Doherty J B, Shah S K, Finke P E, Dorn C P, Hagmann W K, Hale J J, Kissinger A L, Thompson K R, Brause K, Chandler G O
Department of Medicinal Chemical Research, Merck Research Laboratories, Rahway, NJ 07065-9000.
Proc Natl Acad Sci U S A. 1993 Sep 15;90(18):8727-31. doi: 10.1073/pnas.90.18.8727.
A series of potent and highly selective time-dependent monocyclic beta-lactam inhibitors of human polymorphonuclear leukocyte elastase (PMNE, EC 3.4.21.37) is described. The intrinsic potency of these compounds, as exemplified by L-680,833 (k(inactivation)/K(i) of 622,000 M-1.s-1), is reflected at the cellular level where it inhibits generation of the specific N-terminal cleavage product A alpha-(1-21) from the A alpha chain of fibrinogen by enzyme released from isolated polymorphonuclear leukocytes stimulated with fMet-Leu-Phe with an IC50 of 0.06 microM. The inhibitory activity of L-680,833 is also apparent in whole blood stimulated with A23187, where it inhibits formation of A alpha-(1-21) and PMNE-alpha 1-proteinase inhibitor complex formation with IC50 values of 9 microM. Pharmacokinetic studies indicate that after oral dosing L-680,833 is bioavailable in rats and rhesus monkeys. This oral bioavailability is reflected by the inhibition (i) of tissue damage elicited in hamster lungs by intratracheal instillation of human PMNE and (ii) enzyme released from human PMN stimulated after their transfer into the pleural cavity of mice. The properties of L-680,833 allow it to effectively supplement the activity of natural inhibitors of PMNE in vivo, suggesting that this type of low-molecular-weight synthetic inhibitor could have therapeutic value in diseases where PMNE damages tissue.
本文描述了一系列强效且高选择性的人多形核白细胞弹性蛋白酶(PMNE,EC 3.4.21.37)的时间依赖性单环β-内酰胺抑制剂。这些化合物的内在效力,以L-680,833为例(失活常数k(inactivation)/抑制常数K(i)为622,000 M-1·s-1),在细胞水平上得以体现,它能抑制分离的多形核白细胞经fMet-Leu-Phe刺激后释放的酶从纤维蛋白原Aα链产生特定的N端裂解产物Aα-(1-21),半数抑制浓度(IC50)为0.06 microM。L-680,833的抑制活性在经A23187刺激的全血中也很明显,它能抑制Aα-(1-21)的形成以及PMNE-α1-蛋白酶抑制剂复合物的形成,IC50值为9 microM。药代动力学研究表明,口服给药后L-680,833在大鼠和恒河猴体内具有生物利用度。这种口服生物利用度体现在以下方面:(i)抑制气管内注入人PMNE引起的仓鼠肺组织损伤;(ii)抑制人多形核白细胞转移至小鼠胸腔后受到刺激而释放的酶。L-680,833的特性使其能够在体内有效补充PMNE天然抑制剂的活性,这表明这类低分子量合成抑制剂在PMNE损伤组织的疾病中可能具有治疗价值。