PubMed HealthSearch

Biomedical subjects

F Cominelli

Publications and source records attributed to F Cominelli.

At least 19 recordsLinked to original sources

Recombinant interleukin-1 receptor antagonist blocks the proinflammatory activity of endogenous interleukin-1 in rabbit immune colitis.

The effects of human recombinant interleukin-1 receptor antagonist (IL-1ra) on inflammation, tissue damage, and production of inflammatory mediators in rabbit formalin-immune complex colitis were examined. Treatment of rabbits with intravenous administration of IL-1ra before and periodically throughout the first 43 hours after the induction of colitis (total 7 doses) suppressed inflammation and tissue damage in a dose-related manner. Maximum inhibition of inflammatory index (from 3.0 +/- 0.3 to 0.8 +/- 0.3, P less than 0.001), edema (from 2.3 +/- 0.2 to 0.6 +/- 0.2, P less than 0.001), percent of mucosal necrosis (from 44% +/- 7% to 7% +/- 3%, P less than 0.02) and myeloperoxidase (MPO) activity (from 4.9 +/- 1.0 U/g to 1.0 +/- 0.3 U/g, P less than 0.001) occurred with the dose of 5 mg/kg. Colonic prostaglandin E2 (PGE2) and leukotriene B4 (LTB4) production, measured in rectal dialysates by specific radioimmunoassays, was also dose dependently suppressed (from 1124 +/- 319 pg/mL to 190 +/- 75 pg/mL, P less than 0.001 and 568 +/- 192 pg/mL to 92 +/- 51 pg/mL, P less than 0.001, respectively, at 5 mg/kg). In contrast, colonic IL-1 alpha tissue levels measured by a specific radioimmunoassay after tissue extraction were similar in all groups. When only two doses of IL-1ra, 10 minutes before and 3 hours after the induction of colitis were given, there was no longer an inhibitory effect on inflammation or production of inflammatory mediators. However, delaying the initial IL-1ra treatment 3 hours after the induction of colitis (total 6 doses) was effective in reducing inflammatory index (by 60%), MPO activity (by 79%), PGE2 (by 62%), and LTB4 (by 72%) whereas colonic IL-1 alpha levels were unchanged compared with vehicle-treated animals. These studies show the ability of human recombinant IL-1 receptor antagonist to suppress the proinflammatory activity of IL-1 produced in the colon during the induction and progression of rabbit immune complex colitis.

Animals

Effect of cell culture on rabbit colonic smooth muscle bradykinin receptors.

The aim of this study was to assess the effect of cell culture on the bradykinin receptor of rabbit colon myocytes. In longitudinal muscle strips prepared from distal colon, bradykinin stimulated dose-dependent contraction that was 62% of the maximal response to bethanecol. At 4 degrees C, [3H]bradykinin binding to fresh muscle homogenates from the distal colon was time dependent, saturable, and linearly related to tissue concentration. Specific binding of 0.6 nmol/L [3H]bradykinin was 80% +/- 2% of total binding. In competitive binding studies, Hill coefficients approached unity, suggesting the presence of a single class of receptors. The order of potency was bradykinin greater than [D-Phe7]bradykinin much greater than des-Arg9, [Leu8]bradykinin, which is consistent with results of a B2 receptor subclass. Colon myocytes from the longitudinal muscle layer achieved confluence and were harvested for studies after 12-14 days in culture. Bradykinin receptors were of high affinity [disassociation constant (Kd) = 672 pmol/L] and numbered 10,217 +/- 2567/cell. To show that the receptors on cultured myocytes were functional, the effect of bradykinin was measured (a) on intracellular calcium concentration using Fura 2 and (b) on prostaglandin E2 concentration in the culture media using radioimmunoassay. In cells grown to confluence on cover slips and preloaded with Fura 2, bradykinin stimulated the threshold response at 1 nmol/L and maximal response (increased intracellular calcium concentration from 229 to 633 nmol/L) at 1 mumol/L. Bradykinin, 100 nmol/L, increased Prostaglandin E2 in the culture media threefold. In summary, colon myocytes express functioning bradykinin receptors, which, unlike muscarinic receptors, persist in culture. Bradykinin appears to be a suitable agonist for studies of receptor-mediated intracellular events in cultured colon myocytes.

Animals

An abnormal rate of actin myosin cross-bridge cycling in colonic smooth muscle associated with experimental colitis.

Previous studies showed that colonic smooth muscle develops less contractile force to neurohumoral stimulation when associated with mucosal inflammation. This study evaluated 1) the Ca2+ dependence for colonic smooth muscle contraction, 2) the maximum velocity of muscle shortening (Vmax), and 3) changes in 20-kDa myosin light-chain (MLC) phosphorylation in distal circular colonic muscle from healthy rabbits and from rabbits with experimental colitis, induced by Formalin and immune complexes. The isometric tension of unskinned muscle stimulated with bethanechol or KCl was less (P less than 0.05) in animals with colitis compared with the control group. In saponin-skinned muscle, the amplitude of the maximal tension at [Ca2+] of 3 x 10(-7) M was decreased (P less than 0.05) in colitis animals (4.3 +/- 0.9 x 10(4) N/m2, n = 7) compared with healthy animals (10.5 +/- 2.4 x 10(4) N/m2, n = 6). However, the ED50 for Ca2+ stimulation was similar (P greater than 0.05) in both groups. When MLC was thiophosphorylated with ATP gamma S, the tension development was decreased in colitis (2.1 +/- 0.3 x 10(4) N/m2, n = 5; P less than 0.01) compared with normals (5.0 +/- 1.4 x 10(4) N/m2, n = 5). In healthy animals, phosphorylation of 20-kDa MLC increased rapidly to 51.2 +/- 3.1% within 15 s after stimulation and subsequently declined to 19.0 +/- 2.1% at 5 min. Vmax was maximal (0.14 Lo/s) 13 s after stimulation and declined before maximal active isometric stress. In colitis animals, the 20-kDa MLC phosphorylation (P less than 0.05) and the Vmax (P less than 0.01) were decreased.(ABSTRACT TRUNCATED AT 250 WORDS)

Actins

Calcitonin gene-related peptide and substance P decrease in the rabbit colon during colitis. A time study.

The sensory neuropeptides, substance P and calcitonin gene-related peptide, have been implicated in inflammatory reactions in several tissues. An immune-complex model of colitis was used in rabbits to determine the colonic content (nmol/g protein) of immunoreactive substance P and calcitonin gene-related peptide at various times after induction of inflammation to assess changes in these neuropeptides during the inflammatory response. Calcitonin gene-related peptide content was decreased by 66% 4 hours after induction of inflammation and reached a maximum of 80% at 48 hours. The substance P content was decreased at 8 hours, with a maximum decrease of 64% at 48 hours. Substance P decrease was detected in the muscle layer. The amounts of substance P in the mucosal/submucosal layer extracts were too low to allow accurate measurements. Calcitonin gene-related peptide decreased both in the muscle and the mucosal-submucosal layers. Immunohistochemical analysis showed that calcitonin gene-related peptide and substance P innervation patterns were comparable in normal and inflamed colon, even though there appeared to be a decrease in density and intensity of the staining, particularly for calcitonin gene-related peptide at 48 hours. The early decrease of calcitonin gene-related peptide and substance P during the time course of colitis might be due to release from nerve terminals of the gut during the inflammatory response. The profound changes in colonic calcitonin gene-related peptide and substance P content during colitis may have important implications during inflammation and subsequent tissue repair and may also lead to disturbances in gut motility.

Animals

Detection of interleukin 1 alpha and 1 beta in rabbit tissues during endotoxemia using sensitive radioimmunoassays.

Interleukin 1 (IL-1) is a primary mediator of a wide variety of immunologic and inflammatory responses, including reactions to microbial infections. To study this cytokine in an animal model, we have developed specific and sensitive radioimmunoassays for the quantitation of rabbit IL-1 alpha and IL-1 beta. The sensitivity (limit of detection at 95% confidence level) of our assay for IL-1 alpha and 1 beta was 20-40 and 40-80 pg/ml, respectively. Recovery of IL-1 from tissues ranged from 75 to 107%, with a mean of 95% for IL-1 alpha and 89% (range 19-98) for IL-1 beta. We employed these assays in in vivo and in vitro studies. In an in vivo model, we measured the amount of rabbit IL-1 alpha and 1 beta protein present in brain, kidney, liver, lung, muscle, and spleen at various times after the injection of endotoxin. IL-1 was found in all tissues studied but largely in the spleen; IL-1 levels were transient, reaching peak levels by 4 h after injection of endotoxin and rapidly decreasing to low levels by 24 h. In similar in vitro studies, IL-1 alpha levels reached peak elevation 6 h after addition of endotoxin, whereas IL-1 beta was maximal at 24 h. IL-1 alpha was detected in all tissues; IL-1 beta was observed primarily in lung, kidney, and spleen. These studies establish the presence of IL-1 in various tissues during endotoxemia.

Animals

Interleukin 1 suppresses inflammation in rabbit colitis. Mediation by endogenous prostaglandins.

Pretreatment with low-dose IL-1 has protective effects in animal models of inflammation or tissue injury, but the mechanisms of these protective effects are not established. To determine if prostaglandins are involved, we administered human recombinant IL-1 beta and measured rectal PGE2 production in rabbits with formalin-immune complex colitis. IL-1 beta (0.3 micrograms/kg) administered 24 h before induction of colitis increased PGE2 (231 +/- 36 to 1,299 +/- 572 pg/ml, P less than 0.01) and reduced subsequent inflammatory cell infiltration index (from 2.8 +/- 0.3 to 1.4 +/- 0.3, P less than 0.02) and edema (from 2.5 +/- 0.3 to 1.3 +/- 0.3, P less than 0.01) compared with vehicle-matched animals. Administration of ibuprofen (10 mg/kg i.v.) together with IL-1 beta prevented the stimulation of PGE2 and the reduction in inflammation. Colonic PGE2 production correlated inversely with subsequent severity of inflammation (P less than 0.02, r = -0.39) and edema (P less than 0.04, r = -0.35). IL-1-administration 30 min before induction of colitis did not affect the severity of inflammation. Similarly, pretreatment with a noninflammatory synthetic peptide (fragment 163-171) of human IL-1 beta, either 30 min or 24 h before colitis induction, did not reduce inflammation or increase prostaglandin synthesis. These data demonstrate that pretreatment with IL-1 beta 24 h before the induction of colitis reduces inflammation by a mechanism that requires prostaglandin synthesis.

Animals

Interleukin 1 (IL-1) gene expression, synthesis, and effect of specific IL-1 receptor blockade in rabbit immune complex colitis.

Interleukin 1 (IL-1) may be a key mediator of inflammation and tissue damage in inflammatory bowel disease (IBD). In rabbits with immune complex-induced colitis, IL-1 alpha and beta mRNA levels were detectable at 4 h, peaked at 12 but were absent at 96 h after the induction of colitis. Colonic IL-1 tissue levels were measured by specific radioimmunoassays. IL-1 alpha was significantly elevated at 4 h (9.4 +/- 1.5 ng/g colon), progressively increased at 48 h (31 +/- 5.8 ng/g) and then decreased by 96 h (11.5 +/- 3.4 ng/g). IL-1 beta levels were 2.0 +/- 0.5 ng/g colon at 4 h, 5.0 +/- 1.6 ng/g at 48 h and undetectable by 96 h. By comparison, colonic levels of PGE2 and LTB4 were unchanged during the first 12 h and did not become elevated until 24 h. IL-1 alpha levels were highly correlated with inflammation (r = 0.885, P less than 0.0001), edema (r = 0.789, P less than 0.0001) and necrosis (r = 0.752, P less than 0.0005). Treatment with a specific IL-1 receptor antagonist (IL-1 ra) before and during the first 33 h after the administration of immune complexes markedly reduced inflammatory cell infiltration index (from 3.2 +/- 0.4 to 1.4 +/- 0.3, P less than 0.02), edema (from 2.2 +/- 0.4 to 0.6 +/- 0.3, P less than 0.01) and necrosis (from 43 +/- 10% to 6.6 +/- 3.2%, P less than 0.03) compared to vehicle-matched colitis animals. These studies demonstrate that (a) IL-1 gene expression and synthesis occur early in the course of immune complex-induced colitis; (b) are significantly elevated for 12 h before the appearance of PGE2 and LTB4; (c) tissue levels of IL-1 correlate with the degree of tissue inflammation and; (d) specific blockade of IL-1 receptors reduces the inflammatory responses associated with experimental colitis.

Antigen-Antibody Complex

Effects of oral prostaglandins on indomethacin-induced renal failure in patients with cirrhosis and ascites.

Nonsteroidal antiinflammatory drugs (NSAID), such as indomethacin, reduce production of renal prostaglandins and markedly impair renal function in patients with cirrhosis and ascites. To determine if simultaneous administration of oral prostaglandin analogs minimizes the renal impairment, 10 patients received indomethacin and either misoprostol or placebo in a double-blind, crossover study. Indomethacin reduced urinary sodium from 23 +/- 9 to 8 +/- 4 microEq/min in 4 hours. Misoprostol with indomethacin tended to prevent the fall in urinary sodium (from 35 +/- 15 to 46 +/- 21 microEq/min at 4 hours), but sodium excretion fell to the same level in both groups by 8 hours (6 +/- 3 microEq/min). Indomethacin reduced creatinine clearance in 4 hours by 49%; misoprostol plus indomethacin reduced creatinine clearance by only 34%. Misoprostol tended to minimize or delay the nephrotoxic effects of indomethacin, suggesting that more potent prostaglandin analogs may prevent the renal impairment induced by NSAID.

Administration, Oral

Interleukin-1 in the pathogenesis of and protection from inflammatory bowel disease.

Inflammatory bowel disease affects millions of people, some with fatal consequences. Little is known about the factors which contribute to its pathogenesis particularly regarding cytokine production and action. In this paper we summarize our recent findings using the rabbit model for immune complex-generated experimental colitis, a model which is similar to ulcerative colitis in humans. Recombinant human IL-1 was perfused through rabbit colons and we observed elevated levels of PGE2, TxB2 and 6-keto-PGF1 alpha, the stable metabolite of PGI2. Using radioimmunoassays specific for rabbit IL-1 alpha and IL-1 beta, we induced immune complex colitis and measured the generation of these IL-1's in various tissues. Markedly elevated levels of IL-1 were detected only in inflamed tissues. The levels of IL-1 correlated with the degree of inflammation as judged by a blinded assessment of pathological changes. Similar to other disease models in which small doses of the agonist can afford protection or result in a state of "desensitization" when administered prior to the onset of the disease, we accordingly injected rabbits with a single, small (300 ng/kg) dose of IL-1 and observed a significant reduction in the inflammatory index and necrosis of immune complex colitis. However, unlike other models of IL-1-induced protection, in this model cyclooxygenase products were required since we prevented the IL-1-induced protection with a single dose of ibuprofen given at the same time as the IL-1. This correlated with the reduction in IL-1-induced PGE2. These results demonstrate that IL-1 plays a key role in the pathogenesis of inflammatory bowel disease in the rabbit and that the protection afforded by a low dose of IL-1 24 hours before the onset of the colitis requires IL-1-induced cyclooxygenase products.

Animals

Regulation of eicosanoid production in rabbit colon by interleukin-1.

Prostaglandins and thromboxanes are increased in human and experimental colitis, but the factors that regulate this enhanced production are unclear. The present studies evaluate the effects of the monokines, interleukin-1 alpha and beta on eicosanoid production in rabbit colon. In tissue incubations the peak dose response of eicosanoid release to human recombinant interleukin-1 is 50 ng/ml. Interleukin-1 alpha increases prostaglandin E2 (PGE2) by 4.5 +/- 1.9 ng/g tissue, 6-keto PGF1 alpha by 6.2 +/- 2.7 ng/g, and thromboxane B2 by 2.1 +/- 0.3 ng/g compared to placebo. In isolated rabbit colons perfused with Krebs' solution, 10-h infusion of interleukin-1 alpha (50 ng/ml) progressively increases production of PGE2, 6-keto PGF1 alpha, and thromboxane B2. Bolus injections of bradykinin increase production of PGE2, but not 6-keto PGF1 alpha and thromboxane B2, and these responses are markedly augmented by interleukin-1 alpha: at 10 h bradykinin-stimulated PGE2 production is 518 +/- 104 vs. 95 +/- 18 ng/5 min (p less than 0.005), 6-keto PGF1 alpha is 172 +/- 88 vs. 8 +/- 2 ng/5 min (p less than 0.02), and thromboxane B2 is 60 +/- 14 vs. 13 +/- 4 ng/5 min (p less than 0.02) for interleukin-treated colons vs. placebo-treated colons, respectively. The response is greater with interleukin-1 alpha than interleukin-1 beta. This study demonstrates that interleukin-1 stimulates prostaglandin and thromboxane production in normal colon tissue. These data are consistent with the concept that interleukin-1 production by inflammatory cells may augment prostaglandin and thromboxane production in colitis.

6-Ketoprostaglandin F1 alpha

Renal hemodynamic and natriuretic effects of human atrial natriuretic factor infusion in cirrhosis with ascites.

We investigated the effect of a continuous infusion (50 micrograms as an initial bolus followed by a maintenance infusion at a rate of 0.1 micrograms/min.kg body wt for 45 min) of synthetic human atrial natriuretic factor (hANF) on renal hemodynamics and the renin-angiotensin-aldosterone system in 15 cirrhotic patients with ascites. Basal hANF levels were higher in cirrhotic patients when compared with normal values. Human atrial natriuretic factor infusion induced a significant decrease in mean blood pressure (from 77.8 +/- 1.1 to 68.6 +/- 1.5 mmHg, p less than 0.001) and a significant increase in heart rate (from 76.4 +/- 2.7 to 89.8 +/- 2.4 beats/min, p less than 0.001) in the patients studied. A remarkable increase in natriuresis (i.e., greater than or equal to 200 muEq/min) was observed in 5 patients (responders), whereas the infusion did not modify sodium excretion (i.e., less than or equal to 20 muEq/min) in 6 patients (nonresponders) and induced an intermediate response in 4 patients. Human atrial natriuretic factor-induced natriuresis was related to changes in renal hemodynamics that occurred during hANF infusion. In responders, the extent of the natriuretic response paralleled the increase of effective renal plasma flow and glomerular filtration rate; in non-responders the absent natriuretic response was associated with an evident reduction of these parameters. The reduction of blood pressure was similar in responders and nonresponders, but in the latter group it was followed by a marked increase of plasma renin activity and heart rate. It is likely that in nonresponders the natriuretic effect of hANF was blunted by the hemodynamic and hormonal changes triggered by the concomitant hANF-induced hypotension. This probably occurs in the presence of a greater reduction of effective arterial blood volume, as suggested by the higher baseline levels of plasma renin activity and the inability to increase free water excretion after a water load observed in nonresponders.

Adult

Comparative acute effects of aspirin, diflunisal, ibuprofen and indomethacin on renal function in healthy man.

Nonsteroidal anti-inflammatory drugs (NSAIDs), such as indomethacin, suppress renal prostaglandins and markedly reduce renal perfusion and diuretic response in some renal disorders. Mild renal impairment may occur in healthy subjects. Pharmacodynamic characteristics of certain NSAIDs, such as the nonacetylated salicylates, suggest that they may have less deleterious renal effects. We compared the renal effects of standard therapeutic doses of indomethacin, ibuprofen, aspirin, and the nonacetylated salicylate, diflunisal, in 6 healthy supine volunteers. Only indomethacin significantly reduced creatinine clearance (by 13%) and renal plasma flow (by 23%; p less than 0.05). Indomethacin also tended to reduce furosemide-induced diuresis and natriuresis, and this effect was significantly greater than with diflunisal (p less than 0.05). Serum thromboxane, a reflection of platelet cyclo-oxygenase activity, was reduced by 99% with aspirin, ibuprofen and indomethacin, but by only 78% with diflunisal. Nonacetylated salicylates may be the preferred drugs, at least in short-term usage, when it is necessary to minimize the effects of NSAIDs on platelet or kidney function.

Adult

Comparative acute effects of diflunisal and indomethacin on renal function in patients with cirrhosis and ascites.

Nonsteroidal anti-inflammatory drugs such as indomethacin induce a rapid reduction in renal perfusion and blunt the effects of diuretics in patients with cirrhosis and ascites. Nonacetylated salicylates reportedly cause less reduction in renal prostaglandins than do aspirin and other nonsteroidal anti-inflammatory drugs. To determine whether nonacetylated salicylates affect renal function, we compared diflunisal with indomethacin in nine patients with cirrhosis and ascites. One 50-mg dose of indomethacin reduced inulin clearance (91 +/- 11 to 76 +/- 11 ml/min) and blunted furosemide-stimulated natriuresis (58 +/- 12 to 36 +/- 9 mEq/h) and diuresis (1103 +/- 148 to 809 +/- 170 ml/h, all p less than 0.05). Three doses of diflunisal had no effect on inulin clearance (94 +/- 16 ml/min), natriuresis (60 +/- 12 ml/h), or diuresis (1041 +/- 112). Indomethacin caused greater reduction in urinary prostaglandin E2 (50% vs. 10%) and in serum thromboxane (94% vs. 80%) than diflunisal (p less than 0.05). Thus, nonacetylated salicylates avoid renal impairment and may be the preferred nonsteroidal anti-inflammatory drug in patients with cirrhosis and ascites.

Diflunisal

Intrarenal thromboxane A2 generation reduces the furosemide-induced sodium and water diuresis in cirrhosis with ascites.

To assess the effects of intrarenal thromboxane A2 generation on furosemide-induced sodium and water excretion we administered furosemide (40 mg i.v.) to 8 nonazotemic cirrhotic patients with ascites and 8 healthy subjects before and after the administration of OKY 046 (200 mg twice orally), a powerful thromboxane-synthase inhibitor. Selective thromboxane-synthase inhibition significantly reduced basal and postfurosemide (1 h) urinary thromboxane B2 excretion in healthy subjects (65% before and 62% after furosemide) as well as in cirrhotic patients (52% before and 67% after furosemide) without affecting urinary prostaglandin E2 and 6-keto prostaglandin F1 alpha excretion. During the first hour after furosemide administration, OKY 046 administration significantly enhanced postfurosemide water excretion (milliliters per minute) in both healthy subjects (from 8.5 +/- 2.0 to 11.6 +/- 2.1, p less than 0.001) and cirrhotic patients (from 1.1 +/- 0.8 to 4.2 +/- 0.5, p less than 0.005), whereas furesemide-induced natriuresis (microequivalents per minute) was significantly increased only in the latter group (from 973 +/- 125 to 1405 +/- 121, p less than 0.05). Our data indicate that intrarenal thromboxane A2 generation, elicited by furosemide administration, may reduce the effects of the drug on water and sodium diuresis. Such a reduction seems to be more marked in the presence of an activated intrarenal prostaglandin system, suggesting that renal thromboxane A2 may represent an additional factor in conditioning the impaired responsiveness to furosemide, which is frequently observed in cirrhotic patients with ascites.

6-Ketoprostaglandin F1 alpha

Effects of 16,16-dimethyl prostaglandin E2 and indomethacin on leukotriene B4 and inflammation in rabbit colitis.

The role of increased prostaglandin production and the effects of exogenous prostaglandins on inflammation of colitis are not established. We administered intramuscular 16,16-dimethyl prostaglandin E2 (DiM-PGE2) and indomethacin to rabbits with formalin immune-complex colitis and measured leukotriene B4 (LTB4), prostaglandin E2 (PGE2) and severity of inflammation. DiM-PGE2 (100 micrograms/kg/BID) reduced LTB4 production (from 401 +/- 108 to 216 +/- 58 pg/ml) and infiltration of neutrophils, mucosal necrosis, inflammatory exudate and edema (all P less than 0.05). Other studies determined that parenteral DiM-PGE2 did not reduce the initial chemical damage induced by formalin, suggesting that cytoprotection of chemical insult was not the mechanism of suppressed inflammation in the immune colitis model. Indomethacin (10 mg/kg/d) reduced endogenous PGE2 by 80%, but did not reduce leukotriene production or inflammation. Exogenous prostaglandins cause a dose-dependent suppression of inflammation in experimental colitis, by a mechanism other than cytoprotection of chemical-induced mucosal injury.

Animals

Altered renal and platelet arachidonic acid metabolism in cirrhosis.

Urinary excretion rates of prostaglandin (PG) E2, PGF2 alpha, 6-keto-PGF1 alpha, and thromboxane (TX) B2 were evaluated in three groups of cirrhotic patients [without ascites (group 1, 13 cases), with ascites and normal renal function (group 2, 15 cases), and with ascites and renal failure (group 3, 5 cases)] and in 14 healthy controls. All urinary arachidonate metabolites were significantly increased in group 2 patients. Patients with renal failure showed lower PGE2, PGF2 alpha, and TXB2 values than those from group 2; PGF2 alpha values were also lower than controls. Platelet TXA2 production during whole blood clotting was significantly reduced in all groups of patients. Administration of low-dose aspirin and sulindac, two cyclooxygenase inhibitors selectively sparing renal cyclooxygenase activity, effectively inhibited platelet TXA2 production without affecting urinary TXB2 excretion, thus ruling out platelets as a possible source of urinary TXB2. We conclude that patients with ascites and normal renal function show an overall activation of the renal PG system. Renal production of vasodilating PGE2 and PGI2 may be involved in supporting renal function in these patients. A reduced platelet synthesis of proaggregatory TXA2 also occurs in cirrhotic patients. This may play a role in the bleeding tendency of cirrhosis.

6-Ketoprostaglandin F1 alpha

Altered platelet function in cirrhosis of the liver: impairment of inositol lipid and arachidonic acid metabolism in response to agonists.

Hemorrhagic disorders are common in patients with liver cirrhosis and result from several factors including impaired platelet function. We evaluated platelet aggregation and arachidonic acid metabolism in response to standard agonists in platelet-rich plasma from 12 cirrhotic patients with mild impairment of liver function (Child A), 12 patients with severe liver dysfunction (Child B and C) and 12 healthy subjects. Platelet aggregation and thromboxane A2 production were consistently reduced in patients with severe liver impairment. To determine whether the platelet dysfunction is due to an intrinsic platelet defect or a circulating inhibitor, we measured platelet aggregation and thromboxane A2 synthesis on washed platelets in healthy subjects and in Child B and C patients. The aggregating response of washed platelets in response to thrombin, collagen and arachidonic acid was markedly reduced, suggesting an intrinsic platelet defect. The biochemical events underlying platelet aggregation were investigated by prelabeling platelets with [1-14C]arachidonic acid. Thrombin-induced activation of phospholipase C (measured as the release of [1-14C]phosphatidic acid) and phospholipase A2 (measured as the release of [1-14C]arachidonic acid and its metabolites) was greatly impaired in platelets from patients with severe liver impairment. We conclude that in advanced cirrhosis there is a severe reduction in platelet aggregatory response to physiologic agonists due to an intrinsic platelet defect which is related to an impairment of the platelet transmembrane signaling mechanism induced by receptor stimulation.

Adenosine Diphosphate