Department of Chemistry and Biochemistry and the Milwaukee Institute for Drug Discovery, University of Wisconsin-Milwaukee, Milwaukee, Wisconsin 53201, United States.
Pantherics Incorporated, La Jolla, California 92037, United States.
Mol Pharm. 2020 Apr 6;17(4):1182-1192. doi: 10.1021/acs.molpharmaceut.9b01210. Epub 2020 Feb 26.
We describe the effects of pH on the structure and bioavailability of MIDD0301, an oral lead compound for asthma. MIDD0301 interacts with peripheral GABA receptors to reduce lung inflammation and airway smooth muscle constriction. The structure of MIDD0301 combines basic imidazole and carboxylic acid function in the same diazepine scaffold, resulting in high solubility at neutral pH. Furthermore, we demonstrated that MIDD0301 can interconvert between a seven-membered ring structure at neutral pH and an acyclic compound at or below pH 3. Both structures have two stable conformers in solution that can be observed by H NMR at room temperature. Kinetic analysis showed opening and closing of the seven-membered ring of MIDD0301 at gastric and intestinal pH, occurring with different rate constants. However, in vivo studies showed that the interconversion kinetics are fast enough to yield similar MIDD0301 blood and lung concentrations for neutral and acidic formulations. Importantly, acidic and neutral formulations of MIDD0301 exhibit high lung distribution with low concentrations in brain. These findings demonstrate that MIDD0301 interconverts between stable structures at neutral and acidic pH without changes in bioavailability, further supporting its formulation as an oral asthma medication.
我们描述了 pH 值对 MIDD0301 结构和生物利用度的影响,MIDD0301 是一种用于哮喘的口服铅化合物。MIDD0301 与外周 GABA 受体相互作用,可减轻肺部炎症和气道平滑肌收缩。MIDD0301 的结构将碱性咪唑和羧酸官能团结合在同一个二氮杂环庚烷支架中,在中性 pH 值下具有高溶解度。此外,我们证明 MIDD0301 可以在中性 pH 值下在七元环结构和低于或等于 pH 值 3 的无环化合物之间相互转换。这两种结构在溶液中有两个稳定的构象,在室温下可以通过 H NMR 观察到。动力学分析表明,MIDD0301 的七元环在胃和肠道 pH 值下打开和关闭,其速率常数不同。然而,体内研究表明,互变异构动力学速度足够快,可使中性和酸性配方的 MIDD0301 血液和肺部浓度相似。重要的是,MIDD0301 的酸性和中性配方在肺部具有高分布,而在大脑中的浓度较低。这些发现表明,MIDD0301 在中性和酸性 pH 值之间可相互转换而不改变生物利用度,进一步支持将其作为口服哮喘药物进行配方。