Grup d'Enginyeria de Materials (Gemat), Institut Químic de Sarriá (IQS), Universitat Ramon Llull (URL), Via Augusta 390, 08017 Barcelona, Spain.
Research and Development Center (CID-CSIC), Jordi Girona 18-26, 08034 Barcelona, Spain.
J Med Chem. 2022 Mar 24;65(6):4865-4877. doi: 10.1021/acs.jmedchem.1c02054. Epub 2022 Mar 2.
Heparin-like macromolecules are widely used in clinics as anticoagulant, antiviral, and anticancer drugs. However, the search of heparin antidotes based on small synthetic molecules to control blood coagulation still remains a challenging task due to the physicochemical properties of this anionic polysaccharide. Here, we use a dynamic combinatorial chemistry approach to optimize heparin binders with submicromolar affinity. The recognition of heparin by the most amplified members of the dynamic library has been studied with different experimental (SPR, fluorescence, NMR) and theoretical approaches, rendering a detailed interaction model. The enzymatic assays with selected library members confirm the correlation between the dynamic covalent screening and the heparin inhibition. Moreover, both and blood coagulation assays with mice show that the optimized molecules are potent antidotes with potential use as heparin reversal drugs. Overall, these results underscore the power of dynamic combinatorial chemistry targeting complex and elusive biopolymers.
肝素类似的大分子被广泛应用于临床作为抗凝、抗病毒和抗癌药物。然而,由于这种阴离子多糖的物理化学性质,基于小分子合成物来控制血液凝固的肝素解毒剂的寻找仍然是一项具有挑战性的任务。在这里,我们使用动态组合化学方法来优化具有亚毫摩尔亲和力的肝素结合物。通过不同的实验(SPR、荧光、NMR)和理论方法研究了肝素与动态文库中最扩增成员的识别,得出了详细的相互作用模型。对选定文库成员的酶分析证实了动态共价筛选与肝素抑制之间的相关性。此外,用小鼠进行的 和 凝血检测均表明,优化后的分子是有效的解毒剂,有作为肝素逆转药物的潜力。总的来说,这些结果强调了针对复杂和难以捉摸的生物聚合物的动态组合化学的强大力量。