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P Conti

Publications and source records attributed to P Conti.

At least 91 records · Page 5Linked to original sources

4-Deoxypyridoxine inhibits chronic granuloma formation induced by potassium permanganate in vivo.

4-Deoxypyridoxine (4-DPD) is a potent antagonist of Vitamin B6 coenzyme which inhibits IL-1, lymphocyte proliferation and has demonstrated that tolerance to skin grafts can be induced by administering splenic cells to pyridoxine-deficient mice. Chronic inflammation induced by dorsal injections of 200 microliters of a 1:40 saturated crystal solution of potassium permanganate (KMnO4) in mice treated or untreated with 4-DPD (400 micrograms/dose), has been investigated. After 7 days all mice developed a subcutaneous granulomatous tissue indicative of a chronic inflammatory response, at the site of injection. KMnO4-treated mice injected intraperitoneally with 4-DPD (400 micrograms/dose) on 5 consecutive days (the first at the same time of induction of the granuloma) show a significant decrease in size and weight of granuloma when compared to mice not treated with 4-DPD (Controls). In addition, in all mice treated with 4-DPD there was a strong inhibition of TNF alpha in serum (P < 0.01) and in supernatant fluids (P < 0.05) from minced granuloma, while IL-6 was inhibited in the supernatant fluids (P < 0.05) of minced granulomas but was not detected in the serum of treated and untreated mice. In this study we show for the first time the antiinflammatory effect of 4-DPD on chronic inflammation and the inhibitory effect of TNF and IL-6 generation in supernatant fluids from minced granulomas.

Animals↗

Reduced human lymphocyte blastogenesis and enhancement of adenosine triphosphate (ATP) by L-carnitine.

Carnitine is associated with lipid synthesis and its deficiency may lead to cardiomegaly with parenchymal lipid in the heart, kidney and liver. In our study we found that pretreatment of peripheral blood mononuclear cells (PBMC) with serial dilutions of L-Carnitine (100 micrograms/ml-1 pg/ml) inhibits, in a dose-dependent manner, lymphocyte DNA synthesis stimulated with PHA (20 micrograms/ml). L-Carnitine did not have any effect on resting PBMC. The maximum inhibition was found at 10 micrograms/ml of L-Carnitine. Moreover, in a time-course study and using an enzymatic analysis (ATP monitoring reagent), L-Carnitine enhanced ATP production on PBMC treated and untreated with PHA, reaching a maximum effect at 30 min incubation. In another set of experiments PBMC were treated with L-Carnitine alone and in combination with PHA, and the percent of receptors CD3, CD4, and CD8 were calculated with flow cytometry. After the cell incubation with L-Carnitine, the percent of all receptors studied did not change compared to L-Carnitine-untreated cells (controls). These data suggest that L-Carnitine inhibits, in a dose-dependent manner, lymphocyte blastogenesis induced by PHA, probably through the enhancement of ATP synthesis, which is considered an inhibitor of phospholipase C activity and a suppressor in lymphocyte cultures.

Adenosine Triphosphate↗

Bacillus Calmette-Guérin potentiates monocyte responses to lipopolysaccharide-induced tumor necrosis factor and interleukin-1, but not interleukin-6 in bladder cancer patients.

During the past decade, particular attention has been focused on treatment of bladder cancer patients with the bacterial agent bacillus Calmette-Guérin (BCG). In these studies, bladder cancer patients were instilled with BCG (75 mg/50 ml) once per week for 6 weeks, 1-2 weeks following trans-urethral resection of the bladder. Cystoscopy was performed after 6 weeks and, unless tumor progression was present, monthly treatments were given for 1 year. Blood was drawn 2 h after the last instillation, and monocytes were isolated (5 x 10(6) cells/ml) and treated, or not, with lipopolysaccharide (LPS) (20 microgram/ml) for tumor necrosis factor alpha (TNF alpha), interleukin-1 alpha (IL-1 alpha) and interleukin-6 (IL-6) release. The levels of monokines were determined by a monokine-specific enzyme-linked immunosorbent assay. Our results clearly show that, after 18 h incubation, macrophages from BCG-treated bladder cancer patients produced from 2.8- to 1.9-fold and from 2.0- to 1.3-fold greater amounts of TNF alpha and IL-1 alpha respectively, compared to macrophages from healthy controls, 5-fold higher than bladder cancer patients not treated with BCG. IL-6 was not affected. In another set of experiments macrophages (5 x 10(6) cells/ml) from healthy subjects were pretreated, or not, with BCG (100 micrograms/ml) overnight and treated, or not, with LPS 20 microgram/ml alone and in combination with interleukin-1 receptor antagonist (IL-1ra) 250 ng/ml. Macrophages treated with BCG had a strong stimulatory effect on IL-1 alpha release (9.45 ng/ml) while LPS was less effective (3.59 ng/ml). The combination of BCG plus LPS produced an additive effect on IL-1 alpha release (13.71 ng/ml) compared to the effect of the compound alone. The addition of IL-1ra (250 ng/ml) to BCG was not effective, while when IL-1ra was added to BCG plus LPS only a partial inhibition of IL-1 alpha release was found (9.83 ng/ml), compared to BCG plus LPS without IL-1ra (13.71 ng/ml). These effects seem to be related to the inhibition of IL-1 alpha stimulated with LPS, but not BCG. The priming effect of BCG exerted on LPS-stimulated monocyte production of TNF alpha and IL-1 alpha from bladder cancer patients led us to study the possible modulation of fibrinogen and C-reactive protein in the serum of BCG-treated cancer patients. The plasma levels of fibrinogen and C-reactive protein were higher (approximately twice) in BCG-treated patients compared to values obtained in untreated patients or healthy controls. We conclude that the beneficial immunotherapeutic effects of BCG in bladder cancer patients are related to its capacity to prime macrophages to enhance the release of TNF alpha and IL-1 alpha, but not IL-6 in response to physiological secondary stimuli, or through the direct stimulation of BCG on IL-1 alpha or TNF alpha, which are directly involved in the killing of cancer cells.(ABSTRACT TRUNCATED AT 400 WORDS)

Aged↗

[Invasion of the chest wall in primary lung neoplasms].

The authors analyse a series of 5 patients who underwent pulmonary and parietal resection between 1990 and 1993 due to non.microcytoma bronchogenic carcinoma with invasion of the thoracic wall. The patients comprised four men and one woman aged between 45 and 69 years old. Thoracic pain was present in two patients. Pulmonary resection with extrapleural stripping was performed in two patients whereas a block resection from one to five ribs and the corresponding intercostal spaces was performed in the other three patients. The authors' approach is not to perform these operations according to rigid protocols but to adapt them according to the local status of tumour invasion. Therefore to resort to extrapleural resection when there is a free cleavage plane between parietal pleura and rib wall; resection in block of the wall where the carcinoma has infiltrated the endothoracic fascia or deeper. The authors do not report any major complications and record a postoperative mortality rate of 0%. In two cases the thoracic wall was reconstructed using a sheet of Gore-Tex which did not provoke rejection phenomena. Radiotherapy was carried out in cases with positive lymph nodes. The series presented here is too recent to provide significant data regarding survival. However, the only factor seen to influence prognosis in the five patients was the presence or otherwise of lymph node metastasis, irrespective of the histological type and operation performed. The five year survival rate of T3N0M0 patients is in fact similar to that of T2N0M0 patients.(ABSTRACT TRUNCATED AT 250 WORDS)

Aged↗

Inhibition of granuloma formation induced by potassium permanganate in the mouse by a specific human recombinant receptor antagonist for interleukin-1 (hrIL-1ra).

Interleukin-1 (IL-1) is a polypeptide which mediates several systemic changes associated with infection, inflammation and injury, such as fever, neutrophilia, increased acute phase protein synthesis, and arachidonic acid metabolites. Recently, a natural inhibitor of IL-1 has been cloned, called IL-1 receptor antagonist (IL-1ra), which prevents Escherichia coli-induced shock in rabbits and blocks PGE2 induced by IL-1. In this report we study the effect of human recombinant (hr) IL-1ra on chronic inflammation induced by dorsal injections of 200 microliters of a 1:40 saturated crystal solution of potassium permanganate (KMnO4) in mice. After 7 days, all mice developed a subcutaneous granulomatous tissue indicative of a chronic inflammatory response, at the site of injection. KMnO4-treated mice, injected intraperitoneally twice with hrIL-1ra, 20 micrograms/dose (the first at the same time of induction of the granuloma and the second 24 hr later), show significant decreases in size and weight of the granuloma when compared to mice not treated with hrIL-1ra (controls); the inhibitory effect was approximately 32-46 and 25-51%, respectively. In addition, in all mice treated with hrIL-1ra, there was a strong inhibition of PGE2 and LTB4 on assay of freshly minced granuloma tissue. Moreover, when hrIL-1 beta (1.0 ng/ml) or LPS (100 ng/ml) were added overnight to the minced granuloma tissue cultures, these compounds enhanced the production of LTB4 and PGE2 from the untreated mice, whereas in IL-1ra-treated mice they failed. In the histological studies of the granuloma, animals treated with hrIL-1ra show a lesser degree of mononuclear cell (MC) accumulation. The inhibitory effect of hrIL-1ra on PGE2 production was also confirmed on peritoneal macrophages from untreated mice, stimulated overnight with hrIL-1 beta or LPS in vitro. The resulting inhibition was dose-dependent. In these studies we show, for the first time, the anti-inflammatory effect of hrIL-1ra on chronic inflammation as assessed by the inhibition of granuloma formation, PGE2, LTB4, and white cell accumulation in inflamed tissue.

Animals↗

Interleukin-1 receptor antagonist inhibits calcium accumulation in in vivo chronic granuloma induced by potassium permanganate.

Interleukin-1 (IL-1) is a monokine that exerts multiple biological activity, including immunity and inflammation. Moreover, IL-1 is involved in Ca2+ release causing hypercalcemia and bone resorption. Recently, a 22 kDa natural inhibitor to IL-1 called interleukin-1 receptor antagonist (IL-1ra) has been described in human fluids, which specifically binds IL-1 alpha or IL-1 beta receptors. In this study, we found that experimental granuloma induced by subcutaneous injections (0.2 ml) of potassium permanganate (KMnO4) 1:40 saturated crystal solution, after 7 days was strongly inhibited in size, weight and calcium content (measured as dry ash weight by incineration of granuloma tissue) compared with untreated controls, in mice treated intraperitoneally with IL-1ra (20 micrograms/bolus) given twice; the first at the same time of the induction of the granuloma and the second 24 hours later. In addition, leukotriene B4 and prostaglandin E2 were also inhibited in fresh granuloma of mice treated with IL-1ra. Taken together, these findings conclude for the first time, that the accumulation of calcium in chronic inflammatory states is strongly inhibited by IL-1ra, which decreases tissue calcergy and can potentially be useful for the treatment of calcium-related inflammatory diseases and malignancy-associated hypercalcemia.

Animals↗

Effect of interleukin-1 receptor antagonist on vascular smooth muscle cell proliferation.

The development of the atheromatous plaque is largely dependent on vascular smooth muscle cell proliferation and production of biologically active compounds such as cytokines and growth factors. Cytokines such as IL-1 derived from blood vessel wall may contribute to regional defense or pathology. Neutralization of the effects mediated by IL-1 by a receptor antagonist specific for IL-1 alpha and IL-1 beta has been shown to reduce the possible pathologic consequences induced by IL-1 in the regional environment. The effect of human recombinant interleukin-1 receptor antagonist (hrIL-1ra), a new member of the IL-1 family, has been assessed on modulating vascular smooth muscle cell (VSMC) proliferation in the rat. A significant dose- and time-dependent reduction of DNA synthesis was observed when hrIL-1ra was added to the cell cultures. The maximum inhibitory effect was seen using IL-1ra at a concentration of 250 ng/ml and after 48 h incubation with cultured vascular smooth muscle cells. Furthermore, hrIL-1ra inhibited VSMC growth in the presence of exogenous mitogenic doses of IL-1 alpha. The addition of indomethacin to the cultures did not modify the inhibitory events. These data suggest a possible pharmacologic role for IL-1ra in inhibiting VSMC proliferation by possibly interfering with the autocrine regulatory pathway of IL-1.

Animals↗

Human recombinant interleukin-1 receptor antagonist (hrIL-1RA) inhibits prostaglandin E2 (PGE2) generation but not alkaline phosphatase activity in in vivo chronic granulomatous tissue induced by KMnO4.

Interleukin-1, a soluble polypeptide, plays an important role in inflammatory reactions by increasing prostaglandin E2 (PGE2) generation. Human recombinant IL-1 receptor antagonist (hrIL-1ra) is a natural inhibitor of IL-1 which blocks its activity in several inflammatory states. In these studies we found that hrIL-1ra (250 mg/ml) inhibits the generation of PGE2, as measured by RIA method, in minced mouse granuloma tissue (700 mg) treated overnight with LPS (10-1000 ng/ml) or hrIL-1 beta (0.1-10 ng/ml). In addition, we show that hrIL-1ra (250 ng/ml) strongly inhibited IL-1 alpha and IL-1 beta, as measured by ELISA method, in the minced granuloma tissue treated overnight with LPS 1 micrograms/ml or IL-1 beta (10 ng/ml). The granuloma tissue induced in mice by a dorsal subcutaneous injection (0.2 ml) of a saturated solution (1:40 dilution) of KMnO4 crystals, presented an alkaline phosphatase activity which was not inhibited by two intraperitoneal administrations of hrIL-1ra 20 micrograms/200 ml bolus injections (given at the same time as KMnO4 injection and one 24 h later). These results show for the first time that hrIL-1ra blocks PGE2, IL-1 alpha and IL-1 beta but not alkaline phosphatase activity, which is a marker in growing bone and in calcific and inflamed tissue.

Alkaline Phosphatase↗

Human recombinant IL-1 receptor antagonist (IL-1Ra) inhibits leukotriene B4 generation from human monocyte suspensions stimulated by lipopolysaccharide (LPS).

The effect of human recombinant IL-1 receptor antagonist (hrIL-1Ra) on leukotriene B4 (LTB4) release was investigated in activated human monocyte cultures. To stimulate LTB4 generation, LPS was used as an agonist. Detection was performed with the highly sensitive radioimmunoassay method. The cells were treated with scalar concentrations using LPS at 1-1000 ng/ml for different periods of time. The greater LTB4 stimulation was found at LPS 100 ng/ml for 18 h incubation time. Preincubation of monocytes with cytochalasin B (CB) (5 micrograms/ml) for 15 min augmented the release of LTB4 when LPS was used. A dose-dependent inhibition was found when human monocytes were pretreated for 10 min with hrIL-1Ra at different concentrations (0.25-250 ng/ml) and then treated with LPS 100 ng/ml for 18 h. Maximum inhibition was observed at the highest concentration of hrIL-1Ra (250 ng/ml). Macrophages treated with a non-selective 5-lipoxygenase inhibitor, nordihydroguaiaretic acid (NDGA), used at 10 microM, added 15 min before LPS 100 ng/ml, produce a dose-dependent inhibition of LTB4. Cells pretreated with arachidonic acid, at various concentrations (10(-9)-10(-5) M) for 10 min and then treated with LPS 100 ng/ml for 18 h, were also inhibited in a dose-dependent manner by hrIL-1Ra in their production of LTB4. The inhibition of LTB4 release by hrIL-1Ra, in LPS-stimulated human monocytes, may suggest an important modulatory role for this new cytokine (monokine) in inflammation and immunity and may hold future therapeutic implications for diseases involving LTB4 as a mediator.

Arachidonic Acid↗

Leukocyte inhibitory factor (LIF) potentiates human macrophage aggregation and activation responses to calcium ionophore A23187 and directly induces leukotriene B4 and thromboxane A2 release.

Aggregation studies have become a useful criterion for analyzing leukocyte motility and activation in vitro. The T-cell-derived lymphokine human leukocyte inhibitory factor (LIF) is a modulator of many important polymorphonuclear (PMN) functions in addition to aggregation such as chemotaxis, lysosomal degranulation, phagocytosis, bactericidal killing, augmented antibody-dependent cellular cytotoxicity (ADCC), induction of neutrophil Fc-gamma, complement type-1 and FMLP receptors, and production of superoxide and H2O2. Our investigations focused on the ability of LIF to modulate the aggregation of macrophages (MO) induced by calcium ionophore A23187. The ionophore A23187 directly induced potent aggregation of macrophages, which was markedly enhanced when the cells were pretreated with LIF. However, the addition of LIF in the absence of other costimuli did not directly induce MO aggregation. LIF was shown to enhance PMN aggregation induced by N-formyl-Met-Leu-Phe (FMLP), but did not augment the aggregation of FMLP-stimulated macrophages, indicating a cellular specificity of aggregation-inducing costimuli following LIF priming. Additional cytokines examined for possibly inducing MO aggregation were interleukin-1 (IL-1), tumor necrosis factor-alpha (TNF), and interleukin-6 (IL-6); all proved to be incapable of inducing aggregation directly, nor did they enhance the effect of A23187 ionophore on macrophage aggregation. Additionally, we found that LIF can directly stimulate MO to activate specific pathways of the arachidonic acid cascade, inducing the synthesis and release of thromboxanes and leukotriene B4. LIF did not augment the potent ability of A23187 to induce increased production of LTB4 or TxA2 by human MO. These new results coupled with our previously published data indicate that LIF can enhance the activation of both MO and PMN leukocytes when exposed to either A23187 or FMLP, respectively. Moreover, these data suggest that LIF can contribute directly to monocyte-macrophage leukocyte activation, in addition to PMN activation, during inflammatory responses, resulting in greater cell aggregation, activation, and specific proinflammatory arachidonic acid product release.

Calcimycin↗

Blocking the interleukin-1 receptor inhibits leukotriene B4 and prostaglandin E2 generation in human monocyte cultures.

Interleukin-1 is a potent stimulator of arachidonic acid (AA) metabolism and this activity could be attributed to the activation of the prostaglandin-forming enzyme cyclooxygenase or of the arachidonic-releasing enzyme phospholipase A2 or both. Prostaglandin E2 (PGE2), a cyclooxygenase product, and LTB4 (5-(S),12-(R)-dihydroxy-6,14-cis-8,10-trans-eicosatetraenoic acid), a lipoxygenase product, are potent mediators of inflammation. Recently a new cytokine produced by macrophages and named interleukin-1 receptor antagonist (IL-1ra) (MW 22,000 Da) which specifically binds and blocks IL-1 receptors, has proven to be a potent inflammatory inhibitor. In our studies we found that monocyte suspensions, pretreated with hrIL-1ra at increasing concentrations (0.25-250 ng/ml) for 10 min and then treated with LPS in an overnight incubation inhibits, in a dose-dependent manner, the generation of LTB4 as measured by the highly sensitive radioimmunoassay method. In monocytes pretreated with hrIL-1ra (250 ng/ml) for 10 min and treated with arachidonic acid (10(-5)-10(-9) M) and LPS overnight, the release of LTB4 was partially inhibited when compared to hrIL-1ra-untreated cells. Moreover, hrIL-1ra (250 ng/ml) caused a partial inhibition of monocyte LTB4 production when the cells were activated with AA (10(-7) M) and then treated with IL-1 beta (5 ng/ml) overnight or 24 hr incubation. In addition, human monocytes pretreated for 10 min with increasing doses of hrIL-1ra (0.25-250 ng/ml) and then treated with hrIL-1 alpha (5 ng/ml) or beta (5 ng/ml) for 18 hr, also resulted in the inhibition of PGE2 generation as measured by RIA when compared with hrIL-1ra-untreated cells. When the cells were treated with hrIL-1ra (250 ng/ml) and activated for 18 and 48 hr with increasing doses of hrIL-1 beta a strong inhibitory effect was found on PGE2 production. HrIL-1ra used at 15 ng/ml gave a partial inhibition of LTB4 generation, after LPS (1-100 ng/ml) treatment, while NDGA totally blocked the production of LTB4. Moreover, PGE2 released by macrophages activated with LPS (100 ng/ml) or hrIL-1 beta (5 ng/ml) at 18 hr incubation time was strongly inhibited when hrIL-1ra (250 ng/ml) was used. These data suggest that the inhibition of LTB4 and PGE2 by this new macrophage-derived monokine IL-1ra occurs through the block of the IL-1 receptor, rather than phospholipase A2, and thus IL-1ra may offer a potential therapeutic approach to inflammatory states.

Arachidonic Acid↗

Role of lipoxins A4 and B4 in the generation of arachidonic acid metabolites by rat mast cells and their effect on [3H]serotonin release.

Basophils located in tissues are called mast cells and are found in connective tissue. Many different compounds are secreted from basophil granules upon appropriate stimulation. Products such as heparin, histamine, serotonin (5-hydroxytryptamine, 5-HT), and membrane-derived materials which give rise to arachidonic acid metabolites, such as prostaglandins and leukotrienes, are some of the more important compounds released by mast cells. These compounds, when released after stimulation with a variety of molecules, such as IgE, specific antigen anaphylotoxin, as well as the compound 48/80 (C48/80) or calcium ionophore A23187, cause contraction of endothelial cells and mediate atopic or anaphylactic hypersensitivity. In this report, we study the generation of some arachidonic acid products, namely leukotrienes C4, D4, E4, and B4 and the prostaglandins D2 and E2 by rat peritoneal mast cells (RPMC), using calcium ionophore A23187 as a degranulating agonist. We have also studied the new lipoxygenase products, lipoxins A4 and B4, on RPMC secretion using C48/80 as a secretagogue. A rat basophilic leukemia cell line (RBL) was also used to compare results with RPMC. In this paper we have demonstrated that RPMC stimulated with A23187 release LTC4, LTD4, LTE4 and LTB4 and also PGD2 but not PGE2. These results were also confirmed when RBLs were used. In addition, we have shown that mast cells pretreated with LTC4, LTD4, LTE4 or 15-HETE do not modify the release of [3H]5HT exerted by C48/80 (0.5 microgram/ml) or A23187 (5 micrograms/ml). When LXA4 or B4 was used, mast cells were inhibited slightly (not statistically significant) from degranulating after the secretagogue treatment.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Granulocyte-macrophage colony stimulating factor potentiates human polymorphonuclear leukocyte aggregation responses to formyl-methionyl-leucyl-phenylalanine.

Polymorphonuclear leukocytes (PMN) are known to be activated by several lymphokines and can be induced to release lysosomal enzymes, prostaglandins (PG), thromboxanes (TX) and lipoxygenase products that may be involved in PMN aggregation responses during inflammatory reactions. Granulocyte-macrophage colony stimulating factor (GM-CSF), a glycoprotein cytokine released by immunocompetent cells, has been found to prime neutrophil responses, such as increased cell aggregation after exposure to various biological stimulants. In this study, we examined the effects of the cytokine GM-CSF on human neutrophilic aggregation stimulated by N-formyl-methionyl-leucyl-phenylalanine (FMLP) and its influence on the production of various arachidonic acid metabolites. Neutrophil aggregation of purified PMNs was measured by the percent change in light transmission in a standard aggregometer, and the arachidonic acid products leukotriene B4 (LTB4) and thromboxane A2 (TXA2) were quantified by radioimmunoassay. We found that GM-CSF and other cytokines, used alone, did not cause any significant increase in aggregation of the PMN. However, prior exposure of PMN to GM-CSF markedly increased the aggregation induced by FMLP as opposed to that detected with PMN stimulated with only FMLP. This priming effect was not observed with PMN preincubated with interleukin-1 (IL-1), tumor necrosis factor (TNF) or interleukin-6 (IL-6). In addition, GM-CSF and IL-6 both failed to stimulate the production of LTB4 and TXA2, products which are known to induce PMN aggregation. These findings provide new evidence suggesting that GM-CSF facilitates the action of FMLP on the adhesion dependent cellular functions of the inflammatory response, serving as an important co-factor in neutrophil aggregation.

Calcimycin↗

Human recombinant interleukin-1 receptor antagonist (hrIL-1ra) enhances the stimulatory effect of interleukin-2 on natural killer cell activity against MOLT-4 target cells.

Interleukin-1 (IL-1) is considered an enhancer of host defence against malignancies. Patients with different diseases, including cancer patients with large tumour burdens, have demonstrated a reduced production of IL-1 from circulating leukocytes, in vitro. There are many naturally occurring substances which inhibit IL-1 activity aspecifically. Recently an interleukin-1 receptor antagonist (IL-1ra) has been discovered, which is secreted by human macrophages and is structurally similar to IL-1 beta (26% homology). The pretreatment of human peripheral blood mononuclear cells (PBMC) with hrIL-1ra (0.25-250 ng/ml) inhibits IL-1 alpha or IL-1 beta and enhances, in a dose-dependent manner, the stimulatory effect of IL-2 on their natural killer (NK) activity against a lymphoid cell line MOLT-4. The enhancing effect of IL-1ra on IL-2 activity was similar to that provoked by IL-1 beta. However, when IL-1ra was used alone without IL-2, no stimulatory effect was found compared with the control. In our data we show that a member of the IL-1 family, IL-1ra, has a significant effect on IL-2-stimulated NK activity against the MOLT-4 cell line. These studies provide new evidence of the biological potential of IL-1ra since this new protein enhances IL-2 activity on NK cells.

Cytotoxicity, Immunologic↗

Inhibition of interleukin-1 (alpha and beta), interleukin-2 secretion and surface expression of interleukin-2 receptor (IL-2R) by a novel cytokine interleukin-1 receptor antagonist (IL-1ra).

IL-1 is a mediator of the acute inflammatory response and plays a key role in influencing growth and differentiation of immunocompetent lymphocytes. It can enhance transcription and secretion of the T-cell growth factor interleukin-2 (IL-2) and can stimulate the expression of membrane receptors for IL-2. However, the regulation and control of IL-1 activities are poorly understood. Recently an IL-1 inhibitor, interleukin-1 receptor antagonist (IL-1ra), has been described and cloned. This protein is a monokine originally found in the urine of febrile patients and in supernatants of human monocytes adhering to an IgG-coated surface, with an approximate molecular weight of 17 kDa, which is similar to IL-1 beta but having no IL-1-like activity and antagonizing IL-1 by binding to its cell surface receptor. These studies have examined some biological properties of hrIL-1ra, such as its effects on the secretion of IL-1 alpha or IL-1 beta and IL-2, the surface expression of IL-2R and DNA synthesis by peripheral blood mononuclear cells (PBMC). PBMC from normal volunteers were separated and used at a concentration of 2.5 x 10(6) cells/ml. The cells were pretreated for 2 h with hrIL-1ra (0.025-250 ng/ml), treated with LPS (10 ng/ml), and IL-1 alpha and IL-1 beta secretion were determined by an ELISA method. In addition the influence of hrIL-1ra (25 ng/ml) on IL-2 generation was determined. In another set of experiments, flow cytometric analysis with an anti-CD25 monoclonal antibody was determined on PHA-stimulated PBMC pretreated with hrIL-1ra (2 h) and cultured for 48 h. The inhibition by hrIL-1ra of IL-2R expression was dose-dependent and when hrIL-1ra was used at 250 ng/ml the IL-2R was completely abolished. Lymphocyte DNA synthesis calculated from the net uptake of [3H]-thymidine (3H-TdR) was also inhibited by hrIL-1ra (0.025-25 ng/ml). In this report we found that hrIL-1ra inhibits, in a dose-dependent manner, the secretion of IL-1 alpha, IL-1 beta, IL-2, the surface expression of IL-2R and 3H-TdR incorporation in PBMC in vitro. These data suggest a new biological activity of hrIL-1ra and further extend the immunomodulatory potential and significance of this new cytokine. The action of IL-1ra on modulating the synthesis of IL-1 may be of paramount importance in the regulation of these effects.

Concanavalin A↗

[A rare case of intramedullary epidermoid cyst diagnosed by MRI].

Intramedullary epidermoid cysts are rare entities. A case recently seen on MRI led us to review the literature on the subject. A 9 year old boy developed in a four month-time a spastic paraparesis with a T7-T8 sensitive level. The MRI showed a widening of the spinal cord at the T6 level with an area of decreased signal on T1 weighted images, and a homogeneous round shaped area of increased signal on T2 weighted images. The authors discuss the contribution of MRI to the diagnosis of this lesion. The number of cases of intramedullar epidermoid cysts, like dermoid cysts, diagnosed with this neuroradiological method, is still very limited and the literature only mentions isolated cases.

Child↗

Inhibition of leukotriene B4(LTB4) by recombinant interleukin-1 receptor antagonist (IL-1RA) on human monocytes.

Macrophages are a primary source of interleukin-1 (IL-1), a glycoprotein which plays an important and essential role in the immune response and inflammation. Cytokines stimulate many different cells to produce increasing amounts of arachidonic acid metabolites such as prostaglandins and leukotrienes. Recently, interleukin-1 receptor antagonist (IL-1ra), a natural inhibitor of IL-1 released by macrophages, has been reported to inhibit PGE2. In accordance with these data our results show that the pretreatment, for 60 min, of purified human peripheral monocytes with IL-1ra at different concentrations (0.25-250 ng/ml) inhibits, in a dose-dependent manner, the generation of LTB4 released after 10 min treatment with calcium ionophore A23187 (5 microM). The inhibition of LTB4 synthesis by hrIL-1ra suggests the possibility that this new glycoprotein plays a modulatory role in immunity and inflammation.

Calcimycin↗