Mumtaz Sundas, Rahim Fazal, Hussain Rafaqat, Khan Shoaib, Abid Obaid Ur Rahman, Sardar Asma, Iqbal Tayyiaba, Islam Mohammad Shahidul, Almutairi Tahani Mazyad
Department of Chemistry, Hazara University, Mansehra, 21120, Pakistan.
College of Biology, Hunan University Changsha, Hunan 81002 P.R. China.
Z Naturforsch C J Biosci. 2025 Feb 6;80(9-10):549-562. doi: 10.1515/znc-2024-0214. Print 2025 Sep 25.
In pursuit of effective thymidine phosphorylase inhibitors, a series of hybrid analogs of thiazole-hydrazone derivatives (1-15) were synthesized and evaluated for their enzyme inhibitory potential using 7-deazaxanthine as a positive control. The goal was to determine these derivatives' effectiveness in suppressing thymidine phosphorylase activity, a target relevant to antitumor strategies due to the enzyme's role in angiogenesis and tumor growth. Biological evaluations indicated that all synthesized analogs displayed significant to moderate inhibitory activity, with IC values between 3.93 ± 0.90 and 25.75 ± 4.30 µM. Particularly, compounds 12, 9, and 28 exhibited superior potency, with IC values of 3.93 ± 0.90, 4.10 ± 1.10, and 4.50 ± 1.10 µM, respectively, surpassing the standard inhibitor 7-deazaxanthine (IC = 16.8 ± 2.20 µM). Additionally, molecular docking studies were performed to elucidate the binding interactions of the synthesized thiazole-hydrazone derivatives with the active site of thymidine phosphorylase. The docking results aligned well with experimental data, revealing favorable binding conformations and significant interactions that support the observed inhibitory activities, particularly in the most potent compounds. These findings underscore the promise of thiazole-hydrazone derivatives as effective thymidine phosphorylase inhibitors, suggesting that targeted structural modifications could further enhance their activity. Further investigations, including studies, are warranted to explore their potential applications in anticancer therapies. This study highlights the valuable role of molecular docking in understanding the structure-activity relationship (SAR) of thiazole-hydrazone derivatives, emphasizing the potential of these compounds in advancing thymidine phosphorylase inhibition strategies for therapeutic purposes.
为了寻找有效的胸苷磷酸化酶抑制剂,合成了一系列噻唑腙衍生物的杂合类似物(1-15),并以7-脱氮黄嘌呤作为阳性对照评估了它们的酶抑制潜力。目的是确定这些衍生物在抑制胸苷磷酸化酶活性方面的有效性,由于该酶在血管生成和肿瘤生长中的作用,该靶点与抗肿瘤策略相关。生物学评估表明,所有合成的类似物均表现出显著至中等的抑制活性,IC值在3.93±0.90和25.75±4.30μM之间。特别是,化合物12、9和28表现出优异的效力,IC值分别为3.93±0.90、4.10±1.10和4.50±1.10μM,超过了标准抑制剂7-脱氮黄嘌呤(IC = 16.8±2.20μM)。此外,进行了分子对接研究,以阐明合成的噻唑腙衍生物与胸苷磷酸化酶活性位点的结合相互作用。对接结果与实验数据吻合良好,揭示了有利的结合构象和显著的相互作用,支持了观察到的抑制活性,特别是在最有效的化合物中。这些发现强调了噻唑腙衍生物作为有效的胸苷磷酸化酶抑制剂的前景,表明有针对性的结构修饰可以进一步提高它们的活性。有必要进行进一步的研究,包括 研究,以探索它们在抗癌治疗中的潜在应用。这项研究突出了分子对接在理解噻唑腙衍生物结构-活性关系(SAR)方面的重要作用,强调了这些化合物在推进用于治疗目的的胸苷磷酸化酶抑制策略方面的潜力。