Neuropharmacology Group, School of Pharmaceutical Sciences, Southern Medical University, Guangzhou 510515, China.
Neuropharmacology Group, School of Pharmaceutical Sciences, Southern Medical University, Guangzhou 510515, China.
Eur J Med Chem. 2016 Nov 29;124:372-379. doi: 10.1016/j.ejmech.2016.08.052. Epub 2016 Aug 24.
In this study, catecholamides (7a-l) bearing different aromatic rings (such as pyridine-2-yl, pyridine-3-yl, phenyl, and 2-chlorophenyl groups) were synthesized as potent phosphodiesterase (PDE) 4 inhibitors. The inhibitory activities of these compounds were evaluated against the core catalytic domains of human PDE4 (PDE4CAT), full-length PDE4A4, PDE4B1, PDE4C1, and PDE4D7 enzymes, and other PDE family members. Eight of the synthesized compounds were identified as having submicromolar IC values in the mid-to low-nanomolar range. Careful analysis on the structure-activity relationship of compounds 7a-l revealed that the replacement of the 4-methoxy group with the difluoromethoxy group improved inhibitory activities. More interesting, 4-difluoromethoxybenzamides 7i and 7j exhibited preference for PDE4 with higher selectivities of about 3333 and 1111-fold over other PDEs, respectively. In addition, compound 7j with wonderful PDE4D7 inhibitory activities inhibited LPS-induced TNF-α production in microglia.
在这项研究中,合成了带有不同芳环(如吡啶-2-基、吡啶-3-基、苯基和 2-氯苯基)的儿茶酚酰胺(7a-l),作为有效的磷酸二酯酶(PDE)4 抑制剂。这些化合物的抑制活性被评估为针对人 PDE4(PDE4CAT)的核心催化结构域、全长 PDE4A4、PDE4B1、PDE4C1 和 PDE4D7 酶以及其他 PDE 家族成员。在所合成的 8 种化合物中,有 7a-l 种化合物被鉴定为具有中等到低纳摩尔范围内的亚微摩尔 IC 值。对化合物 7a-l 的结构-活性关系进行仔细分析表明,用二氟甲氧基取代 4-甲氧基可提高抑制活性。更有趣的是,4-二氟甲氧基苯甲酰胺 7i 和 7j 对 PDE4 的选择性更高,对其他 PDE 的选择性分别约为 3333 倍和 1111 倍。此外,具有优异 PDE4D7 抑制活性的化合物 7j 抑制了 LPS 诱导的小胶质细胞中 TNF-α 的产生。