Lin C J, Akarawut W, Smith D E
College of Pharmacy and Upjohn Center for Clinical Pharmacology, The University of Michigan, Ann Arbor 48109, USA.
Pharm Res. 1999 May;16(5):609-15. doi: 10.1023/a:1018847818766.
To examine the inhibitory potential of enalapril [and other angiotensin converting enzyme (ACE) inhibitors] on glycylsarcosine (GlySar) transport by the high-affinity renal peptide transporter.
Studies were performed in rabbit renal brush border membrane vesicles in which the uptake of radiolabeled GlySar was examined in the absence and presence of captopril, enalapril, enalaprilat, fosinopril, lisinopril, quinapril, quinaprilat, ramipril and zofenopril.
Kinetic analyses demonstrated that enalapril inhibited the uptake of GlySar in a competitive manner (Ki approximately 6 mM). Fosinopril and zofenopril had the greatest inhibitory potency (IC50 values of 55 and 81 microM, respectively) while the other ACE inhibitors exhibited low-affinity interactions with the renal peptide transporter. With respect to structure-function, ACE inhibitor affinity was strongly correlated with drug lipophilicity (r = 0.944, p < 0.001 for all ACE inhibitors; r = 0.983, p < 0.001 without enalaprilat, quinaprilat and quinapril).
The data suggest that enalapril and GlySar compete for the same substrate-binding site on the high-affinity peptide transporter in kidney, and that ACE inhibitors can interact with the renal carrier and inhibit dipeptide transport.
研究依那普利[及其他血管紧张素转换酶(ACE)抑制剂]对高亲和力肾肽转运体转运甘氨酰肌氨酸(GlySar)的抑制潜力。
在兔肾刷状缘膜囊泡中进行研究,检测在不存在和存在卡托普利、依那普利、依那普利拉、福辛普利、赖诺普利、喹那普利、喹那普利拉、雷米普利和佐芬普利的情况下放射性标记的GlySar的摄取。
动力学分析表明依那普利以竞争性方式抑制GlySar的摄取(Ki约为6 mM)。福辛普利和佐芬普利具有最大的抑制效力(IC50值分别为55和81 μM),而其他ACE抑制剂与肾肽转运体表现出低亲和力相互作用。关于结构-功能,ACE抑制剂亲和力与药物亲脂性密切相关(所有ACE抑制剂的r = 0.944,p < 0.001;不包括依那普利拉、喹那普利拉和喹那普利时r = 0.983,p < 0.001)。
数据表明依那普利和GlySar竞争肾脏中高亲和力肽转运体上的同一底物结合位点,且ACE抑制剂可与肾载体相互作用并抑制二肽转运。