Publications by authors named "Am Fietta"

Objective: The pathophysiology of the lung fibrotic process in systemic sclerosis (SSc) is not fully elucidated. Since this pattern represents the leading cause of death in SSc, the knowledge of its actual pathophysiology is basic to prevent and stage pulmonary damage. In this study, we aimed to further investigate the relationship between the functional profiles of bronchoalveolar lavage (BAL) T cells and the pulmonary manifestation of the disease.

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Background: Indoleamine 2,3-dioxygenase (IDO), an enzyme involved in the degradation of tryptophan (Try) to kynurenine (Kyn), is thought to suppress T-cell activity. Although a few experimental studies have suggested a role for IDO in graft acceptance, human data are scarce and inconclusive. We sought to establish whether, in lung transplant recipients (LTRs), plasma IDO activity mirrors the level of graft acceptance.

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Radiofrequency thermal ablation (RFTA) is a local tumor-destructing technique that can potentially modulate the host immune response through mechanisms that are not clearly defined. We assessed whether RFTA could affect multiple systemic inflammatory and immunological parameters, including CD25+Foxp+ cells, in patients with primary or metastatic lung tumors. Three days after RFTA, a moderate and temporary systemic inflammatory response developed, as demonstrated by the increase in peripheral neutrophils and monocytes and in plasma levels of proinflammatory chemokines (MIP-1alpha, MIP-1beta, eotaxin, and interleukin[IL]-8) and acute phase reactants (complement C3 and C4, serum amyloid, alpha1 antichymotrypsin, and C-reactive protein).

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The protein profiles of bronchoalveolar lavage fluid (BALf) of patients belonging to three selected subsets of Polymyositis/Dermatomyositis (PM/DM) have been compared by using a combination of 2-DE and MALDI-TOF/MS or LC-MS/MS. Our study examined the hypothesis that there were distinct differences in protein expression profiles that were related to the phenotype. From among the 323+/-51 protein spots that may represent the most highly expressed proteins in BALf of these patients, 24 unique spots were isolated and proteins identified.

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Bronchiolitis obliterans syndrome (BOS) is the leading cause of death in lung transplant recipients (LTR). BOS is thought to result from chronic immunologic/inflammatory insults leading to peri-bronchiolar leukocyte infiltration, with a subsequent exuberant tissue re-modelling and fibro-obliteration of the luminal space of the allograft airways. Diagnosis is based on functional criteria and severity is graded on the degree of Forced Expiratory Volume in 1 second (FEV1) impairment.

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Bronchiolitis obliterans syndrome (BOS) is one of the most important factors limiting the long-term survival of lung transplant recipients (LTR), however its pathogenesis still remains unclear. We hypothesized that an increased production of certain specific proinflammatory mediators in the first post-transplant year would predispose to BOS. We retrospectively evaluated temporal kinetics of some CC chemokines that have not yet been evaluated, including CCL3/MIP1-alpha, CCL4/MIP1-beta, CCL17/TARC, CCL19/MIP3-beta, CCL20/MIP3-alpha, CCL22/MDC and CCL26/eotaxin, in broncho-alveolar lavage fluid (BAL-f) in the first post-transplant year in a cohort of 8 LTR before the development of BOS (pre-BOS LTR) and 8 LTR with long-term stable clinical conditions (stable LTR).

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Background: Bronchiolitis obliterans syndrome (BOS) affects long-term survival of lung transplant (Tx) recipients (LTRs), with no consistently effective treatment strategy. Identifying early markers of BOS is of paramount importance for improving graft survival.

Methods: We used 2-dimensional gel electrophoresis and protein identification by mass spectrometry to compare the protein profile of bronchoalveolar lavage fluid (BALf) in two groups of LTRs: one composed of patients with BOS and the other composed of patients with good graft function at >5 years post-surgery (stable LTRs).

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Extracorporeal photopheresis (ECP) has been proposed as a possible alternative therapy for patients with bronchiolitis obliterans syndrome (BOS), with some evidence of efficacy. Although the mechanism by which ECP exerts its protective effects remains to be determined, two recent studies suggest that the modulation of transplant immune rejection may depend on the capacity to increase the number of peripheral T-regulatory (Treg) cells. We evaluated the effect of ECP treatment on the number of naturally occurring CD4(+)CD25(+) Treg cells in the peripheral blood of six lung transplant recipients: in five cases after failure of augmented or changed immunosuppression for BOS, and in one case owing to persistent acute rejection in a patient who contracted chronic hepatitis C viral infection after lung transplant.

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CD4+CD25+ regulatory T (Treg) cells have been shown to play a role in allograft tolerance and their peripheral counts vary according to the degree of graft acceptance in lung transplant recipients (LTR). Recent studies demonstrate that certain drugs might modulate generation, expansion and activity of Treg cells. Aim of this study was to evaluate the effect of therapeutic regimens used in our institution on peripheral CD4+CD25(high)CD69- Treg cell numbers in a group of 51 LTR with stable clinical conditions.

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Lung fibrosis is a major cause of mortality and morbidity in systemic sclerosis (SSc). However, its pathogenesis still needs to be elucidated. We examined whether the alteration of certain proteins in bronchoalveolar lavage fluid (BALF) might have a protective or a causative role in the lung fibrogenesis process.

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CD4+CD25+ regulatory T lymphocytes (Tregs) are specialized T cells playing a key role in the control of immune homeostasis. Here, we show that human Tregs constitutively express tyrosine hydroxylase (TH, EC 1.14.

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The role of T regulatory (Treg) cells in human cancer has not yet been clarified. We assessed the presence and function of CD4+ and CD8+ Treg cell subsets in the peripheral blood of patients with lung cancer (LC) and pleural mesothelioma (PM). We found a low but significant increase in the number of CD4+ T cells with phenotype and functional features of Treg cells in LC patients compared to normal healthy controls (NHC).

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Objectives: To evaluate ex vivo purified protein derivative (PPD) specific Th1- and Th2-type functional responses in human tuberculosis (TB).

Design: IFN-gamma and IL-5 secreting cells were measured by a computer-assisted ELISPOT assay in the peripheral blood of patients with pulmonary TB, in patients with other respiratory diseases (control patients) and in tuberculin skin test negative or positive healthy controls. Moreover, the number of IFN-gamma or IL-5 spots was assessed in the bronchoalveolar lavage (BAL) cells of five patients with advanced TB and lung inflammation.

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Background And Aim: Fibrosing alveolitis develops in up to 80% of systemic sclerosis patients (SSc) but progression to end stage fibrosis occurs in about 15% of cases. Mechanisms leading to the process remain mostly unknown. We compared cytokine profiles of broncho-alveolar lavage fluids (BAL-f) from patients with SSc associated interstitial lung disease (SSc-ILD) (n.

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BACKGROUND: The endozepine triakontatetraneuropeptide (TTN) induces intracellular calcium ([Ca++]i) changes followed by activation in human polymorphonuclear leukocytes (PMNs). The present study was undertaken to investigate the role of protein kinase (PK) C in the modulation of the response to TTN by human PMNs, and to examine the pharmacology of TTN-induced Ca++ entry through the plasma membrane of these cells. RESULTS: The PKC activator 12-O-tetradecanoylphorbol-13-acetate (PMA) concentration-dependently inhibited TTN-induced [Ca++]i rise, and this effect was reverted by the PKC inhibitors rottlerin (partially) and Ro 32-0432 (completely).

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Background: The subset of CD4+CD25+ regulatory T cells, recently identified in humans, may play a central role in the regulation of immune tolerance to graft survival.

Methods: This study assesses the frequency and functional profile of CD4+CD25+CD69- cells in the peripheral blood of lung transplant recipients (>3 years from transplantation), 10 of whom were in a stable clinical condition and 11 of whom demonstrated chronic rejection (bronchiolitis obliterans syndrome). We also studied a group of seven healthy subjects.

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Elderly patients are at increased risk of developing lower respiratory tract infections compared with younger patients. In this population, pneumonia is a serious illness with high rates of hospitalisation and mortality, especially in patients requiring admission to intensive care units (ICUs). A wide range of pathogens may be involved depending on different settings of acquisition and patient's health status.

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The endozepine triakontatetraneuropeptide (TTN) induces intracellular calcium ([Ca(2+)](i)) changes and is chemotactic for human neutrophils (PMNs). Because interleukin-8 (IL-8) production is Ca(2+) dependent and can be induced by chemotactic stimuli, we have investigated the ability of TTN to induce IL-8 production in PMNs, as well as the signal transduction mechanisms involved. Our results show that TTN increases IL-8 release and IL-8 mRNA expression in a concentration- and time-dependent fashion, and these effects are prevented by the Ca(2+) chelator BAPTA-AM.

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Signalling cascades involved in chemokine production by human phagocytes following infection with Mycobacterium tuberculosis are still not defined. We used specific pharmacologic inhibitors to identify the signalling molecules which lead to interleukin (IL)-8 and MCP-1 production in human monocytes in response to M. tuberculosis infection.

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Background: The aim of our study was to compare clinical and BAL features of patients with bronchiolitis obliterans organizing pneumonia (BOOP) with those of patients with usual interstitial pneumonia (UIP) and control subjects.

Patients And Methods: This study reports on 14 patients with idiopathic BOOP. Diagnosis was made upon histology.

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In isolated human neutrophils, diazepam (10 nmol/l to 10 micromol/l) concentration-dependently increased migration and phagocytosis. Diazepam-induced migration and phagocytosis were inhibited by the peripheral benzodiazepine receptor (PBR) antagonist PK11195 (10 micromol/l). The PBR agonist Ro5-4864 (10 nmol/l to 10 micromol/l) did not affect migration but slightly enhanced phagocytosis, while clonazepam, which binds to the central-type benzodiazepine receptors but has no affinity for PBRs, was ineffective on both parameters up to 10 micromol/l.

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We studied the effects of two diazepam-binding inhibitor (DBI)-derived peptides, triakontatetraneuropeptide (DBI 17-50, TTN) and eiksoneuropeptide (DBI 51-70, ENP), on cytosolic free Ca2+ concentrations ([Ca2+]i), chemotaxis, superoxide anion (O2-) generation, and phagocytosis in human neutrophils. Both TTN and ENP induced a rapid and transient rise of [Ca2+]i. The effect of TTN depended on the presence of extracellular Ca2+, whereas the effect of ENP also persisted after extracellular Ca2+ chelation.

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We report that neutrophil function was impaired in former heroin addicts on chronic naltrexone maintenance. Of the subjects, 62.5% had elevated plasma ACTH, 25% had elevated plasma cortisol and one subject had increased urinary cortisol.

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Epileptic patients on long-term therapy with a single anticonvulsant showed enhanced expression of peripheral benzodiazepine receptors (pBZrs) on neutrophils, monocytes and lymphocytes. N-Formyl-methionyl-leucyl-phenylalanine-induced chemotaxis was significantly impaired in neutrophils from patients on carbamazepine (p < 0.01 vs.

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