Ohta Hiroshi, Ishizaka Tomoko, Tatsuzuki Makoto, Yoshinaga Mitsukane, Iida Izumi, Tomishima Yasumitsu, Toda Yoshihisa, Saito Shuji
Medicinal Chemistry Laboratories, Taisho Pharmaceutical Co. Ltd, 1-403 Yoshino-cho, Kita-ku, Saitama-shi, Saitama, Japan.
Bioorg Med Chem Lett. 2007 Nov 15;17(22):6299-304. doi: 10.1016/j.bmcl.2007.09.004. Epub 2007 Sep 7.
A novel series of N-alkylidenearylcarboxamides 4, a CB(2) receptor agonist, were synthesized and evaluated for activity against the human CB(2) receptor. In a previous paper, we reported that sulfonamide derivative 1 acted as a potent CB(2) receptor agonist (IC(50)=65 nM, EC(50)=19 nM, E(max)=90%). However, compound 1 also exhibited poor metabolic stability in human liver microsomes. During the structural modification of 1, we found that a novel series of N-alkylidenearylcarboxamide, 4-1, had a moderate affinity for the CB(2) receptor (IC(50)=260 nM, EC(50)=86 nM, E(max)=100%) and good metabolic stability in human liver microsomes. We explored its analogues to discover compounds with a high affinity for the CB(2) receptor and with good oral bioavailability. Among them, compounds 4-9 and 4-27 had high affinities for the human CB(2) receptor (CB(2) IC(50)=13 nM and 1.2 nM) and a high selectivity for CB(2) (CB(1) IC(50)/CB(2) IC(50)=270 and 1600); furthermore, significant plasma levels were observed following oral administration in rats (C(max)=233 ng/mL and 148 ng/mL, respectively, after a dose of 10 mg/kg). Furthermore, compound 4-9 had good oral bioavailability (F=52%, 3mg/kg).
合成了一系列新型的N-亚烷基芳基羧酰胺4,一种CB(2)受体激动剂,并对其针对人CB(2)受体的活性进行了评估。在之前的一篇论文中,我们报道磺酰胺衍生物1作为一种有效的CB(2)受体激动剂(IC(50)=65 nM,EC(50)=19 nM,E(max)=90%)。然而,化合物1在人肝微粒体中也表现出较差的代谢稳定性。在对1进行结构修饰的过程中,我们发现一系列新型的N-亚烷基芳基羧酰胺4-1对CB(2)受体具有中等亲和力(IC(50)=260 nM,EC(50)=86 nM,E(max)=100%),并且在人肝微粒体中具有良好的代谢稳定性。我们探索了其类似物以发现对CB(2)受体具有高亲和力且具有良好口服生物利用度的化合物。其中,化合物4-9和4-27对人CB(2)受体具有高亲和力(CB(2) IC(50)=13 nM和1.2 nM)以及对CB(2)具有高选择性(CB(1) IC(50)/CB(2) IC(50)=270和1600);此外,在大鼠口服给药后观察到显著的血浆水平(分别在10 mg/kg剂量后,C(max)=233 ng/mL和148 ng/mL)。此外,化合物4-9具有良好的口服生物利用度(F=52%,3mg/kg)。