Departamento de Química y Bioquímica, Facultad de Farmacia, Universidad San Pablo-CEU, CEU Universities, Urbanización Montepríncipe, 28925 Alcorcón, Spain.
Centre for Biomaterials, Cellular and Molecular Theranostics (CBCMT), Vellore Institute of Technology (VIT), Vellore 632014, India.
Int J Mol Sci. 2021 Sep 15;22(18):9976. doi: 10.3390/ijms22189976.
Osteoarthritis is a degenerative disease, often resulting in chronic joint pain and commonly affecting elderly people. Current treatments with anti-inflammatory drugs are palliative, making the discovery of new treatments necessary. The inhibition of matrix metalloproteinase is a validated strategy to prevent the progression of this common joint disorder. We recently described polybrominated benzotriazole derivatives with nanomolar inhibitory activity and a promising selectivity profile against this collagenase. In this work, we have extended the study in order to explore the influence of bromine atoms and the nature of the S1' heterocyclic interacting moiety on the solubility/selectivity balance of this type of compound. Drug target interactions have been assessed through a combination of molecular modeling studies and NMR experiments. Compound has been identified as a water-soluble and highly potent inhibitor with activity in MG-63 human osteosarcoma cells.
骨关节炎是一种退行性疾病,常导致慢性关节疼痛,常见于老年人。目前使用的抗炎药物只能缓解症状,因此需要开发新的治疗方法。抑制基质金属蛋白酶是预防这种常见关节疾病进展的一种有效策略。我们最近描述了具有纳摩尔抑制活性和针对这种胶原酶有良好选择性的多溴化苯并三唑衍生物。在这项工作中,我们扩展了研究,以探索溴原子和 S1'杂环相互作用部分的性质对这类化合物的溶解度/选择性平衡的影响。通过结合分子建模研究和 NMR 实验评估了药物靶标相互作用。化合物已被鉴定为一种水溶性和高活性抑制剂,对 MG-63 人骨肉瘤细胞具有活性。