khyber Pakhtunkhwa, Pakistan.
Department of Chemistry, Bacha Khan University Charsadda, Charsadda-24420, Khyber Pakhtunkhwa, Pakistan.
Int J Biol Macromol. 2024 Jan;255:128259. doi: 10.1016/j.ijbiomac.2023.128259. Epub 2023 Nov 19.
In several types of cancers, the expression of carbonic anhydrase-IX (CA-IX) enzyme is elevated than its normal level which ultimately plays a key role in the tumor growth of epithelial cells in breast and lung cancer by acidifying tumor microenvironment, therefore, inhibition of this target is important in antitumor therapy. We have synthesized bis-benzimidazole derivatives (1-25) by using 3,3'-diaminobenzidine and various aromatic aldehydes and characterized by various spectroscopic methods (UV/Visible, HNMR, CNMR, and mass spectrometry). Their inhibitory potential for human CA-IX (hCA-IX) was evaluated in-vitro, where several synthesized derivatives showed potent inhibition of hCA-IX (IC values in range of 5.23 ± 1.05 to 40.10 ± 1.78 μM) and compounds 3-5, 7-8, 13-16, 21 and 23 showed superior activity than the standard drug "acetazolamide" (IC = 18.24 ± 1.43 μM). Furthermore, all these compounds showed no toxicity on human fibroblast cell lines (BJ cell lines). Moreover, molecular docking was carried out to predict their binding modes in the active site of CA-IX and revealed a significant role of imidazole ring of synthesized entities in their effective binding with the specific residues of CA-IX. The obtained results paved the way for further in vivo and other pharmacological studies for the optimization of these molecules as possible anti-cancer agents.
在几种类型的癌症中,碳酸酐酶-IX(CA-IX)酶的表达水平高于正常水平,通过酸化肿瘤微环境,最终在乳腺癌和肺癌的上皮细胞肿瘤生长中发挥关键作用,因此抑制该靶点在抗肿瘤治疗中很重要。我们使用 3,3'-二氨基联苯胺和各种芳香醛合成了双苯并咪唑衍生物(1-25),并通过各种光谱方法(UV/可见、HNMR、CNMR 和质谱)对其进行了表征。它们对人碳酸酐酶-IX(hCA-IX)的抑制潜力在体外进行了评估,其中几种合成的衍生物对 hCA-IX 表现出很强的抑制作用(IC 值在 5.23±1.05 至 40.10±1.78μM 范围内),化合物 3-5、7-8、13-16、21 和 23 的活性优于标准药物“乙酰唑胺”(IC=18.24±1.43μM)。此外,所有这些化合物对人成纤维细胞系(BJ 细胞系)均无毒性。此外,还进行了分子对接,以预测它们在 CA-IX 活性部位的结合模式,并揭示了合成实体的咪唑环在与 CA-IX 的特定残基有效结合中的重要作用。这些结果为进一步的体内和其他药理学研究铺平了道路,以优化这些分子作为潜在的抗癌药物。