This paper describes the development a series of peptidyl trifluoromethyl ketone inhibitors of human leukocyte elastase which are found to have excellent pharmacological profiles. Methods have been developed that allow for the synthesis of these inhibitors in stereochemically pure form. Two of these compounds, 1k and 1l, have high levels of oral bioavailability in several species. Compound 1l has entered development as ZD8321 and is presently undergoing clinical evaluation. These compounds demonstrate that peptidyl trifluoromethyl ketone inhibitors can achieve high levels of oral activity and bioavailability, and therefore they may prove useful as therapeutic agents in the treatment of diseases in which elastase is implicated.
This study has examined the abilities of (+/-)-CP96345 and (+/-)-SR48968, nonpeptide antagonists selective for the tachykinin NK1 and NK2 receptors, respectively, to block bronchoconstriction caused by intravenous administration of direct-acting receptor agonists and the indirect-acting mimetics capsaicin, serotonin and 2-methyl-serotonin in the anesthetized guinea pig. The NK1 antagonist (+/-)-CP96345 was found to cause, at a maximally tolerated dose of 9 mumol/kg, an approximate 10-fold rightward shift of the dose-response curves for selective NK1 agonists substance P (SP), [Sar9,Met(O2)11]SP and Ac-[Arg6,Sar9,Met(O2)11]SP6-11 without altering responses to selective NK2 agonists neurokinin A (NKA), [Nle10]NKA4-10 or [beta-Ala8]NKA4-10. The NK2 antagonist (+/-)-SR48968 caused dose-dependent rightward shifts of the dose-response curves for the NK2 but not the NK1 agonists. Results using combinations of the receptor antagonists indicate that the NK2 agonists could cause bronchoconstriction by acting on the NK1 receptors at large doses relative to those used without antagonists. Of the agonists used here, [beta-Ala8]NKA4-10 appeared to be the most selective for the NK2 receptors. When used alone, only (+/-)-SR48968 was found to block bronchoconstriction caused by capsaicin, serotonin (after blockade of 5-HT2 receptors by LY53857) and 2-methyl-serotonin. When (+/-)-CP96345 was also given, larger additional blockade was seen with capsaicin than with serotonin or 2-methyl-serotonin as mimetic substance. Atropine caused small and variable degrees of blockade of serotonin and 2-methyl-serotonin but not of capsaicin after combinations of the two antagonists.(ABSTRACT TRUNCATED AT 250 WORDS)
The peptide leukotrienes (LTs), LTC4, LTD4 and LTE4, produced concentration-related contraction of isolated strips of guinea pig gall bladder (GPGB) with pD2 values of 8.48 +/- 0.11, 8.26 +/- 0.22 and 7.28 +/- 0.08, respectively. In the presence of propranolol and indomethacin in epithelium-denuded GPGB, pKB values for the LT antagonist ICI198,615 vs. LTC4, LTD4 and LTE4 were, respectively: 8.61 +/- 0.12, 8.89 +/- 0.13 and 8.70 +/- 0.17. Similarly, pKB values for the LT antagonist SKF104,353 were 7.28 +/- 0.19, 7.88 +/- 0.17 and 7.45 +/- 0.17. Previous studies have shown that inhibition of LTC4 metabolism can alter the apparent affinity of the LT, especially LTC4; consequently, metabolism of [3H]LTC4 in chopped GPGB was investigated. [3H]LTC4 was converted rapidly by gamma-glutamyl transpeptidase to [3H]LTD4 with little accumulation of [3H]LTE4. The combination of acivicin (ACI) and reduced glutathione (GSH) provided complete inhibition of gamma-glutamyl transpeptidase. pD2 values for LTC4 in the presence of ACI/GSH were 8.54 +/- 0.16. pKB values for ICI198,615 and SKF104353 in the presence of ACI/GSH were, i.e., 8.42 +/- 0.14 and 7.53 +/- 0.12, respectively, vs. LTC4 and identical to those obtained in the absence of inhibitors. The mechanism(s) underlying LT-induced contraction was evaluated using the calcium channel blockers diltiazem, nifedipine and verapamil. Noncompetitive antagonism was observed against all LTs indicating the involvement of voltage-sensitive calcium channels in the contractile response. Similarly, all LTs increased polyphosphoinositide hydrolysis. These data indicate: 1) GPGB contains a single type of LT receptor similar to that in human airways and 2) LT-induced contraction appears to involve both polyphosphoinositol formation and voltage-dependent Ca++ channels.
To examine the pathogenetic role of neutrophil elastase in airway hypersecretion, we have studied the novel inhibitor of this enzyme, [4-(4-bromophenylsulfonylcarbamoyl)benzoyl-L-valyl-L-proline 1 (RS)-(1-trifluroacetyl-2-methylprolyl)amide] (ICI 200, 355). This compound was a potent (Ki = 0.6 +/- 0.22 nM) inhibitor of human neutrophil elastase and a much weaker inhibitor of other hydrolases. ICI 200,355 also inhibited the ongoing destruction of insoluble elastin by human neutrophil elastase. ICI 200,355 produced a concentration-dependent inhibition of the secretory response induced by human neutrophil elastase (10(-8) M), with an IC50 of 1.6 x 10(-8) M. ICI 200,355 had no effect on baseline secretion or on the secretory response to chymase, cathepsin G or Pseudomonas aeruginosa elastase. Thus, ICI 200,355 appears to be a useful tool for investigating the role of human neutrophil elastase in inflammatory disorders associated with hypersecretion, such as cystic fibrosis, chronic bronchitis, and asthma.
Annals of the New York Academy of SciencesVolume 629, Issue 1 p. 340-358 Pharmacological Studies of Tachykinin Receptors Mediating Contraction of Isolated Airway Smooth Muscle C. K. BUCKNER, Corresponding Author ICI Pharmaceuticals Group ICI Americas, Inc. Wilmington, Delaware 19897Corresponding author.Search for more papers by this authorS. V. GHANEKAR, ICI Pharmaceuticals Group ICI Americas, Inc. Wilmington, Delaware 19897Search for more papers by this authorJ. S. KAYS, ICI Pharmaceuticals Group ICI Americas, Inc. Wilmington, Delaware 19897Search for more papers by this authorR. D. KRELL, ICI Pharmaceuticals Group ICI Americas, Inc. Wilmington, Delaware 19897Search for more papers by this authorR. I. FISHLEDER, Department of Anesthesiology, University of Wisconsin-Madison 600 Highland Avenue Madison, Wisconsin 53792 William S. Middleton Veterans Administration Hospital Madison, Wisconsin 53792 2110 Goblins Gully Dr. S. E., Cebar Rapids, 1A 52403Search for more papers by this authorJ. A. WILL, Department of Anesthesiology, University of Wisconsin-Madison 600 Highland Avenue Madison, Wisconsin 53792Search for more papers by this authorJ. M. VANN, Department of Anesthesiology, University of Wisconsin-Madison 600 Highland Avenue Madison, Wisconsin 53792Search for more papers by this author C. K. BUCKNER, Corresponding Author ICI Pharmaceuticals Group ICI Americas, Inc. Wilmington, Delaware 19897Corresponding author.Search for more papers by this authorS. V. GHANEKAR, ICI Pharmaceuticals Group ICI Americas, Inc. Wilmington, Delaware 19897Search for more papers by this authorJ. S. KAYS, ICI Pharmaceuticals Group ICI Americas, Inc. Wilmington, Delaware 19897Search for more papers by this authorR. D. KRELL, ICI Pharmaceuticals Group ICI Americas, Inc. Wilmington, Delaware 19897Search for more papers by this authorR. I. FISHLEDER, Department of Anesthesiology, University of Wisconsin-Madison 600 Highland Avenue Madison, Wisconsin 53792 William S. Middleton Veterans Administration Hospital Madison, Wisconsin 53792 2110 Goblins Gully Dr. S. E., Cebar Rapids, 1A 52403Search for more papers by this authorJ. A. WILL, Department of Anesthesiology, University of Wisconsin-Madison 600 Highland Avenue Madison, Wisconsin 53792Search for more papers by this authorJ. M. VANN, Department of Anesthesiology, University of Wisconsin-Madison 600 Highland Avenue Madison, Wisconsin 53792Search for more papers by this author First published: July 1991 https://doi.org/10.1111/j.1749-6632.1991.tb37988.xCitations: 9 AboutPDF ToolsRequest permissionExport citationAdd to favoritesTrack citation ShareShare Give accessShare full text accessShare full-text accessPlease review our Terms and Conditions of Use and check box below to share full-text version of article.I have read and accept the Wiley Online Library Terms and Conditions of UseShareable LinkUse the link below to share a full-text version of this article with your friends and colleagues. Learn more.Copy URL Share a linkShare onEmailFacebookTwitterLinked InRedditWechat Citing Literature Volume629, Issue1Advances in the Understanding andTreatment of AsthmaJuly 1991Pages 340-358 RelatedInformation
ICI 186,756 is a representative of a new chemical class of synthetic inhibitors of human neutrophil elastase (HNE). This compound demonstrated competitive inhibition of HNE with a Ki of 3.6 +/- 0.8 x 10(-9) mol/L. The selectivity of ICI 186,756 for HNE versus a variety of enzymes ranged from a minimum of 870-fold to greater than 640,000. The compound effectively inhibited hydrolysis of bovine ligamentum nuchae elastin by HNE. Pretreatment of hamsters with ICI 186,756 up to 2 h before intratracheal administration of HNE inhibited enzyme-induced increases in lung weight, total lavageable red cells, and total lavageable white cells measured 24 h after HNE administration. In contrast, similar lung effects produced by intratracheal administration of porcine pancreatic elastase (PPE) were not inhibited by ICI 186,756. Treatment of hamsters with 43 mumol/kg (sc) of ICI 186,756 for 14 or 28 days modulated the increases in alveolar diameter produced by both PPE and HNE, respectively. It is concluded that ICI 186,756 is a potent, competitive, and selective inhibitor of HNE that may be useful in understanding the role of this enzyme in animal models of various diseases. Furthermore, the maintenance or progression of emphysema-like lesions induced in hamsters by PPE do not appear to be due to the persistence of that enzyme within the lung.
ICI 200,880 is representative of a new chemical class of inhibitors of human neutrophil elastase (HNE). The compound demonstrated competitive kinetics vs HNE with a Ki value of 5.0 x 10(-10) M. The selectivity of ICI 200,880 for HNE versus a variety of enzymes ranged from 150- (relative to porcine pancreatic elastase [PPE]) to greater than 360,000-fold in favor of HNE. In pharmacokinetic studies ICI 200,880 displayed a long retention time when administered directly to the lung and was rapidly eliminated when administered intravenously. Aerosol pretreatment of hamsters with ICI 200,880 before intratracheal administration of HNE produced a long-lasting inhibition of enzyme-induced increases in lung weight, total lavageable red cells, and total lavageable white cells. Subcutaneous administration of either 50 or 100 mumol/kg (twice/day) of ICI 200,880 for 14 or 28 days prevented the time-dependent increase in alveolar diameter produced by a single intratracheal dose of PPE when compound dosing was initiated 24 hours following the enzyme. Treatment of hamsters with ICI 200,880 using the same protocol and doses for 8 weeks prevented the destructive lesion induced by a single intratracheal dose of HNE. It is concluded that ICI 200,880 has biochemical, pharmacokinetic, and pharmacologic profiles that make it a useful therapeutic agent for understanding the role of HNE in various diseases. ICI 200,880 is presently being evaluated in man.
The receptors involved in the bronchoconstriction evoked in vivo by intravenous administration to the anesthetized guinea pig of serotonin and serotonin-related agonists have been examined in this study. Animals were pretreated with indomethacin and (+/-)-propranolol to inhibit cyclooxygenase and beta adrenergic receptors, respectively, and pulmonary parameters were obtained with a Buxco pulmonary mechanics computer. Dose-dependent increases in pulmonary resistance and decreases in dynamic lung compliance were produced by serotonin, 2-methyl-serotonin, 5-methoxy-tryptamine, alpha-methyl-serotonin, 5-carboxamidotryptamine, and m-trifluoromethylphenylpiperazine (TFMPP). Responses to all agonists except 2-methyl-serotonin, a selective 5-hydroxytryptamine3 (5-HT3) agonist, were antagonized by the 5-HT2 antagonists, LY53857 and ketanserin. Zaclopride, 1 and 10 mg/kg, a selective 5-HT3 antagonist, blocked responses to 2-methyl-serotonin. A maximally effective dose of LY53857 (1 mg/kg) produced larger shifts of the dose-response curves to serotonin, 5-methoxytryptamine and alpha-methyl-serotonin than did a maximally effective dose of ketanserin (1 mg/kg). Thiorphan, 10 mg/kg, an inhibitor of neutral endopeptidase, potentiated 2-methyl-serotonin and, when studied in the presence of LY53857, also potentiated serotonin, 5-methoxytryptamine and TFMPP. After thiorphan and LY53857, responses to serotonin, but not 5-methoxytryptamine or TFMPP, were blocked by zaclopride. Capsaicin pretreatment of the animals resulted in rightward shifts of the dose-response curves to serotonin, 2-methyl-serotonin and TFMPP, but not to 5-methoxytryptamine or alpha-methyl-serotonin. Potentiation by thiorphan and antagonism by zaclopride of responses to serotonin were still evident after capsaicin pretreatment.(ABSTRACT TRUNCATED AT 250 WORDS)
ICI 200,880 and its close structural analog, ICI 200,355, are representatives of a new chemical class of inhibitors of human neutrophil elastase (HNE). Both compounds are substituted tripeptide ketones, which demonstrated competitive kinetics versus HNE, with identical Ki values of 5.0 x 10(-10) M. The selectivity of ICI 200,880 for HNE versus a variety of enzymes ranged from 150-fold [relative to porcine pancreatic elastase (PPE)] to greater than 360,000-fold in favor of HNE. The compound effectively inhibited HNE-hydrolysis of bovine ligamentum nuchae elastin. In pharmacokinetic studies, ICI 200,880 and ICI 200,355 displayed long retention times when administered directly to the lung and were rapidly eliminated after intravenous administration. Pretreatment of hamsters with either inhibitor before intratracheal administration of HNE produced dose- and time-dependent inhibition of enzyme-induced increases in lung weight, total lavageable red cells, and total lavageable white cells. Aerosol administration of ICI 200,880 produced similar results. Subcutaneous administration of either 50 or 100 mumol/kg (twice/day) of ICI 200,880 for 14 or 28 days prevented the time-dependent increase in alveolar diameter produced by a single intratracheal dose of PPE when compound dosing was initiated 24 h after the enzyme. Treatment of hamsters with the same protocol and doses of ICI 200,880 for 8 wk prevented the destructive lesion induced by a single intratracheal dose of HNE. It is concluded that ICI 200,880 and ICI 200,355 have biochemical, pharmacokinetic, and pharmacologic profiles that make them useful therapeutic agents for understanding the role of HNE in various diseases. ICI 200,880 is presently being evaluated in humans.
Annals of the New York Academy of SciencesVolume 629, Issue 1 p. 392-393 Guinea Pig Pulmonary Responses to Serotonin (5-HT) and Related Agonists C. K. BUCKNER, C. K. BUCKNER ICI Pharmaceuticals Group ICI Americas Inc. Wilmington, Delaware 19897Search for more papers by this authorD. DEA, D. DEA ICI Pharmaceuticals Group ICI Americas Inc. Wilmington, Delaware 19897Search for more papers by this authorN. LIBERATI, N. LIBERATI ICI Pharmaceuticals Group ICI Americas Inc. Wilmington, Delaware 19897Search for more papers by this authorR. D. KRELL, R. D. KRELL ICI Pharmaceuticals Group ICI Americas Inc. Wilmington, Delaware 19897Search for more papers by this author C. K. BUCKNER, C. K. BUCKNER ICI Pharmaceuticals Group ICI Americas Inc. Wilmington, Delaware 19897Search for more papers by this authorD. DEA, D. DEA ICI Pharmaceuticals Group ICI Americas Inc. Wilmington, Delaware 19897Search for more papers by this authorN. LIBERATI, N. LIBERATI ICI Pharmaceuticals Group ICI Americas Inc. Wilmington, Delaware 19897Search for more papers by this authorR. D. KRELL, R. D. KRELL ICI Pharmaceuticals Group ICI Americas Inc. Wilmington, Delaware 19897Search for more papers by this author First published: July 1991 https://doi.org/10.1111/j.1749-6632.1991.tb37993.xCitations: 2AboutPDF ToolsRequest permissionExport citationAdd to favoritesTrack citation ShareShare Give accessShare full text accessShare full-text accessPlease review our Terms and Conditions of Use and check box below to share full-text version of article.I have read and accept the Wiley Online Library Terms and Conditions of UseShareable LinkUse the link below to share a full-text version of this article with your friends and colleagues. Learn more.Copy URL Share a linkShare onFacebookTwitterLinked InRedditWechat No abstract is available for this article.Citing Literature Volume629, Issue1Advances in the Understanding andTreatment of AsthmaJuly 1991Pages 392-393 RelatedInformation
Nonadrenergic, noncholinergic contractile responses of guinea pig hilar bronchi to transmural electrical stimulation (TES) have been suggested to be due to release of endogenous tachykinins from capsaicin-sensitive neurons (C-fibers). Thiorphan and phosphoramidon, inhibitors of neutral endopeptidase (NEP, the major enzyme responsible for degrading tachykinins), were found to potentiate contractile responses of this isolated airway segment to TES and exogenously applied capsaicin, substance P and neurokinin A. However, the magnitude of potentiation by either inhibitor was smaller for TES and capsaicin (less than 10-fold leftward shift) than for the substrate agonists (about 100-fold leftward shift). This quantitative difference in potentiation by NEP inhibitors does not appear to be due to an influence of vasoactive intestinal peptide or calcitonin gene-related peptide, two endogenous peptides that might be released concomitantly by TES. Neither peptide caused marked effects on contractile responses to TES or tachykinins when applied to the isolated tissues. Addition of inhibitors of serine proteases, aminopeptidases, acetylcholinesterase and angiotensin-converting enzyme failed to further potentiate responses to TES in the presence of thiorphan. Therefore, the contractile response does not appear to be further modified by the activity of these peptidases. Neuropeptide gamma, but not neuropeptide K, was potentiated by thiorphan. The data suggest that peptides that are not substrates for NEP (for example, neuropeptide K) may also be released by TES from capsaicin-sensitive neurons to cause contraction. This may, at least in part, explain the quantitative difference in potentiation by NEP inhibitors of contractile responses to TES and to exogenously applied NEP-sensitive tachykinins in the guinea pig hilar bronchus.
A systematic structure-activity exploration of the carboxylic acid region in a series of indole- or indazole-derived leukotriene antagonists 1 led to several discoveries. Use of the 3-methoxy-p-tolyl fragment (illustrated in acid 1) for connecting the indole and the acidic site provides the most potent carboxylic acids 1, tetrazoles 20, and aryl sulfonimides 21. The aryl sulfonimides are 5-500 times more potent (in vitro and/or in vivo) than the corresponding carboxylic acids 1. The o-tolyl sulfonimides such as 114 show greater oral potency than the phenyl sulfonimides at a given level of in vitro activity. Acidic keto sulfone derivatives 10 (Nu = CH-(CO2CH3)SO2Ph) mimic the activity of the sulfonimides.
The influence of the epithelium on antagonism by ICI 204,219 of contractile responses to peptide leukotriene (LT) agonists was examined in guinea pig tracheal and human bronchial rings. The -log molar KB values for ICI 204,219 were found to be independent of the epithelium in both tissues. Even though uninfluenced by the epithelium, the -log molar KB values for ICI 204,219 were about 10-fold smaller in human airways than in guinea pig trachea. Removal of the epithelium from guinea pig trachea resulted in small leftward shifts of the concentration-response curves to LTC4 and LTD4 and rightward shifts of the concentration-response curves to LTE4 when examined in the presence of indomethacin. The potentiation of LTC4 and LTD4 by epithelium removal was not seen in the presence of inhibitors of the transformation of LTC4 to LTD4 and LTD4 to LTE4. The influence of the epithelium on responses to LTE4 remained in the presence of these metabolic inhibitors. The lipoxygenase inhibitors nordihydroguaiaretic acid, B755C, Rev 5901 and AA861 antagonized responses to LTE4 in the presence, but not in the absence of epithelium. In human airways, epithelium removal resulted in a small leftward shift of the concentration-response curve to LTD4 whereas responses to LTC4 and LTE4 were unaltered. This effect was not observed in the presence of indomethacin, relating it to reduced release of cyclooxygenase products. These data suggest that contractile responses of guinea pig trachea to LTE4 are modulated by LTE4-induced release of 5-lipoxygenase product(s) only when the epithelium is present.(ABSTRACT TRUNCATED AT 250 WORDS)
The dissociation constants (KB) at the LTD4 receptor on guinea pig trachea of a series of monocyclic and bicyclic cyclopentylurethane and cyclopentylacetamide N-arylsulfonyl amides have been measured. The KB was found to be remarkably tolerant of changes in the electronic constitution and lipophilicity of the bicyclic ring system (template). Thus, N-[4[[6-[[(cyclopentyloxy)carbonyl]amino]benzimidazol-1- yl]methyl]-3-methoxybenzoyl]benzenesulfonamide (11a) and N-[4-[[5-[[(cyclopentyloxy)carbonyl]amino]benzo[b]thien-3- yl]methyl]-3-methoxybenzoyl]benzene-sulfonamide (25a) had closely similar affinities (pKB, 9.20 and 9.31, respectively; LTE4 as agonist). It has been shown that the hetero-ring of the template need not be aromatic in order to achieve high affinity, since indoline 31 and 2,3-dihydrobenz-1,4-oxazines 37a-c had pKBs greater than 9. Further, it has been shown that an o-aminophenone (see 42 and Figure 3) can function as a template; the template in 42 [see iii] is bicyclic by virtue of the presence of an intramolecular hydrogen bond. In contrast, when the template is a phenyl ring (48), receptor affinity is markedly reduced. These findings support the notion that central bicyclic ring system in this family of peptidoleukotriene antagonists is a molecular feature which helps to preorganize the acylamino and acidic chains and thereby facilitate the molecular recognition event.
A perception of structural similarities between two independent series of leukotriene antagonists (one emanating from FPL 55712 and one based upon the leukotrienes themselves) led to the discovery of a novel class of indole and indazole derived antagonists of peptidoleukotrienes. A systematic exploration of C-6 substituted 4-(indol-1-ylmethyl)-3-methoxybenzoic acids identified cyclopentylacetamide and cyclopentylurethane as preferred substituents. The corresponding indazoles were equipotent. These compounds are selective leukotriene antagonists with pKB values of 7.5-7.8 vs LTE4 on guinea pig trachea.