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Biomedical subjects

A Merendino

Publications and source records attributed to A Merendino.

14 recordsLinked to original sources

Apoptosis and airway inflammation in asthma.

Asthma is a disease characterized by a chronic inflammation of the airways and by structural alterations of bronchial tissues, often referred to as airway remodelling. The development of chronic airway inflammation in asthma depends upon the continuous recruitment of inflammatory cells from the bloodstream towards the bronchial mucosa and by their subsequent activation. It is however increasingly accepted that mechanisms involved in the regulation of the survival and apoptosis of inflammatory cells may play a central role in the persistent inflammatory process characterizing this disease. Increased cellular recruitment and activation, enhanced cell survival and cell:cell interactions are therefore the key steps in the development of chronic airway inflammation in asthma, and represent the major causes for tissue damge, repair and remodelling.

Animals↗

Evaluation of apoptosis of eosinophils, macrophages, and T lymphocytes in mucosal biopsy specimens of patients with asthma and chronic bronchitis.

BACKGROUND: Apoptosis regulates inflammatory cell survival, and its reduction contributes to the chronicity of an inflammatory process. Apoptosis is controlled by suppressing or inducing genes, such as bcl-2 and p53, respectively. OBJECTIVE: We sought to assess apoptosis of eosinophils, macrophages, and T lymphocytes in bronchial biopsy specimens from asthmatic subjects and to examine its regulation by evaluating the expression of B-cell lymphoma leukemia-2 (Bcl-2) and P53 proteins. We also sought to explore the relationships between cell apoptosis and GM-CSF, a cytokine able to increase eosinophil and macrophage survival. METHODS: Apoptosis in eosinophils, macrophages, and T lymphocytes was evaluated in bronchial biopsy specimens obtained from 30 asthmatic subjects, 26 subjects with chronic bronchitis, and 15 control subjects by combining the terminal deoxynucleotidyl transferase-mediated dNTP nick end-labeling technique and immunohistochemistry. The expression of P53, Bcl-2, and GM-CSF was studied through immunohistochemistry by using specific mAbs. RESULTS: The number of apoptotic eosinophils and macrophages was lower in subjects with asthma than in those with chronic bronchitis (P <.007 and P <.001, respectively) and inversely correlated with the clinical severity of asthma (P <.001 and P <.002, respectively). Few T lymphocytes were apoptotic in all groups studied. In asthma GM-CSF+ cells correlated with the number of nonapoptotic eosinophils and macrophages (P =.0001) and with the severity of the disease (P <.003). In asthma Bcl-2+ cells were higher than in control subjects and subjects with chronic bronchitis (P <.002 and P <.015, respectively), they outnumbered P53+ cells, and they correlated with the number of T lymphocytes (P <.001) and with the severity of the disease (P <.003). CONCLUSION: Airway inflammation in asthma is associated with an enhanced survival of different cell types caused by reduced apoptosis.

Adult↗

Transforming growth factor-beta expression in mucosal biopsies in asthma and chronic bronchitis.

We assessed whether transforming growth factor-beta (TGF-beta), a fibrogenic growth factor, may be involved in remodeling of asthma and chronic bronchitis; its expression was compared with that of epidermal growth factor (EGF) and granulocyte macrophage colony-stimulating factor (GM-CSF) in bronchial mucosal biopsies from 13 normal subjects, 24 asthmatics, and 19 patients with chronic bronchitis. TGF-beta immunoreactivity was highly increased in epithelium and submucosa of those with bronchitis and to a lesser extent in asthmatics. By comparison, with normal subjects, EGF immunoreactivity was significantly increased in the epithelium of bronchitic subjects and submucosa of asthmatics, and, GM-CSF immunoreactivity was increased in both epithelial and submucosal cells of asthmatics and to a lesser extent in submucosa of bronchitics. A significant correlation was found between the number of epithelial or submucosal cells expressing TGF-beta in both asthma and chronic bronchitis and basement membrane thickness and fibroblast number. No such correlation was found for EGF or GM-CSF. in situ hybridization for TGF-beta 1 mRNA confirmed the results obtained by immunohistochemistry. By combining in situ hybridization and immunohistochemistry, it was found that eosinophils and fibroblasts were synthetizing TGF-beta in asthma and bronchitis. These data suggest that TGF-beta, but not EGF or GM-CSF, is involved in airways remodeling in asthma and chronic bronchitis.

Adolescent↗

Release of transforming growth factor-beta (TGF-beta) and fibronectin by alveolar macrophages in airway diseases.

Asthma and chronic bronchitis are associated with airway remodelling, and airway macrophages are present in bronchial inflammation. TGF-beta and fibronectin released by alveolar macrophages possess a fibrogenic potency. The potential role of alveolar macrophages in airway remodelling was studied in asthma and chronic bronchitis by the release of TGF-beta and fibronectin. Alveolar macrophages were isolated by bronchoalveolar lavage in 14 control subjects, 14 asthmatics and 14 chronic bronchitics. The spontaneous and lipopolysaccharide (LPS)- or concanavalin A (Con A)-induced release of TGF-beta and fibronectin was measured by ELISA. Alveolar macrophages from chronic bronchitics spontaneously release greater amounts of TGF-beta and fibronectin than those from asthmatic and control subjects. Alveolar macrophages from asthmatics release greater amounts of TGF-beta and fibronectin than those from control subjects. The spontaneous release of TGF-beta is significantly correlated with that of fibronectin. Fibronectin release was significantly reduced after LPS stimulation, and TGF-beta release was significantly increased after LPS stimulation, except in chronic bronchitis patients. Con A increased the release of TGF-beta in cells from normal subjects. This study suggests that activated macrophages play a role in airway remodelling in chronic bronchitis and to a lesser extent in asthma.

Adult↗

Antitumour activity of mononuclear phagocytes: role of tumour necrosis factor alpha.

Tumour necrosis factor alpha (TNF) is a cytokine produced by mononuclear phagocytes (MP) originally discovered for its cytotoxic activity on tumour cell targets. It was subsequently demonstrated that, in addition to its oncolytic potential, TNF exerts a wide variety of activities on the host defensive system against malignancies. This article briefly reviews the current concepts on the role of TNF in the antitumour activity of MP.

Cytotoxicity, Immunologic↗

Effect of indomethacin on the kinetics of tumour necrosis factor alpha release and tumour necrosis factor alpha gene expression by human blood monocytes.

In this investigation we have examined the effects of indomethacin, an inhibitor of the cyclooxygenase pathway of arachidonic acid, upon the kinetics of the release of tumour necrosis factor alpha (TNF) and of the expression of TNF gene by lipopolysaccharide (LPS)-stimulated human blood monocytes (BM). Following stimulation of BM with LPS, TNF was released within 2 h, reached peak values at 8 h and declined at subsequent time-points (24 and 48 h). Indomethacin (10(-5) M) slightly stimulated the production of TNF at 2, 4, and 8 h and prevented the decline of TNF observed at 24 and 48 h. This effect was related to the persistence of TNF synthesis, as demonstrated by kinetic evaluation of the expression of TNF gene performed by dot-blot analysis. The effects of indomethacin on TNF release and TNF gene expression were due to the inhibition of endogenous prostaglandin (PG)E2 production. In the absence of indomethacin, PGE2 release by the LPS-stimulated BM began concomitantly with the decline of TNF production by the same cells under the same stimulus. Indomethacin completely blocked PGE2 release at any time-point. Exogenous PGE2 suppressed the release of TNF and the expression of TNF gene in a dose-dependent fashion. Exogenous PGE2 completely reversed the effects of indomethacin on TNF production at 24 h. These findings suggest that indomethacin may significantly alter the kinetics of TNF release and TNF gene expression by LPS-stimulated BM. These effects are related, at least in part, to the inhibition of the production of endogenous PGE2, an important self-driven regulatory factor of the kinetics of TNF production.

Dinoprostone↗

Lung compartmentalization of increased TNF releasing ability by mononuclear phagocytes in pulmonary sarcoidosis.

The TNF is a monokine with cytotoxic and tumor-necrosing activities; in addition, TNF may play a role in inflammatory processes. The present study evaluates spontaneous and LPS-mediated release of TNF by AMs and autologous peripheral BMs of normal subjects and patients with pulmonary sarcoidosis. A recently developed cytotoxicity assay, specific for detection of TNF activity, was applied. This study demonstrates that (1) unstimulated mononuclear phagocytes released low levels of TNF with no differences between groups; (2) when effector cells were stimulated with LPS, AMs from patients with active pulmonary sarcoidosis released more TNF than AMs recovered from normal subjects and from patients with inactive disease; (3) this increase was compartmentalized to the lungs, since comparisons of TNF production by LPS-stimulated BMs failed to show any difference between study groups. These results suggest that TNF might play a role in the pathogenesis of the alveolitis of pulmonary sarcoidosis.

Adult↗

Tumor necrosis factor release by pulmonary alveolar macrophages.

Tumor necrosis factor (TNF) is a monokine with cytotoxic and tumor-necrosing activities that may play a role in host defence against malignancies. The aim of the present study was to assess the ability of pulmonary alveolar macrophages (AMs) to release TNF. To accomplish this, a cytotoxicity assay specific for TNF detection was applied, using as targets actinomycin-D-pretreated WEHI 164 murine sarcoma cells. AMs mediated cytotoxicity levels comparable to those mediated by autologous blood monocytes (BMs). In addition, cytotoxicity was accounted for by a soluble factor released by effector cells and was completely inhibited by the addition of anti-TNF antibodies. These results indicate that AMs are able to release TNF. Moreover, since TNF has now been recognized as an important mediator of inflammation, its production by AMs suggests that this monokine might play a role in the pathogenesis of a variety of nonmalignant lung disorders.

Adult↗

Effects of oral steroids on immunoglobulins in bronchoalveolar lavage fluid in active sarcoidosis.

Immunoglobulin (Ig) levels increase in the lower respiratory tract of patients with pulmonary sarcoidosis. We evaluated the effects of prednisone therapy upon Ig concentrations in bronchoalveolar lavage (BAL) fluid of ten patients with active disease (greater than 30% T-lymphocytes in BAL and positive 67Gallium (67Ga) lung scan). Therapy significantly lowered T-lymphocyte percentages in BAL and 67Ga lung scan indices and was followed by a slight improvement of the studied functional parameters. Biochemical analysis of BAL showed a significant decrease of both IgG/albumin (baseline 1.24 +/- 0.21; after therapy 0.40 +/- 0.12) and IgA/albumin (baseline 0.55 +/- 0.07; after therapy 0.14 +/- 0.03) ratios in all patients. Conversely, comparisons of IgM/albumin ratios did not show any change over the study period (baseline 0.05 +/- 0.01; after therapy 0.06 +/- 0.03). Thus oral steroid treatment suppresses the alveolitis of pulmonary sarcoidosis, as shown not only by the reduction of lung T-cells and 67Ga lung uptake, but also by the decreased Ig levels in the alveolar spaces.

Adult↗

Effect of thymostimulin in models of cell-mediated and humoral autoreactivity and on T-dependent suppression.

To explore the therapeutic potential of the thymic hormone preparation thymostimulin (TS) in animal models of cell-mediated and humoral autoimmunity, its effects were investigated on experimental allergic encephalomyelitis in guinea pigs and on anti-erythrocytic autoantibody production in C57B1/6 mice. In both autoimmunity models, TS produced significant therapeutic effects in terms of proportion of diseased animals, disease severity and/or disease duration; however, both the TS dose and the time of treatment start relative to the disease-inducing stimulus critically influenced results. TS effects on the generation and expression of suppressive activity induced in C57B1/6 mice by a supraoptimal immunization with 10(10) SRBC were also examined. TS given after 10(10) SRBC did not influence the level of suppression, and the activity of effectors of suppression was not modified by this agent. Conversely, using a treatment protocol analogous to that effective in reducing murine autoantibody production, TS administration prior to 10(10) SRBC was associated with a significant increase in the subsequent generation of T-dependent, antigen-specific suppressive activity. These findings suggest that effects of TS on the development of suppressor cells may be involved in the activity of this agent in animal models of autoaggression.

Animals↗

Migratory capacity of large granular lymphocytes from T-gamma-lymphoproliferative disorders.

We have investigated 10 patients with T gamma-lymphoproliferative disorders (T gamma LPD) for cell migratory capacity. Large granular lymphocytes (LGLs) expanding in these subjects expressed natural killer cell markers (HNKI, B73.1, AB8.28, N901, OKM1) to a variable extent. The patients' LGLs mediated antibody-dependent cellular cytotoxicity, while appreciable natural killer activity was only measurable in 3 patients. The migratory capacity of T gamma LPD was examined by using nitrocellulose filters. The patients' LGLs migrated into filters and showed responsiveness (in 9 of 10 patients) to activated serum, used as chemoattractant, as normal LGLs do. No clearcut correlation emerged between in vitro migratory capacity and disease aggressiveness or involvement of abdominal organs. These results confirm in T gamma LPD the migratory potential of LGLs and suggest the possibility that acquisition of enhanced locomotor capacity is not a crucial determinant of disease aggressiveness in T gamma LPD.

Adult↗

Lymphokine-activated killer activity of tumor-associated and peripheral blood lymphocytes isolated from patients with ascites ovarian tumors.

Peripheral blood lymphocytes (PBLs) and tumor-associated lymphocytes (TALs) were isolated from 36 patients with advanced ovarian adenocarcinoma and peritoneal effusions for study of lymphokine-activated killer activity. PBLs and TALs cultured in vitro for 3-5 days in the presence of interleukin-2 (IL-2, supernatant of the MLA 144 gibbon cell line, or human recombinant IL-2) expressed higher levels of cytotoxicity as compared to cells cultured in medium alone, against natural killer (NK)-susceptible (K562) or NK-resistant targets (Daudi and the human ovarian carcinoma cell line SW626). When ovarian tumor cells, freshly isolated from carcinomatous ascites or surgical specimens, were used as target cells in the cytotoxicity assay, 8 of 14 PBLs and 5 of 7 TAL preparations lysed the autologous tumor after treatment with IL-2, while no spontaneous reactivity was observed in any of the 14 patients tested. Although levels of lysis were usually relatively low, these data demonstrate that PBLs and TALs from ovarian cancer patients (TALs usually exhibiting low NK activity) when stimulated in vitro by IL-2 acquire some cytotoxic potential against the autologous tumor.

Adenocarcinoma↗

Oxygen consumption during surface-induced deep hypothermia under halothane anesthesia.

The effect of halothane-100% oxygen anesthesia on oxygen consumption was studied in 10 dogs subjected to surface-induced deep hypothermia with 30 minutes of circulatory arrest. The results were compared with previous oxygen consumtion data under ether-100% oxygen anesthesia. Low cardiac output, especially during the rewarming period, low PaO2, and a large arteriovenous oxygen difference during rewarming were significantly different in the halothane group, despite identical oxygen consumption in both groups. These differences could not elucidate the exact cause of postoperative motor disturbances associated with 30 minutes of circulatory arrest in the halothane group. The possibility that there was higher oxygen consumption under halothane anesthesia is discussed.

Anesthesia↗