Tatsumi Akitoshi, Inoue Sachiyo, Hamaguchi Tsuneo, Iwakawa Seigo
Educational Center for Clinical Pharmacy, Kobe Pharmaceutical University.
Department of Pharmaceutics, Kobe Pharmaceutical University.
Biol Pharm Bull. 2018 Feb 1;41(2):277-280. doi: 10.1248/bpb.b17-00680. Epub 2017 Nov 27.
Human serum albumin (HSA) has two major ligand-binding sites, sites I and II, and hydrolyzes compounds at both sites. Although the hydrolytic interaction of ester-type drugs with other drugs by HSA has been reported, there are only a few studies concerning the effect of pharmaceutical excipients on the hydrolysis of ester-type drugs by HSA. In the present study, we investigated the effect of ethanol (2 vol%; 345 mM) on the hydrolysis of aspirin, p-nitrophenyl acetate, and olmesartan medoxomil, which are ester-type drugs, with 4 different lots of HSA preparations. The hydrolysis activities of HSA toward aspirin, p-nitrophenyl acetate, and olmesartan medoxomil were measured from the pseudo-first-order degradation rate constant (k) of salicylic acid, p-nitrophenol, and olmesartan, respectively, which are the HSA-hydrolyzed products. Ethanol inhibited hydrolysis of aspirin by HSA containing low levels of fatty acids, but not by fatty acid-free HSA. Ethanol inhibited hydrolysis of p-nitrophenyl acetate by both fatty acid-free HSA and HSA containing low levels of fatty acids. In contrast, the hydrolysis of olmesartan medoxomil by HSA was insignificantly inhibited by ethanol, but inhibited not only by warfarin and indomethacin but also by naproxen, which are site I binding drugs and a site II binding drug, respectively. These results suggest that the inhibitory action of ethanol on the hydrolysis of ester-type drugs by HSA differs between site I binding drugs and site II binding drugs.
人血清白蛋白(HSA)有两个主要的配体结合位点,即位点I和位点II,且在这两个位点均可水解化合物。虽然已有报道称HSA对酯类药物与其他药物的水解相互作用,但关于药用辅料对HSA水解酯类药物影响的研究却很少。在本研究中,我们用4种不同批次的HSA制剂,研究了乙醇(2体积%;345 mM)对阿司匹林、对硝基苯乙酸酯和奥美沙坦酯(均为酯类药物)水解的影响。分别从水杨酸、对硝基苯酚和奥美沙坦(均为HSA水解产物)的准一级降解速率常数(k)测定HSA对阿司匹林、对硝基苯乙酸酯和奥美沙坦酯的水解活性。乙醇可抑制含低水平脂肪酸的HSA对阿司匹林的水解,但对不含脂肪酸的HSA则无此作用。乙醇可抑制不含脂肪酸的HSA和含低水平脂肪酸的HSA对对硝基苯乙酸酯的水解。相比之下,乙醇对HSA水解奥美沙坦酯的抑制作用不明显,但不仅被华法林和吲哚美辛抑制,还被萘普生抑制,它们分别是位点I结合药物和位点II结合药物。这些结果表明,乙醇对HSA水解酯类药物的抑制作用在位点I结合药物和位点II结合药物之间存在差异。