Kim In-Hae, Morisseau Christophe, Watanabe Takaho, Hammock Bruce D
Department of Entomology and UC Davis Cancer Center, University of California-Davis, One Shields Avenue, Davis, CA 95616, USA.
J Med Chem. 2004 Apr 8;47(8):2110-22. doi: 10.1021/jm030514j.
The soluble epoxide hydrolase (sEH) is involved in the metabolism of endogenous chemical mediators that play an important role in blood pressure regulation and inflammation. 1,3-Disubstituted ureas are potent inhibitors of sEH that are active both in vitro and in vivo. However, their poor solubility in either water or lipid reduces their in vivo efficacy and makes them difficult to formulate. To improve these physical properties, the effect of incorporating polar functional groups into one of the alkyl chains was evaluated on their inhibitor potencies, water solubility, octanol/water partition coefficients (log P), and melting points. No loss of inhibition potency was observed when a polar functional group was incorporated at least five atoms ( approximately 7.5 A) from the central urea carbonyl. In addition, the presence of a polar group at least 11 atoms away from the urea carbonyl group for the mouse and human sEHs, respectively, did not alter the inhibitor potency. The resulting compounds have better water solubility and generally lower log P values and melting points than nonfunctionalized liphophilic ureas. These properties will make the compounds more bioavailable and more soluble in either water- or oil-based formulations.
可溶性环氧化物水解酶(sEH)参与内源性化学介质的代谢,这些介质在血压调节和炎症中起重要作用。1,3-二取代脲是sEH的有效抑制剂,在体外和体内均有活性。然而,它们在水或脂质中的溶解度较差,降低了它们的体内疗效,并且使其难以制剂化。为改善这些物理性质,研究了将极性官能团引入其中一条烷基链对其抑制效力、水溶性、正辛醇/水分配系数(log P)和熔点的影响。当极性官能团与中心脲羰基至少间隔五个原子(约7.5 Å)时,未观察到抑制效力的损失。此外,对于小鼠和人sEH,分别在距脲羰基至少11个原子处存在极性基团不会改变抑制效力。与未官能化的亲脂性脲相比,所得化合物具有更好的水溶性,通常具有更低的log P值和熔点。这些性质将使化合物具有更高的生物利用度,并且在水基或油基制剂中更易溶解。