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Biomedical subjects

A Fietta

Publications and source records attributed to A Fietta.

At least 19 recordsLinked to original sources

The frequency of interleukin-10- and interleukin-5-secreting CD4+ T cells correlates to tolerance of transplanted lung.

Posttransplant bronchiolitis obliterans syndrome (BOS) results from a chronic immunological/inflammatory insult that leads to fibro-obliteration of the lumen of the allograft airways. The functional T-cell response that is associated with graft acceptance needs to be further clarified in humans. The aim of the present study was to assess the functional activity of peripheral CD4+ T lymphocytes in nine lung transplant recipients with BOS stage II or III (mean 5.4 years after transplant), in seven lung patients with stable clinical conditions (3.4 years posttransplant); and in six normal controls. Peripheral CD4+ T cells, obtained by magnetic bead vs negative purification, were studied using a computer-assisted enzyme-linked immunospot assay (ELISPOT) to assess the number of IFN-gamma-, interleukin (IL)5-, and IL10-gamma-producing cells (no./10(6) CD4+ cells) after allogeneic stimulation. The frequencies of IFN-gamma-producing CD4+ cells did not change significantly in stable patients compared to those with BOS. Interestingly in BOS, the number of IL5- and IL10-producing cells was significantly lower than in stable patients (P < or = .05), suggesting a possible role of these Th2 cytokines in the modulation of graft tolerance.

Adult↗

Acute Chlamydia pneumoniae and Mycoplasma pneumoniae infections in community-acquired pneumonia and exacerbations of COPD or asthma: therapeutic considerations.

Rates of acute Chlamydia pneumoniae and Mycoplasma pneumoniae infections were determined in 115 adults hospitalized for community-acquired pneumonia (CAP), purulent exacerbations of COPD and acute exacerbations of bronchial asthma, by means of serology and molecular methods. Results were compared with those obtained in a matched control group. Common respiratory pathogens were isolated by cultures in 22.5% and 22.2% of CAP and exacerbated COPD patients, respectively. Cultures from exacerbated asthma patients were always negative. Serological and molecular evidence of current C. pneumoniae infection was obtained in 10.0%, 8.9% and 3.3% of CAP, COPD and asthma cases. The corresponding rates of acute M. pneumoniae infection were 17.5%, 6.7% and 3.3%, respectively. Finally, no difference was found between typical and atypical pathogen rates. These findings highlight the importance of taking into account C. pneumoniae and M. pneumoniae infections in guiding the choice of empirical antibacterial treatment for CAP and purulent exacerbations of COPD.

Acute Disease↗

Monocyte chemoattractant protein-1 levels in bronchoalveolar lavage fluid of lung-transplanted patients treated with tacrolimus as rescue treatment for refractory acute rejection.

BACKGROUND: Cytokines are important mediators of the complex process of extravasation and influx of peripheral mononuclear cells into a site of graft injury, an action that may be affected by the immunosuppressive regimen. The aim of this study was to compare the effect of different immunosuppressive regimens on cytokine expression in the grafted lung. METHODS: We analyzed the cytokine profiles in broncho-alveolar lavage fluid (BAL-F) from 18 lung transplanted patients undergoing a shift from a cyclosporine- to a tacrolimus-based triple therapy regimen due to refractory acute rejection. RESULTS: Three months after the conversion to tacrolimus, BAL-F levels of interleukin 8 (IL8), IL18, IL12 and IL10 were not significantly different than those measured before conversion. In contrast, monocyte chemoattractant protein-1 (MCP-1) levels showed a significant and sustained decrease in BAL-F during tacrolimus therapy. In addition the levels of gamma interferon (IFN-gamma) in the BAL-F were decreased albeit not significantly. CONCLUSIONS: These findings suggest that the clinical and functional stabilization of patients observed after conversion to a tacrolimus based regimen, may be due, at least in part, to the induced down-regulation of MCP-1 production.

Acute Disease↗

The assessment of IFN-gamma and its regulatory cytokines in the plasma and bronchoalveolar lavage fluid of patients with active pulmonary tuberculosis.

OBJECTIVES: To assess the role of IFN-gamma and its regulatory cytokines in active pulmonary tuberculosis (TB). DESIGN: Cytokines were measured in the plasma of TB patients and healthy subjects with different risk for TB exposure. In addition, cytokine profile was assessed in the bronchoalveolar lavage fluid (BALf) of six TB patients and nine normal controls. RESULTS: Circulating IFN-gamma, IL-10 and IL-18 were higher in TB patients than in control groups. Plasma IL-12 levels were extremely variable, and no difference was observed among study groups. An inverse correlation between plasma IFN-gamma and IL-10 levels was found in TB patients. Furthermore, circulating IL-18 correlated with IL-10 but not with IFN-gamma levels. Finally, IFN-gamma, IL-18 and IL-12 were increased in the BALf of TB patients, whereas no difference was observed in IL-10 levels. CONCLUSIONS: In human TB, at least at certain disease stages, there is a differential compartmentalization of the IFN-gamma-regulatory factors IL-12 and IL-10, the former being concentrated in the lungs and the latter being present in peripheral circulation. In addition, our findings address more critically the role of IL-18 in the host response to tuberculosis infection in humans.

Adult↗

A 10-year survey of Mycobacterium tuberculosis isolates in Pavia and their drug resistance: a comparison with other Italian reports.

A retrospective review was made of the bacteriological and medical records of patients with culture-confirmed pulmonary tuberculosis who attended the IRCCS San Matteo Polyclinic of Pavia, between 1990 and 2000. Altogether, 279 patients were included in the survey: 220 new cases and 59 prior treatment cases. Resistance to at least one drug, and resistance to both isoniazid and rifampicin (MDR) were more common among previously treated patients than among new cases (86.4% vs. 34.1%, and 44% vs. 5.9%, respectively). While the frequency of resistance to any drug showed no variation in the period examined, a trend toward a progressive decrease in the frequency of primary MDR-TB was observed (from 11.9% in 1990-1992 to 1.3% in 1998-2000). The level of resistance observed in our study suggests that all isolates of Mycobacterium tuberculosis should be tested for drug susceptibility, especially when obtained from patients who report a previous episode of the disease.

Drug Resistance, Multiple, Bacterial↗

A survey of antimicrobial drug resistance in respiratory tract pathogens, isolated in a northern Italian teaching hospital between 1990 and 1999.

Drug susceptibility test results of respiratory tract pathogens, isolated from patients admitted to the Clinic of Respiratory Diseases of the IRCCS San Matteo Hospital, University of Pavia (Italy) between 1990 and 1999, were retrospectively evaluated. A total of 1366 bacterial isolates were collected, including 499 gram-positive and 867 gram-negative strains. In comparison to methicillin-susceptible Staphylococcus aureus, the methicillin-resistant strains (MRSA) showed high levels of resistance to many selected antibiotics, except for glycopeptides. Resistance rates to beta-lactams were high in both Pseudomonas aeruginosa and in the other gram-negative isolates, while aminoglycoside and ciprofloxacin resistance was less than 20%. Some pathogens became more resistant to selected antimicrobials during the observation period, including staphylococci to methicillin, MRSA to ciprofloxacin, P. aeruginosa isolates to imipenem and ciprofloxacin, and the other gram-negative strains to almost all drugs considered, with the exception of cefotaxime and cotrimoxazole.

Anti-Bacterial Agents↗

Surfactant apoprotein A modulates interleukin-8 and monocyte chemotactic peptide-1 production.

Previous studies have shown that surfactant apoprotein A (SP-A) and natural or synthetic surfactant can modulate the release of pro-inflammatory cytokines from alveolar mononuclear phagocytes. The aim of this study was to assess whether SP-A or Surfactant (Surf) from patients with pulmonary alveolar proteinosis (PAP) can affect the release of two chemokines (interleukin (IL)-8 and monocyte chemtactic peptide (MCP)-1) from human monocytes and rat lung type-II cells. In addition IL-8 and MCP-1 levels were assessed in the brochoalveolar lavage fluid (BALF) of seven patients with PAP and compared with those in a group of control subjects (n=5). SP-A, tested over a wide range of concentrations, significantly increased IL-8 and MCP-1 release from monocytes. SP-A retained its activity after collagenase digestion, but was not active after heat treatment. The release of IL-8 by monocytes was also stimulated by Surf. Finally, median BALF IL-8 and MCP-1 levels in PAP patients were significantly higher than in controls (9.50 and 9.51 pg x mL(-1) in controls versus 151.95 and 563.70 pg x mL(-1) in PAP, respectively) and significantly correlated with SP-A concentrations in BALF. Overall the results of this study support the view that the high content of alveolar surfactant apoprotein A may contribute to the upregulation of chemokine release in pulmonary alveolar proteinosis, thus contributing to airway inflammation.

Adult↗

Effects of continuous or pulsed exposure to rifabutin and sparfloxacin on the intracellular growth of Staphylococcus aureus and Mycobacterium tuberculosis.

The time-kinetics of the intracellular bioactivity and intracellular post-antibiotic effect (PAE) of rifabutin and sparfloxacin against Staphylococcus aureus and Mycobacterium tuberculosis, grown in human monocytes, were evaluated. Intracellular bactericidal activity against staphylococci was shown in the presence of extracellular drug concentrations equal or superior to 1/10 plasma Cmax. The bactericidal activity of rifabutin was dependent on both its extracellular concentrations and the exposure time. In contrast, the pattern of the intracellular activity of sparfloxacin was characterized by a minimal concentration dependent killing. Both antibiotics (from 1/10 to the expected lung Cmax) showed intracellular bioactivity against M. tuberculosis H37Ra and H37Rv strains. A long intracellular PAE on staphylococci (>4 hours) was demonstrated when drugs were removed from the infected monocytes after 1 h treatment. Our findings suggest that rifabutin and sparfloxacin may be useful in the treatment of lower respiratory tract infections due to intracellular pathogens.

Anti-Infective Agents↗

Virulence of Mycobacterium tuberculosis affects interleukin-8, monocyte chemoattractant protein-1 and interleukin-10 production by human mononuclear phagocytes.

Microbial virulence and cytokine-mediated immune responses to Mycobacterium tuberculosis infection are important determinants of the pathogenesis of human tuberculosis. To determine the interrelationship between mycobacterial virulence and cytokine induction, human monocytes and monocyte-derived macrophages were infected with attenuated (H37Ra) and virulent (H37Rv and CH306) strains of M. tuberculosis and the amount of proinflammatory [interleukin (IL)-8 and monocyte chemoattractant protein (MCP)- 1] and inhibitory (IL- 10) cytokines was measured in the culture supernatants by enzyme-linked immunosorbent assay (ELISA). Infection with live bacilli induced de novo synthesis of IL-8, MCP-1 and IL-10, since cytokine release was abolished when cells were preincubated with the protein synthesis inhibitor cycloheximide. A differential production of antiinflammatory and inhibitory cytokines was observed. The amount of IL-8 and MCP-1 release was inversely related to strain virulence, the attenuated H37Ra strain being more prone than virulent strains to induce secretion of chemokines. In contrast, virulent strains induced greater amounts of the inhibitory cytokine IL-10. Efficient upregulation of IL-10 synthesis, but not of chemokines, required infection of cells with live bacilli, since heat killing of organisms or challenge with soluble mycobacterial products completely abrogated the effect. Moreover, cells infected with virulent strains produced IL-10 even at a very low bacillus-to-cell ratio and secreted IL-10 continuously during the 96 h that followed infection. The results suggest that the degree of virulence affects host cell responses to M. tuberculosis infection. Continued production of IL-10 may be one of the means by which M. tuberculosis downregulates acute local inflammatory reactions, favoring the development of tuberculosis.

Cells, Cultured↗

Mycobacterial lipoarabinomannan affects human polymorphonuclear and mononuclear phagocyte functions differently.

BACKGROUND AND OBJECTIVE: The role of mycobacterial lipoarabinomannan (LAM) in regulating the granulomatous response and its effects on cells involved in early responses to tuberculosis have not been clearly defined. The aim of this study was to acquire further evidence about the mechanisms by which LAM takes part in the host response to mycobacterial infections. DESIGN AND METHODS: We compared the in vitro ability of mannosylated LAM (ManLAM) and LAM lacking the terminal mannosyl units (AraLAM) to induce distinct responses in human polymorphonuclear (PMNs) and mononuclear phagocytes [both monocytes and 48-hr monocyte-derived macrophages (MDMs)]. The responses examined were chemotaxis, transient changes in free cytosolic calcium, phagocytosis and metabolic activation. RESULTS: AraLAM and ManLAM affected mononuclear, but not polymorphonuclear, phagocyte functions. Both forms of LAM were chemotactic for monocytes and MDMs. The LAM-induced chemotactic response required new protein synthesis, did not induce a rise in cytosolic free calcium levels and was partially inhibited (about 50%) by genistein, but not by calphostin C or PD 98059. Lastly, at physiologic doses ManLAM significantly reduced phagocytosis of M. tuberculosis and zymosan particles by MDMs. INTERPRETATION AND CONCLUSIONS: Different phagocytic cells can exhibit variable responses to AraLAM and ManLAM. Moreover, LAMs affect cell functions through different mechanisms. Protein synthesis and activation of protein tyrosine kinases are important intermediates in the signal transduction pathway of the chemotactic response of mononuclear phagocytes to AraLAM and ManLAM; whereas ManLAM-induced inhibition of macrophage phagocytic ability could depend on the binding of macrophage mannose receptors and/or the insertion of this molecule into cellular plasma membrane. Together these data highlight the danger of making generalizations regarding the activity of LAMs on immune defenses.

Antigens, Bacterial↗

Inhibition of intracellular growth of Staphylococcus aureus by exposure of infected human monocytes to clarithromycin and azithromycin.

The direct effect of clarithromycin and azithromycin on human polymorphonuclear leukocyte (PMN) functions and their intracellular activity against Staphylococcus aureus, phagocytosed by human monocytes, were studied. The presence of both antibiotics, in the range of concentrations from 0.25 to 20 micrograms/ml, did not affect chemotaxis, opsonized-zymosan phagocytosis, respiratory burst measured by nitroblue tetrazolium reduction and phorbol myristate acetate-induced superoxide production, or the microbicidal activity of human PMNs against Candida albicans. Both macrolides were bactericidal against staphylococci in the monocyte system, while bacteriostatic activity was found in cell free system. At concentrations equal to the minimum inhibitory concentrations (MICs) (0.75 and 0.1 respectively for azithromycin and clarithromycin) more than 99% of intraphagocytic S. aureus were killed after 24 h incubation. Increasing the concentrations of each drug above the MICs (5 and 10 MICs) did not alter the killing rate of intracellular bacteria. Moreover, no differences between the intracellular bioactivity of these antibiotics were demonstrated, despite their different uptake kinetics.

Azithromycin↗

Requirements for intracellular accumulation and release of clarithromycin and azithromycin by human phagocytes.

Determination of clarithromycin (CL) and azithromycin (AZ) uptake by human polymorphonuclear leukocytes (PMNs), monocytes and alveolar macrophages showed that AZ achieved higher levels than CL. The uptake kinetics of AZ were time-dependent over an 18 h period, while those of CL were similar to erythromycin (ER) kinetics, with a maximum level of incorporation being obtained after a 60 min incubation. The accumulation of both drugs was influenced by extracellular antibiotic-concentrations, PMN viability, extracellular calcium, physiological environmental temperature and pH. The uptake was not modified by inhibitors of cell metabolism or activators of cell membranes. After removal of extracellular antibiotic, the release of AZ from PMNs was very slow: nearly 50% of the drug remained cell-associated after 24 h incubation. The efflux of this derivative was significantly enhanced when drug-loaded PMNs were stimulated by phorbol-myristate acetate (PMA). The kinetics of CL release indicated that this macrolide behaved like ER. Nevertheless, about 10% of the initial cell-associated antibiotic showed a prolonged retention. On the whole, these data suggest that diffusion through cell membranes and trapping into acidic compartments of PMNs are important events in CL and AZ uptake.

Anti-Bacterial Agents↗

Assessment of lymphocyte subsets and neutrophil leukocyte function in chronic psychiatric patients on long-term drug therapy.

1. Lymphocyte subsets and neutrophil function were studied in chronic psychiatric patients on long-term multiple drug therapy, and the correlation with disease and drug treatments was also investigated. 2. Patients showed decreased CD4+ percentage, CD4+/CD8+ ratio, B lymphocyte percentage, increased absolute and percentage NK, and impaired neutrophil chemotaxis, phagocytosis, and oxidative metabolism. Correlations were found between: patient status and lower CD4+ percentage, CD4+/CD8+ ratio, neutrophil chemotaxis, phagocytosis, and oxidative metabolism; schizophrenia and higher absolute and percentage NK, and neutrophil random migration; benzodiazepines and higher CD8+ absolute number and lower NBT reduction frequency; carbamazepine and higher NK percentage, neutrophil chemotaxis, phagocytosis, stimulated O2-production, and lower microbicidal activity. 3. The present study provides direct evidence for the existence of immunologic abnormalities in a population of chronic psychiatric patients on long-term drug therapy. Although a possible role by other factors could not be excluded, such abnormalities are strongly associated with chronic administration of benzodiazepines and carbamazepine. Further investigations are warranted to confirm these findings and disclose the possible mechanism(s) involved.

Adult↗

Influence of aging on some specific and nonspecific mechanisms of the host defense system in 146 healthy subjects.

The influence of aging on some parameters of systemic host defense mechanisms, i.e. white cell counts, lymphocyte subpopulations, delayed-type hypersensitivity (DTH), polymorphonuclear and mononuclear leukocyte functions, was evaluated. One hundred and forty-six healthy volunteers (60 men and 86 women), aged 25-100 years, were enrolled. None of the subjects had taken any drug in the month before the study. Subjects were divided into three age groups: 25-45, 46-65 and 66-100 years. Groups were comparable in size, and sex distribution was similar throughout all age groups. Elderly people were 51 healthy volunteers between the ages of 66 and 100 years (mean age 79.2). Younger people were 41 subjects between the ages of 46 and 65 years (mean age 54.3) and 53 between the ages of 25 and 45 years (mean age 32.7). As for the comparison between sexes, no significant differences in the values of the studied parameters were found between males and females (p > 0.05). Only quantitative DTH data, i.e. the number of antigens producing positive reactions and the score (sum of positive reaction diameters), were significantly (p < 0.05) reduced in responsive females when compared to males. Aging did not affect white cell counts, lymphocyte subsets and many phagocytic functions, i.e. phagocytosis frequency and index, nitroblue tetrazolium reduction, superoxide production, microbicidal activity against bacteria and yeasts. A significant decrease (p < 0.05) in the chemotactic response to serum-derived chemotactic factors was observed in aged people in comparison to younger subjects. Anergy was more frequent in older (about 29%) than in younger (5-9.4%) healthy volunteers.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Non specific immunity in aged healthy subjects and in patients with chronic bronchitis.

We investigated the effects of aging on some functional activities (chemotaxis, phagocytosis, nitroblue tetrazolium reduction and candidacidal activity) of peripheral polymorphonuclear and mononuclear phagocytes in 96 healthy subjects and 89 patients with chronic bronchitis, aged 40 to 100 years. The subjects were divided according to age into younger (40-65 years) and older (66-100 years) individuals. No subject was taking any drug known to affect phagocytic functions. A few abnormalities in PMN and monocyte functions were observed in aged healthy subjects, in comparison to the younger ones; in fact, only the chemotactic response to complement-derived chemotactic factors was significantly impaired in elderly healthy individuals. On the contrary, multiple alterations of phagocyte activities, i.e., chemotaxis, phagocytosis, and candidacidal activity were observed in aged subjects with chronic bronchitis, compared to healthy adults. However, the results obtained in older and younger patients with chronic bronchitis were superimposable. The present data suggest that the decline in functional activities of phagocytes in the aged could depend on the effect of the underlying chronic bronchitis on the cellular components of the non-specific host defense system, rather than a direct effect of the aging process.

Adult↗

Bioactivity of flurithromycin and other macrolides against intracellular susceptible staphylococci.

The intracellular activity of flurithromycin, erythromycin, roxithromycin and miocamycin against susceptible clinical isolates of Staphylococcus aureus, phagocytosed by human monocytes, was investigated. Intracellular bioactivity was studied in a 24-hour assay, using experimental conditions which allowed the intracellular growth of bacteria. A colony counting method was used to differentiate between intracellular bacteriostatic and bactericidal activity of antibiotics. Moreover, the effect of macrolides against extracellular staphylococci was assessed. All agents showed higher intracellular than extracellular activity against staphylococci. At low concentration (0.1 mg/l) they had intracellular bacteriostatic activity. At concentrations higher than the minimal inhibitory ones (1 and 5 mg/l), miocamycin only still produced a bacteriostatic effect while flurithromycin, erythromycin and roxithromycin also showed intracellular bactericidal activity.

Anti-Bacterial Agents↗

Uptake of flurithromycin by human polymorphonuclear phagocytes: partial characterization of the entry mechanism.

The ability of flurithromycin and erythromycin to enter human polymorphonuclear phagocytes were studied and compared by a velocity centrifugation gradient technique. Both macrolides were markedly concentrated by human cells and attained cellular to extracellular concentration ratios (C/E) > or = 10. The incorporation was rapid and essentially complete after 60 min incubation. When PMNs were pretreated with formaldehyde, or incubated at low temperatures (4-25 degrees C) or at low pH, the transport ratios of both molecules were reduced. Sodium fluoride and 2,4-dinitrophenol, which decreased erythromycin uptake, did not affect flurithromycin penetration. Perturbation of cell membrane by phorbol myristate acetate, but not by formyl methionyl leucyl peptide, affected C/E ratios of both antibiotics. The addition of amino acids or nucleosides did not influence their transfer into PMNs.

Adult↗