239 resultados para excessive daytime sleepiness
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In vitro studies have shown that stimulation of alpha1-adrenoceptors (ARs) directly induces proliferation, hypertrophy, and migration of arterial smooth muscle cells and adventitial fibroblasts. In vivo studies confirmed these findings and showed that catecholamine trophic activity becomes excessive after experimental balloon injury and contributes to neointimal growth, adventitial thickening, and lumen loss. However, past studies have been limited by selectivity of pharmacological agents. The aim of this study, in which mice devoid of norepinephrine and epinephrine synthesis [dopamine beta-hydroxylase (DBH-/-)] or deficient in alpha1-AR subtypes expressed in murine carotid (alpha1B-AR-/- and alpha1D-AR-/-) were used, was to test the hypothesis that catecholamines contribute to wall hypertrophy after injury. At 3 wk after injury of wild-type mice, lumen area and carotid circumference increased significantly, and hypertrophy of media and adventitia was in excess of that needed to restore circumferential wall stress to normal. In DBH-/- and alpha1B-AR-/- mice, increases in lumen area, circumference, and hypertrophy of the media and adventitia were reduced by 50-91%, resulting in restoration of wall tension to nearly normal (DBH-/-) or normal (alpha1B-AR-/-). In contrast, in alpha1D-AR-/- mice, increases in lumen area, circumference, and wall hypertrophy were unaffected and wall thickening remained in excess of that required to return tension to normal. When examined 5 days after injury, proliferation and leukocyte infiltration were inhibited in DBH-/- mice. These studies suggest that the trophic effects of catecholamines are mediated primarily by alpha1B-ARs in mouse carotid and contribute to hypertrophic growth after vascular injury.
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This year reviews on the addictions emphasizes five aspects, on a bio-psycho-social perspective: (1) The relationship between methadone and cardiotoxicity. (2) The introduction of Eye Movement Desensibilization and Reprocessing (EMDR). (3) The apparition of a possible specific pharmacotherapy for excessive gambling. (4) A better knowledge of the relationship between cannabis and psychoses. (5) Resistance to treatment in the doctor-patient relationship.
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Bisphosphonates are potent inhibitors of osteoclast function widely used to treat conditions of excessive bone resorption, including tumor bone metastases. Recent evidence indicates that bisphosphonates have direct cytotoxic activity on tumor cells and suppress angiogenesis, but the associated molecular events have not been fully characterized. In this study we investigated the effects of zoledronate, a nitrogen-containing bisphosphonate, and clodronate, a non-nitrogen-containing bisphosphonate, on human umbilical vein endothelial cell (HUVEC) adhesion, migration, and survival, three events essential for angiogenesis. Zoledronate inhibited HUVEC adhesion mediated by integrin alphaVbeta3, but not alpha5beta1, blocked migration and disrupted established focal adhesions and actin stress fibers without modifying cell surface integrin expression level or affinity. Zoledronate treatment slightly decreased HUVEC viability and strongly enhanced tumor necrosis factor (TNF)-induced cell death. HUVEC treated with zoledronate and TNF died without evidence of enhanced annexin-V binding, chromatin condensation, or nuclear fragmentation and caspase dependence. Zoledronate inhibited sustained phosphorylation of focal adhesion kinase (FAK) and in combination with TNF, with and without interferon (IFN) gamma, of protein kinase B (PKB/Akt). Constitutive active PKB/Akt protected HUVEC from death induced by zoledronate and TNF/IFNgamma. Phosphorylation of c-Src and activation of NF-kappaB were not affected by zoledronate. Clodronate had no effect on HUVEC adhesion, migration, and survival nor did it enhanced TNF cytotoxicity. Taken together these data demonstrate that zoledronate sensitizes endothelial cells to TNF-induced, caspase-independent programmed cell death and point to the FAK-PKB/Akt pathway as a novel zoledronate target. These results have potential implications to the clinical use of zoledronate as an anti-angiogenic or anti-cancer agent.
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OBJECTIVE: To evaluate the antihypertensive efficacy of sinorphan, an orally active inhibitor of neutral endopeptidase EC 3.4.24.11. DESIGN: The ability of sinorphan (100 mg twice a day) to lower blood pressure was compared with that of the angiotensin converting enzyme (ACE) inhibitor captopril (25 mg twice a day) using a randomized-sequence, double-blind crossover design in 16 patients with essential hypertension. Each treatment was administered for 4 weeks and treatments were separated by a 3-week placebo period. At the end of the last phase of treatment sinorphan was combined with captopril for a further 4-week period. The changes in systolic (SBP) and diastolic blood pressure (DBP) were monitored using repeated ambulatory blood pressure monitoring. RESULTS: When given as monotherapy for 4 weeks, neither sinorphan nor captopril significantly reduced the 24-h or the 14-h daytime mean SBP or DBP. However, a significant decrease in DBP was observed during the first 6 h after the morning administration of captopril. With sinorphan only a significant decrease in night-time SBP was found. With the combined therapy of sinorphan and captopril, significant decreases both in SBP and in DBP were observed, which were sustained over 24 h. After 4 weeks of sinorphan alone or in combination with captopril, no change in plasma atrial natriuretic peptide level was found. However, urinary cyclic GMP excretion increased transiently after administration of the neutral endopeptidase inhibitor. CONCLUSIONS: Neutral endopeptidase inhibition with sinorphan has a limited effect on blood pressure in hypertensive patients when given alone. However, simultaneous neutral endopeptidase and ACE inhibition induces a synergistic effect, and might therefore represent an interesting new therapeutic approach to the treatment of essential hypertension.
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The role of PIP(2) in pancreatic beta cell function was examined here using the beta cell line MIN6B1. Blocking PIP(2) with PH-PLC-GFP or PIP5KIgamma RNAi did not impact on glucose-stimulated secretion although susceptibility to apoptosis was increased. Over-expression of PIP5KIgamma improved cell survival and inhibited secretion with accumulation of endocytic vacuoles containing F-actin, PIP(2), transferrin receptor, caveolin 1, Arf6 and the insulin granule membrane protein phogrin but not insulin. Expression of constitutively active Arf6 Q67L also resulted in vacuole formation and inhibition of secretion, which was reversed by PH-PLC-GFP co-expression. PIP(2) co-localized with gelsolin and F-actin, and gelsolin co-expression partially reversed the secretory defect of PIP5KIgamma-over-expressing cells. RhoA/ROCK inhibition increased actin depolymerization and secretion, which was prevented by over-expressing PIP5KIgamma, while blocking PIP(2) reduced constitutively active RhoA V14-induced F-actin polymerization. In conclusion, although PIP(2) plays a pro-survival role in MIN6B1 cells, excessive PIP(2) production because of PIP5KIgamma over-expression inhibits secretion because of both a defective Arf6/PIP5KIgamma-dependent endocytic recycling of secretory membrane and secretory membrane components such as phogrin and the RhoA/ROCK/PIP5KIgamma-dependent perturbation of F-actin cytoskeleton remodelling.
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Converging evidence suggests that recurrent excessive calorie restriction causes binge eating by promoting behavioral disinhibition and overeating. This interpretation suggests that cognitive adaptations may surpass physiological regulations of metabolic needs after recurrent cycles of dieting and binging. Intermittent access to palatable food has long been studied in rats, but the consequences of such diet cycling procedures on the cognitive control of food seeking remain unclear. Female Wistar rats were divided in two groups matched for food intake and body weight. One group received standard chow pellets 7 days/week, whereas the second group was given chow pellets for 5 days and palatable food for 2 days over seven consecutive weeks. Rats were also trained for operant conditioning. Intermittent access to palatable food elicited binging behavior and reduced intake of normal food. Rats with intermittent access to palatable food failed to exhibit anxiety-like behaviors in the elevated plus maze, but displayed reduced locomotor activity in the open field and developed a blunted corticosterone response following an acute stress across the diet procedure. Trained under a progressive ratio schedule, both groups exhibited the same motivation for sweetened food pellets. However, in contrast to controls, rats with a history of dieting and binging exhibited a persistent compulsive-like behavior when access to preferred pellets was paired with mild electrical foot shock punishments. These results highlight the intricate development of anxiety-like disorders and cognitive deficits leading to a loss of control over preferred food intake after repetitive cycles of intermittent access to palatable food.
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Fibroblastic reticular cells (FRC) form the structural backbone of the T cell rich zones in secondary lymphoid organs (SLO), but also actively influence the adaptive immune response. They provide a guidance path for immigrating T lymphocytes and dendritic cells (DC) and are the main local source of the cytokines CCL19, CCL21, and IL-7, all of which are thought to positively regulate T cell homeostasis and T cell interactions with DC. Recently, FRC in lymph nodes (LN) were also described to negatively regulate T cell responses in two distinct ways. During homeostasis they express and present a range of peripheral tissue antigens, thereby participating in peripheral tolerance induction of self-reactive CD8(+) T cells. During acute inflammation T cells responding to foreign antigens presented on DC very quickly release pro-inflammatory cytokines such as interferon γ. These cytokines are sensed by FRC which transiently produce nitric oxide (NO) gas dampening the proliferation of neighboring T cells in a non-cognate fashion. In summary, we propose a model in which FRC engage in a bidirectional crosstalk with both DC and T cells to increase the efficiency of the T cell response. However, during an acute response, FRC limit excessive expansion and inflammatory activity of antigen-specific T cells. This negative feedback loop may help to maintain tissue integrity and function during rapid organ growth.
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OBJECTIVE: To study the benefits of a low-dose stimulation (LDS) protocol with purified urinary follicle-stimulating hormone in patients with polycystic ovaries who have presented previously with a very high ovarian response to a standard hMG stimulation. DESIGN: Cohort study. SETTING: Fertility center in a university hospital. PATIENT(S): Sixty-one patients involved in an IVF/ICSI program from January 1995 to December 1996. INTERVENTION(S): The patients were first stimulated with a standard protocol using hMG and presented with a very high ovarian response. These patients were then stimulated a second time using a low-dose protocol. Cryopreserved embryos were transferred in later artificial or natural cycles until to December 1999. MAIN OUTCOME MEASURE(S): Number of gonadotropin ampules; estradiol level on the day of ovulation induction; follicles, oocytes, and cryopreserved zygotes; fertilization, implantation, and pregnancy rates; and number of ovarian hyperstimulation syndromes (OHSS). RESULT(S): The number of ampules used, the estradiol level reached, and the number of oocytes obtained were significantly lower under the LDS than the standard protocol. High implantation (21.8%) and clinical pregnancy (38.4%) rates were obtained after LDS. The cumulated deliveries per cycle started and per patient were, respectively, 41.6% and 52.5%. Five patients suffered OHSS with the standard protocol, and none with the LDS. CONCLUSION(S): The LDS protocol offers a safe and efficient treatment for patients who present with echographic polycystic ovaries and are at risk of an excessive ovarian response to standard IVF stimulation protocols.
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Contexte : l'adolescence est une période de transition au cours de laquelle l'enfant développe les capacités physiques et cognitives qui lui permettent de s'intégrer au monde adulte et qui se caractérise notamment par une prise de risque, une grande impulsivité et une constante recherche de sensations. Bien que des déterminants sociaux et familiaux entrent en jeu dans ce domaine, il y a également une composante neurobiologique importante. Les avancées techniques dans le domaine de l'imagerie ont permis de mettre en évidence plusieurs changements structurels à l'adolescence tels qu'un remodelage de la matière grise avec une perte de synapses plus ou moins importante selon la région observée et une augmentation de la myélinisation. En outre, le développement cérébral n'est pas uniforme dans le temps. En effet, la maturation du cortex préfrontal est ultérieure au développement du système limbique. Cet asynchronisme pourrait expliquer l'impulsivité des adolescents (consécutive à l'immaturité du cortex préfrontal) et leur comportement de recherche de sensation et/ou de prise de risque (consécutif au développement précoce du noyau accumbens notamment). Ces régions font également partie intégrante du système de récompense et modulent la motivation pour des récompenses naturelles et non-‐naturelles, comme l'alcool et d'autres drogues. L'émergence d'une consommation d'alcool excessive est justement préoccupante chez les adolescents. En 2007, l'étude ESPAD (The European School Survey Project On Alcohol and Other Drugs) menée auprès de jeunes de 15 à 16 ans relève que 41% des jeunes questionnées ont régulièrement bu jusqu'à l'ivresse dans les 12 mois précédant l'entretien. Les conséquences neuropsychologiques à long terme de ce comportement de « binge-‐drinking » commencent à alarmer le corps médical, mais l'interrogation demeure sur les risques de ce type de comportement vis-‐à-‐vis du développement d'un alcoolisme chronique à l'âge adulte. Objectifs du travail : en s'appuyant sur une revue de la littérature, ce travail a pour objectif d'expliquer les comportements qui émergent à l'adolescence à la lumière des modifications neurobiologiques qui s'opèrent durant cette période critique. Au niveau expérimental, nous proposons d'évaluer la propension de rats juvéniles exposés précocement à de l'alcool à développer un comportement d'abus de consommation d'alcool à l'âge adulte en comparaison avec un groupe contrôle. Dans un deuxième temps nous souhaitons déterminer la propension des rats exposés précocement à de l'alcool à montrer une préférence pour l'alcool par rapport à la saccharine, puis par rapport à de l'eau en comparaison au groupe contrôle. Méthode : nous comparons deux groupes de rongeurs adolescents (âgés de 32 jours à 67 jours). Le groupe test (groupe E, n=8), qui est exposé par un accès ad libitum à une solution d'éthanol 10 % contenant de la saccharine 0.2%, ceci afin de limiter l'aspect gustatif aversif de l'éthanol. Et le groupe témoin (groupe S, n=8), qui est exposé par un accès ad libitum à une solution de saccharine 0.2%. Ce conditionnement se fait sur 13 semaines. Une fois atteinte l'âge adulte, les animaux sont ensuite entraînés à appuyer sur un levier afin de recevoir de l'éthanol (0,1 ml d'une solution à 10%). Nous nous proposons d'évaluer la quantité d'alcool ainsi consommée, puis la motivation des animaux pour obtenir de l'éthanol et enfin leur capacité de résistance à un choc électrique non douloureux mais aversif, lorsque celui-‐ci est associé à l'éthanol. Enfin, nous évaluerons, via un paradigme de choix à deux leviers, la propension des animaux à choisir de consommer volontairement de l'éthanol quand ils ont le choix entre de l'éthanol 10% et une solution de saccharine à différentes concentrations, puis entre de l'éthanol 10% et de l'eau. Résultats : la phase de tests de comportements à risque d'abus ne permet pas de mettre en évidence une différence significative entre les deux groupes. La phase de test de choix montre une diminution significative du pourcentage d'appuis sur le levier associé à la saccharine avec la diminution de la concentration de saccharine pour les deux groupes. Le groupe S a un pourcentage d'appuis sur le levier associé à l'éthanol significativement plus important que les rats du groupe E et a tendance à préférer l'éthanol pour une concentration de saccharine plus grande que le groupe E. Le groupe S montre également une préférence significative pour l'éthanol quand il n'a plus que le choix avec l'eau alors que le groupe E ne montre pas de préférence. Conclusions : chez des rats élevés dans les mêmes conditons, la consommation précoce d'éthanol n'est pas un facteur de risque de comportements d'abus de consommation d'alcool à l'âge adulte. Cependant un phénomène dit de « sensiblisation croisée » entre le goût sucrée et l'éthanol a été soulevé au cours de cette étude permettant de se questionner sur l'impact d'une consommation intermittente de substances au goût sucré à l'adolescence sur la consommation d'alcool à l'âge adulte.
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Introduction: The posterior inclination of the tibial component is an important factor that can affect the success of total knee arthroplasty. It can reduce the posterior impingement and thus increase the range of flexion, but it may also induce instability in flexion, anterior impingement between the polyethylene of postero-stabilizing knee prosthesis, and anterior conflict with the cortical bone and the stem. Although the problem is identified, there is still a debate on the ideal inclination angle and the surgical technique to avoid an excessive posterior inclination. The aim of this study was to predict the effect of a posterior inclination of the tibial component on the contact pattern on the tibial insert, using a numerical musculoskeletal model of the knee joint. Methods: A 3D finite element model of the knee joint was developed to simulate an active and loaded squat movement after total knee arthroplasty. Flexion was actively controlled by the quadriceps muscle and muscle activations were estimated from EMG data and were synchronized by a feedback algorithm. Two inclinations of the tibial tray were considered: a posterior inclination of 0° or 10°. During the entire range of flexion, the following quantities were calculated: the tibiofemoral and patello-femoral contact force, and the contact pattern on polyethylene insert. The antero-posterior displacement of the contact pattern was also measured. Abaqus 6.7 was used for all analyses. Results: The tibio-femoral and patello-femoral contact forces increased during flexion and reached respectively 4 and 7 BW (bodyweight) at 90° of flexion. They were slightly affected by the inclination of the tibial tray. Without posterior inclination, the contact pattern on the tibial insert remained centered. The contact pressure was lower than 5 MPa below 60° of flexion, but exceeded 20 MPa at 90° of flexion. The posterior inclination displaced the contact point posteriorly by 2 to 4 mm. Conclusion: The inclination of the tibial tray displaced the contactpattern towards the posterior border of the tibial insert. However, even for 10° of inclination, the contact center remained far from the posterior border (12 mm). There was no instability predicted for this movement.
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Introduction :¦L'hyperthyroïdie est la dysfonction thyroïdienne la plus fréquemment symptomatique et diagnostiquée. Son étiologie la plus fréquente chez l'adulte est la maladie de Basedow. Dans sa pratique le médecin se concentre sur les variables spécifiques à la maladie qui sont liées à une augmentation de la mortalité chez les patients. D'autres variables, comme la perte de poids accompagnant la maladie et le risque de reprise de ce poids suite au traitement, semblent peu prises en compte. Ce travail est une étude rétrospective¦portant sur 31 patients hyperthyroïdiens suivis ambulatoirement dans le service d'endocrinologie, diabétologie et métabolisme (EDM) du centre hospitalier universitaire vaudois (CHUV) durant 18 à 24 mois.¦Objectifs :¦Déterminer la variation de poids chez ces patients, la relation qui existe entre l'évolution des résultats des examens de laboratoire et la variation de poids, évaluer les facteurs de risque pour une prise pondérale excessive suite au traitement et comparer la variation de poids en fonction du poids de forme.¦Limites :¦Le caractère rétrospectif de l'étude, le petit nombre de patients inclus le fait que les statistiques n'ont pas été réalisées par un statisticien expérimenté limitent l'interprétation des résultats.¦Résultats et discussion :¦Il existe une perte de poids accompagnant un épisode inaugural dans 71% des cas. Les patients ont tendance à prendre du poids suite au traitement (médiane : + 7.3 kg). Le poids pris consiste en une compensation du poids perdu avant le diagnostic, avec un surplus de reprise pondérale (médiane : + 0.150 kg). Le poids de forme manque dans 41.9% des cas. Après 18 à 24 mois de suivi, la catégorie d'IMC dans¦laquelle les patients se trouvent correspond dans 73.3% des cas à la catégorie d'IMC de forme. Ni le sexe ni l'âge influencent la variation pondérale initiale (sexe : p=0.429 ; âge : p=0.241). L'importance de la perturbation des concentrations hormonales n'influe pas sur l'importance de la perte pondérale au diagnostic (TSH : R2=0.001 ; T4l : R2=0.0037). Les patients avec 6 symptômes et plus présents au moment du diagnostic ont tendance à avoir une T4 libre plus élevée (médiane : 51.26 pmol/l) que ceux qui ont moins de 6 symptômes (médiane : 40.00 pmol/l). Des facteurs prédisposants à un surplus de reprise n'ont¦pas pu être déterminés, mais des tendances peuvent être décrites. Une sur-correction iatrogène¦de l'hyperthyroïdie, avec un passage en hypothyroïdie après 18-24 mois de suivi est possiblement liée à une reprise de poids nette élevée. La reprise de poids est moindre si un suivi diététique a eu lieu (médiane : 0 kg versus 1.8 kg sans suivi diététique).
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In Duchenne muscular dystrophy, the absence of dystrophin causes progressive muscle wasting and premature death. Excessive calcium influx is thought to initiate the pathogenic cascade, resulting in muscle cell death. Urocortins (Ucns) have protected muscle in several experimental paradigms. Herein, we demonstrate that daily s.c. injections of either Ucn 1 or Ucn 2 to 3-week-old dystrophic mdx(5Cv) mice for 2 weeks increased skeletal muscle mass and normalized plasma creatine kinase activity. Histological examination showed that Ucns remarkably reduced necrosis in the diaphragm and slow- and fast-twitch muscles. Ucns improved muscle resistance to mechanical stress provoked by repetitive tetanizations. Ucn 2 treatment resulted in faster kinetics of contraction and relaxation and a rightward shift of the force-frequency curve, suggesting improved calcium homeostasis. Ucn 2 decreased calcium influx into freshly isolated dystrophic muscles. Pharmacological manipulation demonstrated that the mechanism involved the corticotropin-releasing factor type 2 receptor, cAMP elevation, and activation of both protein kinase A and the cAMP-binding protein Epac. Moreover, both STIM1, the calcium sensor that initiates the assembly of store-operated channels, and the calcium-independent phospholipase A(2) that activates these channels were reduced in dystrophic muscle by Ucn 2. Altogether, our results demonstrate the high potency of Ucns for improving dystrophic muscle structure and function, suggesting that these peptides may be considered for treatment of Duchenne muscular dystrophy.
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Plant circadian clock controls a wide variety of physiological and developmental events, which include the short-days (SDs)-specific promotion of the elongation of hypocotyls during de-etiolation and also the elongation of petioles during vegetative growth. In A. thaliana, the PIF4 gene encoding a phytochrome-interacting basic helix-loop-helix (bHLH) transcription factor plays crucial roles in this photoperiodic control of plant growth. According to the proposed external coincidence model, the PIF4 gene is transcribed precociously at the end of night specifically in SDs, under which conditions the protein product is stably accumulated, while PIF4 is expressed exclusively during the daytime in long days (LDs), under which conditions the protein product is degraded by the light-activated phyB and also the residual proteins are inactivated by the DELLA family of proteins. A number of previous reports provided solid evidence to support this coincidence model mainly at the transcriptional level of the PIF 4 and PIF4-traget genes. Nevertheless, the diurnal oscillation profiles of PIF4 proteins, which were postulated to be dependent on photoperiod and ambient temperature, have not yet been demonstrated. Here we present such crucial evidence on PIF4 protein level to further support the external coincidence model underlying the temperature-adaptive photoperiodic control of plant growth in A. thaliana.
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Hereditary periodic fever syndromes, also called autoinflammatory syndromes, are characterized by relapsing fever and additional manifestations such as skin rashes, mucosal manifestations, or arthralgias. Some of these disorders present without fever but with the associated systemic manifestations. The responsible mutated genes have been identified for most of these disorders, which lead to the induction of the uncontrolled and excessive production of interleukin-1beta (IL-1beta). The inhibition of IL-1beta through IL-1 receptor antagonist or monoclonal antibody against IL-1beta is used with success in most of these diseases. In case of TNF-receptor associated periodic syndrome (TRAPS) and paediatric granulomatous arthritis (PGA), TNF-antagonists may also be used; in familial Mediterranean fever (FMF) colchicine remains the first choice.
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Alveolar macrophages have the ability to downregulate immune processes in vitro. We have recently suggested the presence of interleukin-1 (IL-1) inhibitors in the supernatants of human bronchoalveolar lavage cells from patients with idiopathic pulmonary fibrosis or sarcoidosis. In the present study, we further analyze the cellular origin and the biologic properties of a 20- to 25-kD IL-1 inhibitor spontaneously produced by cultured human alveolar macrophages (AM). The inhibitor blocks IL-1-induced prostaglandin E2 production by human fibroblasts and the IL-1-related increase of phytohemagglutinin-induced murine thymocyte proliferation. After rigorous IL-1 alpha and IL-1 beta depletion, supernatants of lung macrophages specifically block the binding of IL-1 to its receptor on the murine thymoma cell line EL4-6.1 in a dose-dependent manner. These results indicate that AM from both normal donors and patients produce a specific IL-1 inhibitor that may be of importance in protecting the alveolar environment from the deleterious effects of excessive IL-1 production.