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N Semeraro

Publications and source records attributed to N Semeraro.

At least 37 records · Page 2Linked to original sources

Cultured human mesangial cells produce both type 1 and type 2 plasminogen activator inhibitors.

Cultured human mesangial cells (HMC) derived from normal kidneys have been shown to synthesize tissue-type plasminogen activator (t-PA) and excess amounts of PA inhibitor type 1 (PAI-1). Conflicting results have been obtained concerning the production of urokinase-type PA (u-PA) and efforts to show PA inhibitor 2 (PAI-2) met with failure. We evaluated the fibrinolytic profile of cultured HMC lines obtained from 12 patients with renal carcinoma and one cadaveric kidney donor. Subconfluent cells (third passage) were incubated overnight in serum-free medium. t-PA, u-PA, PAI-1 and PAI-2 antigens were assayed by ELISA methods and PA and PAI activities by amidolytic methods both in conditioned medium (CM) and cell extracts (CE). Besides PAI-1, PAI-2 antigen was detected in all but one HMC lines. At variance with the former, which was largely released in the culture medium, PAI-2 was mainly cell-associated. t-PA antigen was found in all but two cell lines while u-PA antigen was detected in relatively high concentrations in 8 cell lines. PA activity, identified as u-PA by functional and immunological criteria, was measured in CM of six of the eight u-PA producing cell lines, whereas PAI activity was undetectable or very low in CM of all cell lines, suggesting that PAI-1 was largely inactive. Functional assays of cell extracts demonstrated the presence of PA activity, again identified as u-PA, only in samples (five lines) containing u-PA antigen in excess over PAI-2. PAI activity was found instead in the extracts in which the inhibitor was higher than the activator (six lines) and was identified as PAI-2, as it inhibited u-PA but not single-chain t-PA and was neutralized by a polyclonal anti-PAI-2 antibody. The heterogeneous fibrinolytic pattern of HMC lines was confirmed by mRNA analysis of three representative lines. Results were similar when HMC lines at passage five were used, except that the u-PA content was significantly reduced both in CM and CE. These findings indicate that the fibrinolytic profile of cultured HMC is more complex than previously reported. The production of large amounts of PAI-2 may represent an additional control mechanism of proteinase activity.

Blotting, Northern↗

Increased mononuclear cell tissue factor and type-2 plasminogen activator inhibitor and reduced plasma fibrinolytic capacity in children with lymphoma.

Blood clotting activation and fibrin deposition are common findings in lymphoma patients. We evaluated the capacity of peripheral blood mononuclear cells to produce procoagulant activity (PCA) and plasminogen activator inhibitor (PAI) in 12 children with newly diagnosed lymphoma (8 non-Hodgkin's, 4 Hodgkin's) and in 12 matched healthy donors. In the same subjects we also measured plasma antigen levels of tissue-type PA (t-PA), urokinase-type PA (u-PA), PAI-1, PAI-2, and D-dimer. PCA generated by mononuclear cells after incubation for 20 h at 37 degrees C was significantly higher in patients than in controls (p = 0.027). In all samples it was identified as tissue factor by functional criteria (dependence on factor VII). Moreover, culture medium obtained from patients' mononuclear cells after incubation for 20 h at 37 degrees C contained significantly higher amounts of PAI activity and PAI-2 antigen than control samples (p < 0.001). Plasma PAI-1 and t-PA antigens were significantly augmented in patients (p < 0.005), the mean increase of PAI-I being about 5 times higher than that of t-PA. Plasma levels of D-dimer were markedly increased in the patient's group (p < 0.001), whereas u-PA and PAI-2 antigens did not differ from controls. It is suggested that monocytes from lymphoma patients are endowed with functional abnormalities leading to the simultaneous expression of tissue factor and antifibrinolytic activity. These abnormalities, coupled with a reduced plasma fibrinolytic potential, could play an important pathogenetic role in blood clotting activation and fibrin deposition associated with lymphoma.

Adolescent↗

Enhanced endothelial tissue factor but normal thrombomodulin in endotoxin-treated rabbits.

Exposure of cultured endothelial cells to bacterial endotoxin induces an enhancement of cell procoagulant activity (PCA) and a simultaneous reduction of thrombomodulin activity (TM). We evaluated the effect of endotoxin on the expression of both endothelial PCA and TM in vivo, in rabbits. Animals were given a single i.v. injection of endotoxin (E. coli 0111:B4 LPS, W, 10-200 micrograms/kg); the thoracic aorta was harvested after 2 or 4 hours and placed in an ad hoc device to expose the endothelial surface only. Endotoxin treatment resulted in a dose-dependent increase of endothelial PCA (p < 0.001, at 100 micrograms/kg or more), which was totally dependent on factor VII and thus identified as tissue factor. In contrast, endothelial TM activity, as measured by the rate of thrombin-induced protein C activation, was similar in control and endotoxemic rabbits, even when the animals were given two injections (50 micrograms/kg, 24 h apart), or a continuous infusion (40 micrograms/kg/h during 4 hours) of endotoxin. To explore the effect of endotoxin on TM activity at the microcirculation level, we measured the extent of protein C activation in vivo, induced by a continuous infusion of low doses of thrombin (1 NIH U/kg/min for 60 min). Again, endotoxin administration was not associated with significant changes in TM-dependent protein C activation, as assessed by the anticoagulant activity present in a barium citrate plasma eluate obtained at the end of thrombin infusion. Although reduction of TM during persistent endotoxemia cannot be definitively excluded, our data support a major role of endothelial PCA in LPS-induced coagulative changes.

Animals↗

Properties of chimeric (tissue-type/urokinase-type) plasminogen activators obtained by fusion at the plasmin cleavage site.

Two hybrid plasminogen activators (K2tu-PA and FK2tu-PA), linking the kringle 2 domain or the finger plus the kringle 2 domains of tissue-type plasminogen activator (t-PA) to the catalytic domain of single-chain urokinase-type plasminogen activator (scu-PA) were studied. At variance with similar constructs previously reported, they were obtained by fusion of the t-PA and scu-PA derived portions at their plasmin cleavage site (between Arg275 of t-PA and Ile159 of scu-PA), thus eliminating from scu-PA the two peptide bonds (Glu143-Leu144 and Arg156-Phe157) that lead to low molecular weight scu-PA and to thrombin-inactivated tcu-PA. The specific activities of K2tu-PA and FK2tu-PA, as measured by fibrin plate were 2.5 x 10(6) and 1.0 x 10(6) t-PA equivalent units/mg, respectively. Activation of plasminogen by hybrid PAs was stimulated by both CNBr-digested fibrinogen (40- and 80-fold) and Des-A-fibrin monomers (6- and 12-fold). The relatively weak stimulation of chimeric PAs by minimally degraded fibrin monomers was consistent with their reduced fibrin binding capacity. Like scu-PA, the chimeric PAs, in the single-chain form, were insensitive to inhibition, as they retained full activity after prolonged incubation in plasma and did not interact with SDS-reactivated recombinant PAI-1. The concentration producing 50% lysis of blood clots in 3 h was 0.5 microgram/ml for K2tu-PA and 1 microgram/ml for FK2tu-PA, as compared to 0.5 microgram/ml and > 2 micrograms/ml for t-PA and scu-PA, respectively.(ABSTRACT TRUNCATED AT 250 WORDS)

Drug Design↗

Therapeutic effect of a low molecular weight dermatan sulphate (Desmin 370) in rat venous thrombosis--evidence for an anticoagulant-independent mechanism.

We evaluated the capacity of a low molecular weight dermatan sulphate (D370) to prevent thrombus formation and to induce a reduction of a stabilized thrombus in a rat venous thrombosis model. Injection of D370, 10 min before induction of venous stasis (prevention model), prevented thrombus formation in a dose-dependent way (ED50: 2.3 mg/kg). When given to rats 6 h after induction of venous stasis (therapeutic model), D370 caused a time- and dose-dependent reduction in thrombus size (60% to 70% reduction 2 h after injection of 10 mg/kg). At comparable antithrombotic dosages (i.e. minimum dose giving complete inhibition of thrombus formation), heparin (0.5 mg/kg) only caused 40% reduction of a preformed thrombus while hirudin (1 mg/kg) was virtually ineffective (less than 10% reduction in weight). All three compounds inhibited 125I-fibrin(ogen) deposition on 6-h aged thrombi by more than 85%, suggesting that D370 and, to a lesser extent, heparin reduce thrombus size via mechanisms other than inhibition of thrombus accretion. The involvement of a fibrinolysis-mediated mechanism in the D370-induced effect is suggested by the following. EACA (1 g/kg), when given to thrombus-bearing control animals, did not influence thrombus weight. However, when administered before D370 treatment, it prevented the expected reduction in thrombus weight by more than 80%, without influencing the effect of D370 on 125I-fibrin(ogen) accumulation onto preexisting thrombi. D370 injection caused neither an enhancement of fibrinolytic activity nor a reduction of PAI in plasma. In vitro, D370 (200 microns/ml) was unable to potentiate the spontaneous or PA-induced lysis of 125I-fibrinogen labelled blood, plasma, or purified fibrin clots.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Changes in the coagulation-fibrinolysis balance of endothelial cells and mononuclear phagocytes: role in disseminated intravascular coagulation associated with infectious diseases.

Over the last few years, evidence has accumulated that the pathogenetic mechanism of disseminated intravascular coagulation encountered in patients with infectious diseases is extraordinarily complex and involves multiple interactions between the microorganism itself and/or a number of mediators, both microorganism derived and host manufactured, and multifunctional cellular systems, namely endothelial cells and mononuclear phagocytes. In particular, infectious agents and mediators shift the coagulation-fibrinolysis equilibrium of these cells towards fibrin formation and accumulation, via enhancement of procoagulant properties and reduction of both anticoagulant and fibrinolytic capacities. New insights into the pathogenetic mechanism may have important implications for the management of infected patients with disseminated intravascular coagulation.

Animals↗

Inhibitory effect of retinoids on the generation of procoagulant activity by blood mononuclear phagocytes.

Retinoids are known to modulate several functions of mononuclear phagocytes. We have studied the effect of retinyl acetate (RAc) and retinoic acid (RA) on the production of procoagulant activity (PCA) by human peripheral blood mononuclear cells stimulated with endotoxin (1 microgram/ml, 4 or 20 h at 37 degrees C). Both compounds caused a dose-dependent reduction in the expression of cell-associated PCA (from 86 to less than 10% of control in the range of concentration comprised between 0.1 and 100 microM). This effect was also observed when the cells were exposed to retinoids for 10 min and washed before challenge with endotoxin, indicating that it is rapid and irreversible. In contrast, incubation of RAc or RA for 3 h at 37 degrees C with cells that have been already stimulated with endotoxin (20 h at 37 degrees C) remained without influence on cell PCA. The inhibitory action of retinoids was also observed when monocyte-enriched (greater than 85%) preparations or highly purified monocyte-derived macrophages (greater than 99%) were used instead of whole mononuclear cells. BW755C, an inhibitor of cyclo-oxygenase and lipoxygenase, reversed the inhibitory effect of retinoids, whereas acetylsalycilic acid, an inhibitor of cyclo-oxygenase, was inactive, suggesting the involvement of a lipoxygenase product. The inhibition of monocyte/macrophage PCA production and the subsequent reduction of cell potential for fibrin deposition might represent one of the mechanisms whereby retinoids exert their antiinflammatory and immunomodulatory activities.

Blood Coagulation↗

Retinoids inhibit the respiratory burst and degranulation of stimulated human polymorphonuclear leukocytes.

Retinoids exhibit a wide spectrum of activities, including antiinflammatory properties. We have investigated the effect of retinoic acid (RA) and retinyl acetate (RAc) on the production of reactive oxygen metabolites and the release of lysosomal enzymes by human polymorphonuclear leukocytes (PMN). Incubation of PMN with RAc or RA (1-100 microM) caused a dose-dependent inhibition (upto 90%) in O2- production and chemiluminescence induced by phorbol myristate acetate (PMA), N-formyl-methionyl-leucyl-phenylanaline (fMLP), opsonized zymosan or ionophore A23187. Both retinoids (1-100 microM) also inhibited, in a dose-dependent way, degranulation induced by fMLP (upto 85% at the highest concentration of RA). These inhibitory effects appear irreversible, since they persist after the drugs are removed and the cells washed before stimulation. Inhibitors of cyclo-oxygenase activity such as acetylsalicyclic acid and indomethacin did not influence the effects of RAc. In contrast, BW755, an inhibitor of both cyclooxygenase and lipoxygenase, reversed the inhibitory action of RAc, suggesting that the effect of retinoids occurs possibly through the mediation of lipoxygenase products. The modulation of PMN oxidative metabolism and degranulation might help explain the antiinflammatory properties of retinoids.

Calcimycin↗

Urinary procoagulant and fibrinolytic activity in human glomerulonephritis. Relationship with renal function.

Fibrin deposition in kidney is a common event in some forms of human and experimental glomerulonephritis, and is thought to result from local activation of blood coagulation and/or impaired removal by the fibrinolytic system. We studied the urinary procoagulant and fibrinolytic activities in 46 patients with renal disease (26 with IgA nephritis, 13 with other forms of glomerulonephritis and 7 with non-inflammatory kidney disease) and in 15 matched healthy subjects, as possible indicators of the coagulation-fibrinolysis balance in kidney. Procoagulant activity was slightly but not significantly increased in patients with serum creatinine levels higher than 1.5 mg/dl (group II) as compared with patients with normal creatinine (group I) and controls. It was identified as tissue factor by biological criteria (dependence on factor VII). Fibrinolysis studies showed that both plasminogen activator activity and urokinase antigen were significantly lower in group II than in group I patients and controls (P less than 0.0005). Reduced fibrinolytic activity in patients' urine was due to decreased excretion of urokinase since no inhibitor was detected by both fibrin autography and functional assay. No differences were found between patients and controls in plasma fibrinolytic activity, plasminogen activator inhibitor, and procoagulant activity of blood monocytes. The urinary changes in severe renal disease may reflect an unbalance of the coagulation-fibrinolysis equilibrium in kidney and might be of pathogenetic and clinical relevance.

Adolescent↗

Unbalanced coagulation-fibrinolysis potential during L-asparaginase therapy in children with acute lymphoblastic leukaemia.

Treatment of acute lymphoblastic leukaemia (ALL) with L-asparaginase (L-asp) may be associated with thrombotic complications, but the pathogenetic mechanisms of thrombus formation and persistence remain unclear. We studied the procoagulant activity (PCA) of peripheral blood mononuclear cells and some components of the plasma fibrinolytic system in 10 children with ALL undergoing remission induction therapy which includes L-asp. Mononuclear cells obtained 14 days after starting L-asp treatment generated significantly higher amounts of PCA (identified as tissue factor) than cells isolated before the first dose of L-asp and 7 days after the cessation of L-asp administration (p less than 0.01). Augmented PCA coincided with an increase in the plasma D-dimer. The plasma levels of type 1 plasminogen activator inhibitor were found significantly elevated during L-asp therapy (p less than 0.05), whereas plasminogen levels were markedly decreased (p less than 0.05). These findings suggest that, during the course of L-asp treatment, the coagulation-fibrinolysis balance is shifted towards promotion of fibrin formation and deposition. Although it remains to be conclusively established whether L-asp per se or the concurrent administration of multiple chemotherapeutic agents is responsible for these changes, the latter could contribute to the thrombotic complications associated with remission induction therapy for ALL.

Asparaginase↗

Procoagulant activity of mononuclear phagocytes from different anatomical sites in patients with gynecological malignancies.

Mononuclear phagocytes exhibit complex interactions with cancer cells and might contribute to fibrin formation associated with malignancy through the production of procoagulant activity (PCA). We have studied the PCA of peritoneal macrophages in 8 patients with advanced (stages III or IV) ovarian cancer and of macrophages from regional lymph nodes in 14 patients with limited (stages I or II) uterine cancer; peritoneal and lymph-node macrophages from patients with benign gynecological tumors were used as reference cell populations. In all patients, PCA of blood monocytes was also studied. Peritoneal and lymph-node macrophages obtained from patients with ovarian and uterine cancer, respectively, expressed far higher levels of basal PCA than the corresponding cell populations from patients with benign tumors (p less than 0.001). PCA of blood mononuclear cells from patients with ovarian, but not with uterine cancer, was significantly higher (p less than 0.001) than that of control cells. High levels of D-dimer, a specific product derived from plasmin-induced degradation of stabilized fibrin, were found in all ascitic fluids and in all plasma samples but one from patients with ovarian cancer. In contrast, all controls and all uterine cancer patients but one had normal plasma D-dimer. Our findings suggest that local activation of host macrophages for PCA production might contribute to fibrin formation within the tumoral mass. In advanced cancer, blood monocytes may also be activated to produce PCA and thus contribute to activation of intravascular coagulation and, possibly, to thrombo-embolic complications frequently associated with disseminated malignancy.

Aged↗

Increased macrophage procoagulant activity but normal endothelial thrombomodulin in rabbits fed an atherogenic diet.

We have studied the procoagulant activity (PCA) of blood and spleen mononuclear phagocytes and the thrombomodulin activity of aortic segments in rabbits fed an atherogenic diet for 6 weeks as compared to rabbits fed a standard diet. Blood monocytes expressed negligible basal PCA (i.e., PCA measured immediately after cell isolation) both in treated and control rabbits. PCA induced by endotoxin in vitro was not different in the two groups. In contrast, dietary treatment resulted in a significant increase in the basal PCA of spleen cells (p less than 0.01). Moreover, the latter produced significantly more PCA than control cells (p less than 0.002) in response to endotoxin in vitro. The thrombomodulin activity associated with aortic endothelium was not different in the two groups of animals despite the presence of visible fatty streaks on the aortic endothelium of treated rabbits. When rabbits were given a single injection of endotoxin, spleen mononuclear phagocytes harvested 60 min after the injection from treated animals expressed three times more PCA (p less than 0.01) than did cells from controls. In all instances PCA was identified as tissue factor. Endotoxin injection did not affect the thrombomodulin activity of thoracic aorta from both control and diet groups. It is suggested that dietary fats may cause early functional changes in mononuclear phagocytes that lead to an increased PCA production both in vivo and in vitro. These data may be relevant to an understanding of the role of monocytes-macrophages in the pathogenesis of atherosclerosis.

Animals↗

Thrombin infusion in endotoxin-treated rabbits reduces the plasma levels of plasminogen activator inhibitor: evidence for a protein-C-mediated mechanism.

Plasminogen activator inhibitors (PAIs) play a pivotal role in the control of fibrinolysis. The mechanisms regulating the plasma levels of PAI(s) are still unknown. We report here that the infusion of bovine thrombin (1 U/kg/min, over 60 minutes) in rabbits treated with 0.5 microgram/kg endotoxin (to induce an increase in circulating fast-acting PAI) causes a marked reduction of PAI (50% of preinfusion value), as indicated by functional assay and reverse fibrin autography. Moreover, blood clots prepared from samples obtained after thrombin infusion lysed faster than preinfusion clots when exposed, in vitro, to tissue plasminogen activator. Donor-receiver transfusion experiments showed that the half-life of circulating PAI activity was shorter in thrombin-infused rabbits than in controls (4.1 minutes versus 7.4 minutes), suggesting an accelerated clearance. As expected, thrombin infusion resulted also in activation of protein C (PC). The following observations suggest a close relationship between PC activation and PAI reduction. (1) Infusion of thrombin in rabbits made deficient in vitamin K-dependent plasma proteins by warfarin treatment did not result in modification of PAI activity. (2) Treatment of the latter animals with a barium citrate eluate (PE) of rabbit plasma restored both the anticoagulant and profibrinolytic response to thrombin. (3) Short infusion of thrombin-activated PE (containing activated PC, PCa), but not of unactivated PE, induced both anticoagulation and reduction of PAI activity. In vitro, incubation of PAI-rich rabbit serum with thrombin-activated PE and phospholipids resulted in a progressive disappearance of PAI activity with a t1/2 of 30 minutes. However, this slow inactivation rate does not fully explain the results obtained in vivo. Our data suggest that thrombin infusion in rabbits causes a reduction of circulating PAI activity and that activation of PC is the intermediary mechanism involved in this phenomenon.

Animals↗

Possible mechanisms of fibrin deposition in the hypereosinophilic syndrome.

Patients with the hypereosinophilic syndrome (HES) are at increased risk of thrombosis and have signs of fibrin deposition in the myocardial cavity; the pathogenesis of these complications is still unknown. We have studied a 51-year-old man affected by HES with heart, lung, skin, and gastrointestinal involvement. Routine laboratory parameters of the hemostatic system were normal with the exception of blood fibrinolytic activity. The latter was evaluated by both diluted blood clot lysis time and euglobulin lytic activity on fibrin plates before and after 10 min venous occlusion. The fibrinolytic activity measured on four occasions during a 3-month period, was impaired both in basal conditions and following venous occlusion. Platelet studies on two different occasions before and during therapy showed spontaneous platelet aggregation, lowered threshold concentrations of various aggregating agents, reduced platelet regeneration time and increased plasma beta-thromboglobulin concentration. The patient's polymorphonuclear cells (more than 75% eosinophils) were devoid of any procoagulant activity (PCA). Instead, patient's mononuclear cells studied before therapy generated significantly higher PCA on stimulation by endotoxin than cells from control subjects. The procoagulant response to endotoxin decreased markedly during therapy. The observed abnormalities could, at least partially, contribute to fibrin deposition in HES.

Blood Coagulation Factors↗

Increased procoagulant activity of peripheral blood monocytes in human and experimental obstructive jaundice.

We studied the procoagulant activity of peripheral blood monocytes in 41 patients with severe obstructive jaundice and in 27 nonjaundiced control patients using a one-stage clotting assay. Mononuclear cells from jaundiced patients, tested immediately after isolation, expressed low levels of procoagulant activity, which were, however, significantly higher than in cells from controls (p less than 0.01). In addition, after incubation in short-term cultures with and without endotoxin, these cells generated more procoagulant activity than did the control ones (p less than 0.001). No significant difference in procoagulant activity was found between patients with and without malignancy in either group. The relief of biliary obstruction resulted in the reduction of both serum bilirubin levels and monocyte procoagulant activity. Endotoxin-induced monocyte procoagulant activity was about threefold higher in the jaundiced patients who died than in the survivors (p less than 0.001). In rabbits made icteric by bile duct ligation and separation (15 days), the endotoxin-induced monocyte procoagulant activity was markedly increased as compared with sham-operated animals (p less than 0.005). In all instances, procoagulant activity was identified as tissue factor. The increased capacity of mononuclear phagocytes to produce procoagulant activity might help explain the activation of blood coagulation in severe obstructive jaundice.

Adult↗

Impaired fibrinolysis in obstructive jaundice--evidence from clinical and experimental studies.

Microvascular thrombosis is considered an important pathogenetic factor in renal failure associated with obstructive jaundice but the mechanisms leading to fibrin deposition are still unknown. The plasma levels of plasminogen activator inhibitor (PAI) in 29 patients with obstructive jaundice were found significantly increased as compared to 20 nonjaundiced patients. Fibrin autography of plasma supplemented with tissue plasminogen activator (t-PA) revealed that in icteric samples most of the added activator migrated with an apparent Mr of 100 kDa, corresponding to t-PA-PAI complex, whereas in control samples virtually all t-PA migrated as free enzyme. PAI activity detected in icteric samples is similar to the endothelial type PAI since it is neutralized by a monoclonal antibody against PAI-1. Venous stasis in jaundiced patients was neither associated with an increase in blood fibrinolytic activity nor with a decrease in PAI activity. Immunologic assay showed that t-PA release was impaired in 3 out of 4 patients. In controls, venous occlusion induced an increase in both fibrinolytic activity and t-PA antigen and a reduction in PAI activity. Bile duct recanalization in jaundiced patients subjected to surgery was accompanied by a decrease in plasma PAI activity which paralleled the decrease in serum bilirubin levels. In nonjaundiced patients, surgical treatment did not cause significant changes in either parameter. Rabbits made icteric by bile duct ligation showed an early and progressive increase in plasma PAI activity indicating that obstructive jaundice itself causes the elevation of circulating PAI. it is concluded that obstructive jaundice is associated with a severe impairment of fibrinolysis which might contribute to microvascular thrombosis and renal failure.

Adult↗

Mouse tumor-associated macrophages do not generate procoagulant activity in response to different stimuli.

Mononuclear phagocytes, an integral part of the lymphoreticular infiltrate of human and experimental tumors, might contribute to fibrin deposition within malignant tissues through the production of procoagulant activity (PCA). We have studied the PCA of tumor-associated macrophages (TAM) in 2 poorly immunogenic, metastatic murine sarcomas (mFS6 and MN/MCA1); peritoneal macrophages (PM) from tumor-bearing and control animals were also studied, as reference cell populations. PCA was evaluated by a one-stage clotting assay immediately after isolation (basal PCA) and following in vitro stimulation. Basal PCA was very low (less than 1 U/10(4) macrophages) in all cell preparations. Exposure of PM from both normal and tumor-bearing animals to bacterial endotoxin (lipopolysaccharide, LPS), phorbol myristate acetate (PMA) or the chemotactic peptide formyl-methionyl-leucyl-phenylalanine (FMLP) resulted in 10-, 7- and 3-fold increases in PCA, respectively. In contrast, TAM from mFS6 and MN/MCA1 consistently failed to generate PCA in response to different concentrations of the same stimuli. Treatment of TAM with aspirin did not affect cell unresponsiveness. Fluorescence microscopy showed that almost all PM were stained with fluorescein isothiocyanate (FITC)-LPS, while less than 10% of the TAM were stained. These data, coupled with previous evidence that TAM have a lower number of specific binding sites for phorbol esters than PM, suggest that the defective responsiveness of TAM to endotoxin, PMA and, possibly, FMLP, is due to the lack, or very low expression, of binding sites for these agents on the cell surface. The tumor environment may orient the functional status of in situ macrophages in a direction less favorable to the host.

Animals↗