Ramadan Sayed K, Abd-Rabboh Hisham S M, Abou-Elmagd Wael S I
Chemistry Department, Faculty of Science, Ain Shams University, Cairo, Egypt.
Chemistry Department, College of Science, King Khalid University, Abha, Saudi Arabia.
J Biochem Mol Toxicol. 2025 Jan;39(1):e70131. doi: 10.1002/jbt.70131.
Researchers are actively looking for novel anticancer medications because cancer is one of the leading causes of mortality worldwide. A fascinating area of study in medicinal chemistry is the screening of antioxidants for novel anticancer medicines, as antioxidants have lately been used as therapeutic candidates to combat a variety of ailments in aerobic species. Additionally, pyrazole-based heterocycle synthesis is a productive approach to the drug development process. To ascertain the molecular geometry and frontier orbital analysis, a DFT simulation of the produced compounds was conducted. Compound 7 showed the lowest energy gap and hardness, while compound 7 had the maximum softness. Therefore, a few quinazoline, benzimidazole, and tetrazinethione derivatives based on pyrazoles that were synthesized in our earlier work and exhibited antioxidant qualities were tested for their in vitro antiproliferative activity against the MCF7 and HCT116 cancer cell lines. The two cancer cell lines were most effectively inhibited by derivatives of sulfonamide and tetrazinethione. The molecular docking simulation toward CDK2 protein specified the best docking score of tetrazinethione 7 followed by sulfonamide derivative 4, compared to doxorubicin and roscovitine (kinase inhibitor). Most of the amino acids interacting with these compounds were involved in that interaction with the co-crystallized ligand. Their favorable oral bioavailability and drug-likeness characteristics were demonstrated by a modeling pharmacokinetics investigation. This research could help create novel antiproliferative drugs that are both efficient and selective.
由于癌症是全球主要死因之一,研究人员正在积极寻找新型抗癌药物。药物化学中一个引人入胜的研究领域是筛选用于新型抗癌药物的抗氧化剂,因为抗氧化剂最近已被用作治疗候选物来对抗需氧物种中的各种疾病。此外,基于吡唑的杂环合成是药物开发过程中的一种有效方法。为了确定所制备化合物的分子几何结构和前沿轨道分析,对其进行了密度泛函理论(DFT)模拟。化合物7显示出最低的能隙和硬度,而化合物7具有最大的软度。因此,对我们早期工作中合成的一些基于吡唑的喹唑啉、苯并咪唑和四嗪硫酮衍生物进行了测试,这些衍生物具有抗氧化特性,并对MCF7和HCT116癌细胞系进行了体外抗增殖活性测试。磺酰胺和四嗪硫酮衍生物对这两种癌细胞系的抑制效果最为显著。与阿霉素和罗可辛(激酶抑制剂)相比,针对CDK2蛋白的分子对接模拟表明四嗪硫酮7的对接分数最高,其次是磺酰胺衍生物4。与这些化合物相互作用的大多数氨基酸都参与了与共结晶配体的相互作用。药物动力学建模研究表明它们具有良好的口服生物利用度和类药物特性。这项研究有助于开发高效且有选择性的新型抗增殖药物。