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Biomedical subjects

L P Feigen

Publications and source records attributed to L P Feigen.

At least 19 recordsLinked to original sources

Protective effect of oral xemilofiban in arterial thrombosis in dogs: increased activity in combination with aspirin.

BACKGROUND: Inhibition of platelet aggregation by preventing the binding of fibrinogen to glycoprotein (GP) IIb/IIIa on activated platelets results in antithrombotic activity. We report on the antithrombotic effect of xemilofiban (SC-54684A), an oral GP IIb/IIIa antagonist, administered alone or with aspirin (ASA) in an acute thrombosis model. METHODS AND RESULTS: Conscious dogs were treated with xemilofiban (1.25, 2.5, 5.0, or 6 mg/kg, n=6); low-dose (LD, 81 mg) ASA, n=7; high-dose (HD, 162 mg) ASA, n=6; xemilofibran 1.25 mg/kg plus LD ASA, n=6; xemilofibran 1.25 mg/kg plus HD ASA, n=6; or placebo, n=7. Dogs were anesthetized 60 minutes later, and the effects of the treatments were evaluated after electrolytic injury (250 microA for 180 minutes) in the left circumflex coronary artery. Bleeding time (BT) was assessed in a separate study. Incidence of thrombosis was reduced (P<0.05) by xemilofiban > or =2.5 mg/kg, HD ASA, or xemilofiban 1.25 mg/kg plus HD ASA compared with placebo. Xemilofiban > or =2.5 mg/kg or xemilofiban 1.25 mg/kg plus HD ASA significantly increased time to occlusion, inhibited ex vivo platelet aggregation to collagen >90%, and prevented or decreased (P<0.05) cyclic flow variations (CFVs) compared with placebo. BT was increased (P<0.05) with xemilofiban > or =2.5 mg/kg but not with xemilofiban 1.25 mg/kg plus HD ASA. CONCLUSIONS: Xemilofiban > or =2.5 mg/kg, HD ASA, or xemilofiban 1.25 mg/kg plus HD ASA significantly reduced the incidence of thrombosis. These doses of xemilofiban or xemilofiban 1.25 mg/kg plus HD ASA increased time to occlusion, inhibited ex vivo platelet aggregation by >90%, and prevented or reduced CFVs. Xemilofiban > or =2.5 mg/kg but not xemilofiban 1.25 mg/kg plus HD ASA significantly increased BT.

Administration, Oral↗

Assessment of platelet function assays.

Optical aggregometry, traditionally used to assess platelet function, is highly dependent on sample preparation and technical procedure; as a result, data from various laboratories can be quite variable. In a study designed to assess the sources of variation, it was determined that the total standard deviation ranged from 3.6% to 7.7%. The assay variation by one analyst on one aggregometer on a single day ranged from 1.7 to 4.6. Day-to-day variation contributed 42% to 63% of the total variation, between-operator variation contributed 1% to 33% of the total variation, and within [between repeat measurements for a given sample by a given operator on a single day] variation contributed 22% to 36% of the total variation. Because of the disadvantages associated with optical aggregometry, alternate platelet function assays were considered and their correspondence to optical aggregometry was evaluated: activated clotting time, whole blood aggregometry, platelet count ratio, Platelet Function Analyzer (PFA-100, Dade), and Rapid Platelet function Assay (Accumetrics). Of those assays evaluated, activated clotting time and PFA-100 are assays that measure aspects of coagulation and hemostasis, whereas whole blood aggregometry, platelet count ratio, and RPFA are more closely related to platelet function. Each assay has value in monitoring various aspects of the coagulation process. The best method for monitoring safety and efficacy of various inhibitors of platelet function will ultimately be determined by clinical trials.

Blood Platelets↗

Thrombosis triggered by severe arterial lesions is inhibited by oral administration of a glycoprotein IIb/IIIa antagonist.

Platelet aggregation and thrombosis play an important role in the onset of acute coronary events. Regardless of the stimulus for activation, platelet thrombus formation is ultimately regulated through the IIb/IIIa receptor complex. The effects of oral administration of xemilofiban, a non-peptide mimetic of the RGDF sequence of the IIb/IIIa receptor complex, on thrombus formation were evaluated in a canine model. Xemilofiban significantly reduced platelet deposition on severely damaged arterial wall. Platelet deposition was reduced at both low (13 +/- 1 from 56 +/- 18 x 10(6) platelets cm-2; P < 0.05) and high (23 +/- 2 from 111 +/- 21 x 10(6) platelets cm-2; P < 0.01) shear rates. Platelet deposition was reduced to a monolayer as seen by electron microscopy (platelet-vessel wall interaction). Therefore, the availability of an orally active IIb/IIIa antagonist for chronic use may have significant value in preventing thrombus formation in those clinical situations associated with severe arterial injury, such as atherosclerotic plaque disruption.

Administration, Oral↗

The amino-terminal one-third of alpha IIb defines the ligand recognition specificity of integrin alpha IIb beta 3.

The integrin alpha subunits play a major role in the regulation of ligand binding specificity. To gain further insight into the regions of the alpha subunits that regulate ligand specificity, we have utilized alpha v / alpha IIb chimeras to identify regions of alpha IIb that when substituted for the homologous regions of alpha v switched the ligand binding phenotype of alpha v beta 3 to that of alpha IIb beta 3. We report that the ligand recognition specificity of beta 3 integrins is regulated by the amino-terminal one-third of the alpha subunit. Substitution of the amino-terminal portion of alpha v with the corresponding 334 residues of alpha IIb reconstituted reactivity with both alpha IIb beta 3-specific activation-dependent (PAC1) and -independent (OPG2) ligand mimetic antibodies in addition to small highly specific activation-independent ligands. In contrast, substitution of the amino-terminal portion alone or the divalent cation repeats alone were not sufficient to change ligand binding specificity. These data in combination with previous studies demonstrate that integrin ligand recognition requires cooperation between elements in both the alpha and beta subunits and indicate that the ligand binding pocket is a structure assembled from elements of both the alpha and beta subunits.

Amino Acid Sequence↗

A mimetic of the RGDF-peptide [arginine-glycine-aspartic acid-phenylalanine] blocks aggregation and flow-induced platelet deposition on severely injured stenotic arterial wall. Effects on different animal models and in humans.

8-Guanidino-octanoyl-aspartic acid-phenylalanine (SC-49992), a mimetic of the tetrapeptide arginine-glycine-aspartic acid-phelylalanine, inhibits fibrinogen and vitronectin binding to GP IIb/IIIa. SC-49992 effects on impedance and optical aggregation were compared in different species (human, porcine and dog), SC-49992 induced significant inhibition both in whole blood and PRP aggregation, in all species; however, porcine platelets had a SC-49992 IC50 = 2.5 mM while human and dog platelets had a significant lower IC50 (1 microM and 1.5 microM, respectively). Inhibition of flow-mediated platelet deposition on severely injured vessels was studied in porcine blood at high and low shear rates for 5 minutes. Additionally, studies were performed in vessels with 80% stenosis. SC-49992 reduced platelet deposition both at high and low shear rate in parallel streamlined flow and in stenotic conditions. The lower affinity of porcine platelets for SC-49992 seems to be due to a species difference at the GPIIb/IIIa receptor RGD-sequence level.

Amino Acid Sequence↗

The protective dose of the potent GPIIb/IIIa antagonist SC-54701A is reduced when used in combination with aspirin and heparin in a canine model of coronary artery thrombosis.

BACKGROUND: Fibrinogen receptor antagonists block the fibrinogen-platelet interaction at the GPIIb/IIIa receptors and inhibit thrombus formation. SC-54701 is the active metabolite of SC-54684A, an orally fibrinogen receptor antagonist. We compared the efficacy of SC-54701A (SCa, hydrochloride salt) with that of aspirin (ASA) or heparin and with combination therapy in a canine model of continuous current injury. METHODS AND RESULTS: Sixty-six dogs were used (6 per treatment). SCa (15-minute loading dose followed by [//] infusion [microgram/kg per minute]: (0.87//0.39=1 X SCa; 0.52//0.23=0.6 X SCa; and 0.425//0.20= 0.5 X SCa), ASA (2.8 mg/kg), heparin (200 U/kg plus 1000 U/h), or saline (0.1 mL/kg) was administered intravenously. Experimental time was 180 minutes of current. Time to occlusion was increased (P < .05) by SCa (T=incidence of thrombosis) (1 X SCa, >180 minutes [T=0]; 0.6 X SCa, 158 +/- 15 minutes [T=2]; 0.5 X SCa, 130 +/- 22 minutes [T=4]), heparin (114 +/- 16 minutes [T=5]), and ASA plus heparin (130 +/- 11 minutes [T=5]) relative to saline (58 +/- 7 minutes [T=6]). Time to occlusion for the SCa treatments was increased compared with ASA (64 +/- 7 minutes [T=6]). When 0.5 X SCa was administered with ASA plus heparin, time to occlusion was >180 minutes [T=0]. SCa provided complete protection at > or = 90% inhibition of ex vivo collagen-induced platelet aggregation. Cyclic flow variations were minimal with SCa or any treatment involving 0.5 X SCa and ASA. CONCLUSIONS: SCa has dose-dependent antithrombotic efficacy and inhibits ex vivo platelet aggregation. ASA, heparin, or saline was ineffective in this model. SCa (0.5X) plus ASA and heparin maximized the antithrombotic effect of this lower dose of SCa.

Animals↗

Extended inhibition of platelet aggregation with the orally active platelet inhibitor SC-54684A.

BACKGROUND: Platelet aggregation is important in thrombotic events, and platelets play a major role in the etiology of several cardiovascular diseases. Platelet aggregation requires the binding of fibrinogen (fgn) to activated platelets. Synthetic peptides modeled after the RGD binding sequence on the fgn alpha-chain block the platelet glycoprotein (GP) IIb/IIIa receptor for fgn and effectively inhibit aggregation. SC-54684A (SCp, orally active prodrug of the active moiety SC-54701, SCa) is a mimetic of the RGD-containing peptide sequence that is recognized by the platelet GPIIb/IIIa receptor. SCa blocks the binding of fgn to the platelet and therefore prevents platelet aggregation in response to all agonists. METHODS AND RESULTS: SCp was administered orally at 1.25, 2.5, 5.0, and 7.5 mg/kg in a single-dose, dose-ranging study. Blood samples were taken periodically for 24 hours, and platelet-rich plasma was prepared and tested for inhibition of ex vivo collagen-induced platelet aggregation. The plasma concentration of active moiety was determined by bioassay. The time, inhibition, and concentration data were used to predict two doses that would result in minimum daily inhibition levels of 30% and 70% when administered twice daily (0.6 and 2.4 mg/kg, respectively). SCp was administered orally to conscious dogs twice daily for 14 days (after dose adjustment). Blood samples were obtained at daily peak and trough plasma levels (predicted from dose-ranging study). Inhibition of ex vivo collagen-induced platelet aggregation and concentration of active moiety in the plasma were determined. Average inhibition of platelet aggregation and plasma concentration of active moiety amounted to approximately 21% and 14 ng/mL at 1.5 mg/kg BID and 75% and 24 ng/mL at 2.4 ng/kg BID at daily minimum plasma levels (trough) in steady state. Platelet counts in the 2.4-mg/kg group declined from 3.2 x 10(5)/microL to 2.5 x 10(5)/microL in the first 9 days of dosing, with no further decline despite continued administration of compound. No changes were observed in the animals receiving 1.5 mg/kg. CONCLUSIONS: The results of the dose-ranging study show that oral administration of SCp results in dose-dependent inhibition of platelet aggregation. As shown in the 14-day administration, this dose-dependent inhibition can be maintained for an extended period while exhibiting no adverse effects. SCp is a leading candidate for development and is currently in clinical trials.

Administration, Oral↗

A new method for measurement of plasma concentration of orally active glycoprotein IIb/IIIa antagonists.

A bioassay for determining concentrations of antiplatelet compounds in plasma or aqueous solution has been developed. The method uses an aliquot of plasma from treated animals to inhibit collagen-induced platelet aggregation in pooled platelet-rich plasma (PRP) obtained from donor dogs. The concentration in plasma from treated animals was estimated using a standard curve of inhibition established using plasma from untreated animals which had been spiked with known amounts of compound. For independent validation, plasma concentrations of certain compounds were determined in identical dog plasma samples by both bioassay and HPLC. Results from the two methods were concordant. The bioassay provides an accurate and sensitive method for measuring antiplatelet activity without the need for extraction of plasma samples and may be used to measure activity in any solution which is compatible with PRP. This assay is routinely used to provide an estimate of absorption of prodrugs and systemic conversion to active compound after oral dosing. Some of the compounds of interest are ester-acid pairs with the inactive ester prodrug being cleaved to the active acid following administration. Compounds were administered orally (ester) or IV (acid) and blood samples were taken periodically for 24 hours. Plasma concentration of active moiety was determined for each time point and the area under the curve (AUC) of concentration vs. time was calculated. Comparing the AUCs for oral and IV routes of administration yielded the Oral Systemic Activity (OSA), a measure of active compound available after oral dosing.

Administration, Oral↗

SC-49992--a potent and specific inhibitor of platelet aggregation.

Fibrinogen binding is required for platelet aggregation and subsequent thrombus formation. SC-49992 (SC), an RGDF mimetic, is a potent and specific inhibitor of the binding of fibrinogen to its receptor on activated platelets, glycoprotein IIb/IIIa (IC50 0.7 microM). SC was more potent (1-5 microM) than either RGDS, RGDF or the gamma chain dodecapeptide in blocking platelet aggregation to a variety of agonists in both dog and human platelet rich plasma. SC was more potent as an inhibitor of GP IIb/IIIa on platelets than it was against other integrin and non-integrin receptors, including the RGD-dependent vitronectin receptor and other non-RGD-dependent integrins such as CDII/CD18. SC had little effect on ristocetin induced agglutination. SC blocked ex vivo collagen induced aggregation in dogs and collagen induced thrombocytopenia in rats. These data suggest that elimination of the Arg-NH2 and the Arg-Gly amide bond of RGDF provided increased inhibitory potency and specificity. This structural modification may be of value in the development of other more potent RGDF mimetics for the inhibition of platelet aggregation.

Amino Acid Sequence↗

Fibrinogen mediates platelet-polymorphonuclear leukocyte cooperation during immune-complex glomerulonephritis in rats.

The metabolic and functional alterations which occur during the acute phase of nephrotoxic nephritis (NTN) in rats, a model of immune-mediated glomerulonephritis, result from a cooperative interaction between PMNs and platelets (PLTs). In consequence, we hypothesized that fibrinogen (Fg) might play a critical role in this process and, accordingly, we found that defibrination of animals decreased both the acute phase proteinuria in NTN (approximately 70%) as well as the influx of PLTs and PMNs into the glomerulus (approximately 40-50%). In contrast, blockade of the PLT Fg receptor, alpha IIb beta 3, with the RGD peptidomimetic SC-49992 decreased proteinuria (approximately 90%) without substantially altering the influx of PMNs or PLTs. Immunocytochemistry showed a marked increase in beta 3 integrin expression in inflamed glomeruli which was prevented either by PMN or PLT depletion before disease induction. FACS and immunocytochemical analysis of glomerular cell dissociates demonstrated that beta 3 integrin expression was predominantly on intraglomerular PLTs. In vitro, activated PLTs stimulated the PMN respiratory burst, an interaction which could be inhibited by Fg receptor blockade. In sum, acute NTN is accompanied by a marked increase in glomerular beta 3 integrin expression predominantly due to the influx of PLTs which localize to the glomerulus in a PMN-dependent fashion. Fg appears to serve a major role as a coactivating stimulus for PLT-PMNs in situ via alpha IIb beta 3, potentially mediating the PMN respiratory burst which contributes to proteinuria. Fg may also play a subsidiary role in PMN/PLT comigration.

Animals↗

Species variation in the effect of glycoprotein IIb/IIIa antagonists on inhibition of platelet aggregation.

Differences exist between platelets of different species in their reaction to pharmaceutical agents, such as inhibitors of platelet aggregation. Understanding these differences is critical in the interpretation of data from experimental animal models of thrombosis. Platelet aggregation, essential in the hemostatic process, requires that fibrinogen (fgn) bind to activated platelets. Analogs of Arginine-Glycine-Aspartic acid-Phenylalanine (RGDF), a peptide sequence of fgn, block fgn binding to its receptor known as glycoprotein (GP) IIb/IIIa on activated platelets and prevent aggregation. We studied the inhibition resulting from Arginine-Glycine-Aspartic acid-Serine (RGDS) and two analogs of RGDF, (SC-46749 and SC-47643) on aggregation of human, rat, guinea pig, dog, and rhesus monkey platelets in vitro using ADP as the agonist. The inhibitory potency of RGDS, SC-46749, ad SC-47643 was species dependent. The rank order of potency was rhesus monkey, dogs, and human followed by guinea pig and rat. In order to study the relative inactivity of the compounds in rat platelets compared to human, we diluted rat platelet-rich plasma (PRP) to yield platelet levels approximating that of humans. Platelet inhibition was not significantly changed in diluted rat PRP nor did changing concentration appear to affect activity in human PRP. Our data suggest that the platelet response of some species may better represent human response with regard to inhibition of GP IIb/IIIa by (RGDX) analogs.

Adenosine Diphosphate↗

Platelet GPIIb/IIIa receptor inhibition by SC-49992 prevents thrombosis and rethrombosis in the canine carotid artery.

OBJECTIVE: Platelet glycoprotein IIb/IIIa (GPIIb/IIIa) receptors represent the final common pathway for aggregation. GPIIb/IIIa inhibition with antibodies or RGD peptides prevents arterial thrombosis. The present study examined the ability of SC-49992 (SC), a GPIIb/IIIa receptor antagonist, to prevent thrombosis in a canine model of carotid artery thrombosis. METHODS: Both carotid arteries of anaesthetised dogs were instrumented with Doppler probes. A 300 microA current was applied to the intimal surface of the right carotid artery via an intraluminal electrode; time to occlusive thrombus formation was noted. SC (30 and 60 micrograms/.kg-1 x min-1, intravenously) or saline was infused for 240 min. The procedure for thrombus formation was repeated after 60 min of drug infusion for the left carotid artery. RESULTS: SC did not alter heart rate or blood pressure. Frequency of occlusive thrombus formation was reduced or prevented in a dose dependent manner (control = 100%, n = 12; SC 30 micrograms = 50%, n = 6; SC 60 micrograms = 0%, n = 6; p < 0.05). SC resulted in a reduction in thrombus weight (p < 0.05) v control. Ex vivo platelet aggregation to ADP and arachidonic acid was inhibited. Platelet reactivity remained inhibited 60 min after cessation of SC infusion. In a second group of animals, a carotid artery thrombus was formed and lysed with administration of anisoylated plasminogen streptokinase activator complex (0.05 U.kg-1). SC (60 micrograms.kg-1 x min-1, intravenously, n = 6) or saline (n = 6) was infused for 240 min. In dogs receiving saline there was an 83% rate of rethrombosis; none of the SC treated animals had reocclusion after recanalisation (p < 0.05). CONCLUSIONS: SC-49992 inhibits ex vivo platelet aggregation, prevents occlusive thrombus formation in a canine model of arterial thrombosis, and prevents rethrombosis after thrombolysis. The data are consistent with results obtained with murine monoclonal antibodies directed against the platelet GPIIb/IIIa receptor.

Animals↗

SC-49992, a mimetic of the peptide arginine-glycine-aspartic acid-phenylalanine that blocks platelet aggregation, enhances recombinant tissue plasminogen activator-induced thrombolysis and prevents reocclusion in a canine model of coronary artery thrombosis.

8-Guanidino-octanoyl-aspartic acid-phenylalanine (SC-49992), a mimetic of the tetrapeptide arginine-glycine-aspartic acid-phenylalanine, is a potent inhibitor of platelet aggregation. In this study, the authors examined the effects of SC-49992 on the time to lysis of thrombi and the time to reocclusion in the canine coronary artery, which had been treated with tissue plasminogen activator. A lysis/reocclusion model was used that was originally designed so that the reoccluding thrombus was platelet rich. SC-49992 decreased the time to lysis in response to recombinant tissue plasminogen activator in a dose-dependent manner. The reduction of the lytic time was significant at the highest dose of 0.08 mg kg-1 min-1 (from 22.8 +/- 8.2 to 7.4 +/- 1.4 min, P < .05). The reocclusion time was prolonged at all doses of SC-49992 (from a control level of 3.4 +/- 0.6 min to more than 50 min at all doses of SC-49992, P < .05). At the 0.06- and 0.08-mg kg-1 min-1 doses, all but one animal in each group did not have a reocclusion during the time of the experiment. In those animals that did have reocclusions in the presence of SC-4992, ex vivo platelet aggregation was inhibited 100% at the time of reocclusion. The bleeding times were prolonged in these animals at the levels of inhibition in which the compound was the most effective.(ABSTRACT TRUNCATED AT 250 WORDS)

Amino Acid Sequence↗

Aminopeptidase resistant Arg-Gly-Asp analogs are stable in plasma and inhibit platelet aggregation.

Tetrapeptides containing the sequence Arg-Gly-Asp (RGD) antagonize fibrinogen binding to its platelet receptor (gp IIb/IIIa, integrin alpha IIb beta 3) and inhibit platelet aggregation in vitro. The peptides RGDS and RGDY(Me)-NH2 were rapidly degraded when incubated in human, rat, and dog plasma. HPLC analysis indicated that amino acids were sequentially removed from the peptide N-terminus, and this degradation was prevented by the aminopeptidase inhibitor bestatin. Analogs of RGDY(Me)-NH2 with an acetylated or deleted alpha-amino group were prepared. Both analogs were stable when incubated in plasma, blocked 125I-fibrinogen binding to activated platelets (IC50 = 10-30 microM) and inhibited ADP induced platelet aggregation (IC50 = 10-30 microM). This study concludes that aminopeptidase rapidly degrades RGD peptides in plasma, an important issue for in vivo testing of RGD peptides and analogs. RGD analogs intrinsically stabilized against aminopeptidase are stable in plasma and are important tools for antithrombotic studies involving antagonism of gp IIb/IIIa.

Amino Acid Sequence↗

External ocular inflammatory effects of lipoxygenase enzyme products.

We systematically observed the effects of lipoxygenase enzyme products (5-, 8-, 9-, 12-, and 15-HETE and leukotrienes (LT) C4, D4, and B4) on the external ocular inflammatory process in rabbits. Our results, using 1 and 10 micrograms enzymatic preparations topically applied to the conjunctiva, were consistent with the potent chemotactic activity of 12-HETE and LTB4. Modulation of the inflammatory process can be accomplished better, as a result of our findings, by inhibition of both the lipoxygenase and cyclooxygenase pathways.

Animals↗

Prevention of reoccluding platelet-rich thrombi in canine femoral arteries with a novel peptide antagonist of platelet glycoprotein IIb/IIIa receptors.

The composition of an evolving arterial thrombus may be a determinant of how effectively pharmacologic agents prevent reocclusion after initially successful thrombolysis. In this study, reoccluding platelet- or fibrin-rich thrombi as delineated by scanning electron microscopy were produced selectively in the femoral arteries of dogs with the use of electrically induced vascular injury or implantation of copper wire, respectively. Initial thrombolysis after intravenous infusion of tissue-type plasminogen activator (1 mg/kg over 30 minutes) was less frequent in the preparation producing platelet-rich thrombi than in that producing fibrin-rich thrombi (lysis in 19 of 24 versus 18 of 18, p = 0.06). In dogs with initial arterial recanalization, intravenous infusion of arginine-glycine-aspartate-O-methyltyrosine amide (RGDY), which competes with fibrinogen for binding to platelet glycoprotein IIb/IIIa receptors, prevented reocclusion caused by recurrence of platelet-rich thrombi in six of six dogs within 90 minutes; reocclusion occurred in five of seven saline-infused control dogs (p = 0.02). RGDY was only partially effective in preventing reocclusion caused by recurrence of fibrin-rich thrombi (reocclusion in three of six versus five of six controls, p = 0.54). Similar results were obtained with aspirin in both preparations. At least 98% of platelet aggregation induced ex vivo by collagen was inhibited by either RGDY or aspirin. In contrast with aspirin, however, platelet function returned to normal within 1 hour after discontinuation of RGDY. Thus, the relative proportions of platelets or fibrin incorporated into thrombi influence the efficacy of both tissue-type plasminogen activator for inducing thrombolysis and antiplatelet agents for preventing reocclusion. RGDY is a potent, short-acting inhibitor of platelet aggregation that effectively prevents reocclusion under conditions in which platelet deposition predominates.

Amino Acid Sequence↗

Inhibition of soybean lipoxygenase by SKF 525-A and metyrapone.

To determine whether agents which inhibit cytochrome P-450 enzymes also inhibit lipoxygenase, the effects of metyrapone and SKF 525-A were assessed on soybean lipoxygenase using a spectrophotometric technique which allows for measurement of both the rate and magnitude of product formation. Both SKF 525-A and metyrapone inhibited the rate of product formation and the final amount of product formed in 5 min incubations SKF 525-A was 5 to 5 times more potent than metyrapone, with the IC50 for SKF 525-A 40 microM and for metyrapone between 150 and 200 microM as determined by the total product formation in 5 minutes. Analysis of the reduced product by HPLC confirmed that the substances monitored were those generated by the 15-lipoxygenase enzyme.

Chromatography, High Pressure Liquid↗

Influence of renal lipoxygenase activity on the renal vascular response to arachidonic acid.

Studies were undertaken to clarify the effects of close arterial injections of arachidonic acid (AA) on renal blood flow in anesthetized dogs. In some dogs, injection of 4 mg of AA into the renal artery produces only renal vasodilation, whereas in other dogs similar injections lead to biphasic responses in which vasodilation is preceded by transient vasoconstriction. In the present experiments the cyclooxygenase inhibitor ibuprofen blocked vasodilator responses, suggesting that these were mediated by conversion of the precursor to prostaglandins. However, ibuprofen did not block the constrictor phase of the response in those animals that exhibited biphasic responses, suggesting that this phase was not mediated by prostaglandins. Administration of agents that inhibit lipoxygenase and cytochrome P-450 enzymes blocked the constrictor phase, suggesting that this portion of the responses was associated with conversion of the precursor to hydroxylated eicosanoids. An additional observation from these studies was that the frequency of occurrence of biphasic responses to intrarenal AA injections in water-deprived dogs was significantly greater than that found in non-water-deprived dogs, suggesting a connection between hydration state and the activity of nonprostaglandin pathways for AA metabolism in the canine kidney.

Animals↗