Faculty of Biotechnology and Genetic Engineering, Sylhet Agricultural University, Sylhet, 3100, Bangladesh.
Department of Plant and Environmental Biotechnology, Sylhet Agricultural University, Sylhet, 3100, Bangladesh.
Mol Divers. 2022 Oct;26(5):2473-2502. doi: 10.1007/s11030-021-10345-w. Epub 2021 Nov 7.
The deeper understanding of metastasis phenomenon and detection of drug targets could be a potential approach to minimize cancer mortality. In this study, attempts were taken to unmask novel therapeutics to prevent metastasis and cancer progression. Initially, we explored the physiochemical, structural and functional insights of three metastasis tumor antigens (MTAs) and evaluated some plant-based bioactive compounds as potent MTA inhibitors. From 50 plant metabolites screened, isoflavone, gingerol, citronellal and asiatic acid showed maximum binding affinity with all three MTA proteins. The ADME analysis detected no undesirable toxicity that could reduce the drug likeness properties of top plant metabolites. Moreover, molecular dynamics studies revealed that the complexes were stable and showed minimum fluctuation at molecular level. We further performed ligand-based virtual screening to identify similar drug molecules using a large collection of 376,342 compounds from DrugBank. The results suggested that several structural analogs (e.g., tramadol, nabumetone, DGLA and hydrocortisone) may act as agonist to block the MTA proteins and inhibit cancer progression at early stage. The study could be useful to develop effective medications against cancer metastasis in future. Due to encouraging results, we highly recommend further in vitro and in vivo trials for the experimental validation of the findings.
深入了解转移现象和检测药物靶点可能是降低癌症死亡率的一种潜在方法。在这项研究中,我们试图揭示新的治疗方法来预防转移和癌症进展。首先,我们探索了三种转移肿瘤抗原(MTA)的物理化学、结构和功能见解,并评估了一些植物源性生物活性化合物作为潜在的 MTA 抑制剂。在筛选的 50 种植物代谢物中,异黄酮、姜辣素、香茅醛和齐墩果酸与三种 MTA 蛋白表现出最大的结合亲和力。ADME 分析未检测到不良毒性,这可能会降低顶级植物代谢物的药物相似性。此外,分子动力学研究表明,复合物在分子水平上是稳定的,波动最小。我们进一步使用来自 DrugBank 的 376,342 种化合物的大型集合进行基于配体的虚拟筛选,以识别类似的药物分子。结果表明,几种结构类似物(例如曲马多、萘布美酮、DGLA 和氢化可的松)可能作为激动剂阻断 MTA 蛋白并在早期抑制癌症进展。这项研究将来可能有助于开发有效的癌症转移治疗药物。由于结果令人鼓舞,我们强烈建议进一步进行体外和体内试验,以验证这些发现。