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Biomedical subjects

C Delacourt

Publications and source records attributed to C Delacourt.

At least 55 records · Page 3Linked to original sources

Gelatinases in epithelial lining fluid of patients with adult respiratory distress syndrome.

Gelatinases A and B are matrix metalloproteinases secreted as inactive pro forms and are capable of degrading basement membrane components after activation in the extracellular environment. To determine whether the presence of gelatinases A (noninflammatory cells) and B (inflammatory cells) in epithelial lining fluid (ELF) is associated with the adult respiratory distress syndrome (ARDS), we studied 28 patients divided into four groups based on the presence of ARDS and/or multiple organ failure (MOF). Gelatinase activities were quantified in ELF using zymography. ARDS patients had larger ELF volumes than non-ARDS patients: 9.2 +/- 8.5 ml/100 ml recovered lavage fluid (n = 18) vs. 1.9 +/- 1.7 ml/100 ml (n = 11), respectively (P < 0.001). The presence of activated gelatinase A in ELF was a sensitive (16 out of 18 ARDS patients, 89%) and specific (0 out of 11 non-ARDS patients with or without MOF) marker for ARDS. Activated gelatinase (A + B) activities per microliter ELF were correlated with albumin concentrations in ELF (P < 0.01), and activated gelatinase activities in ELF were correlated with the volume of ELF (P < 0.0005). This could suggest an involvement of these gelatinases in alveolar-capillary permeability increase.

Adult↗

Alveolar neutrophils in endotoxin-induced and bacteria-induced acute lung injury in rats.

Polymorphonuclear neutrophils (PMNs) are thought to play a major role in the pathogenesis of adult respiratory distress syndrome. Because the alveolar epithelium is a decisive factor in alveolo-capillary wall permeability, a toxic effect of emigrated PMNs in alveolar spaces is conceivable. We evaluated alveolar PMN function in two rat models of acute lung injury induced by alveolar instillation of endotoxin [lipopolysaccharide (LPS)] or live Pseudomonas aeruginosa (PYO). Alveolar PMNs were isolated from bronchoalveolar lavage fluid 4 and 24 h after the challenge. Hypoxemia was assessed based on the ratio arterial partial pressure of O2 (PaO2)/fraction of inspired O2 (FIO2) during mechanical ventilation. The severity of lung injury in the two models was clearly different, since PaO2/FIO2 were approximately 400 mmHg in PYO- and LPS-induced injuries, respectively. Both contrast, alveolar neutrophil influx, unstimulated oxygen metabolite production, and proteinase (elastase, gelatinase B) secretions of ex vivo alveolar PMNs were not larger in the PYO model. Thus the difference in severity was not associated with variations in alveolar neutrophil recruitment or activation. Moreover, gelatinase and leukocyte elastase activities were absent in bronchoalveolar fluid, indicating effective antiproteinase defense in alveolar spaces. We conclude that alveolar neutrophils are not sufficient to create severe respiratory failure.

Animals↗

Alveolar epithelial cells in vitro produce gelatinases and tissue inhibitor of matrix metalloproteinase-2.

Type II pneumocytes are key cells of the alveolar epithelium. They lie on the alveolar basement membrane, which influences their phenotype and functions. We hypothesized that type II pneumocytes degrade basement membrane components by producing gelatinases, members of the matrix metalloproteinase family. To investigate this hypothesis, we used primary cultures of rat type II pneumocytes and cultures of the human A549 cell line. We found by zymography that 70-kDa gelatinase was present in media conditioned by these cells. This 70-kDa gelatinase was identified as gelatinase A by a Western blot, and the presence of its mRNA was demonstrated by reverse transcription-polymerase chain reaction. A 95-kDa gelatinase could be induced under certain conditions. Production of gelatinases may take place during the turnover of basement membranes, in physiological and in pathophysiological processes. This was suggested by the increase in production of both gelatinases that we observed after in vitro exposure to LPS or interleukin-1. The presence of tissue inhibitors of matrix metalloproteinase-1 and -2 was also demonstrated, suggesting that degradation of extracellular matrix by type II pneumocytes is tightly regulated.

Animals↗

Divergent regulation of 92-kDa gelatinase and TIMP-1 by HBECs in response to IL-1beta and TNF-alpha.

In this study, we addressed the question of whether human bronchial epithelial cells (HBECs) contribute to the regulation of 92-kDa gelatinase activity by secreting tissue inhibitor of metalloproteinase (TIMP)-1. We investigated expression of 92-kDa gelatinase and TIMP-1 in response to lipopolysaccharide (LPS) and to the proinflammatory cytokines interleukin (IL)-1beta and tumor necrosis factor (TNF)-alpha. Confluent HBECs from explants were cultured in plastic dishes coated with type I and III collagen. We demonstrated that TIMP-1 was expressed at both the protein and mRNA levels by primary cultures of HBECs. Gelatin zymography of HBEC-conditioned media showed that exposure of HBECs to LPS, IL-1beta, or TNF-alpha induced a twofold increase in the latent form of 92-kDa gelatinase production, as well as its activation. Also, quantitative reverse transcriptase (RT)-polymerase chain reaction (PCR) demonstrated a twofold increase in the 92-kDa mRNA level in response to both cytokines. In contrast, TIMP-1 production evaluated by immunoblotting was unchanged in the presence of LPS and IL-1beta and was clearly decreased in the presence of TNF-alpha. Quantitative RT-PCR demonstrated that TIMP-1 mRNA levels remained unchanged in response to LPS or IL-1beta but decreased by 70% in the presence of TNF-alpha. All of these results strongly suggest that the control mechanisms regulating the expression of 92-kDa gelatinase and TIMP-1 by HBECs in response to inflammatory stimuli are divergent and result in an imbalance between 92-kDa gelatinase and TIMP-1 in favor of the metalloproteinase. Such an imbalance may contribute significantly to acute airway inflammation.

Breast↗

Modulatory effects of PKC activity on increased 92-kDa gelatinase secretion by neonatal alveolar macrophages.

We previously demonstrated that alveolar macrophages (AMs) from neonatal rats can secrete more 92-kDa gelatinase than AMs from adult rats. In this study, we investigated the role of the protein kinase C (PKC) pathway in the transductional regulation of 92-kDa gelatinase secretion by rat AMs, and we also evaluated maturational changes in this role with increasing postnatal age. After AM stimulation by phorbol 12-myristate 13-acetate (PMA), we observed a dose-dependent increase in gelatinase secretion that was significantly more marked in AMs from 6-day-old rats than in AMs from adult rats and that was inhibited by the PKC inhibitor calphostin C. Adenosine 3',5'-cyclic monophosphate mimetics or concanavalin A failed to induce an increase in gelatinase secretion by AMs. Time-dependent variations in PKC activity after PMA stimulation differed significantly between 6-day-old rats and adult rats; PKC activity decreased in adult AMs (50%) but remained stable in 6-day-old AMs. We therefore investigated age-related differences in the intracellular proteolytic degradation of PKC, which is thought to be mediated by calpains. Leupeptin, used as a calpain inhibitor, inhibited the decrease in PKC activity after exposure of adult AMs to PMA and induced a greater than threefold increase in PMA-induced gelatinase secretion. Calpain activity was significantly lower in AM extracts from 6-day-old than from adult rats. The physiological implication of these developmental changes in 92-kDa gelatinase regulation was demonstrated by investigation of AMs from 1-day-old rats that showed a high level of spontaneous PKC-dependent gelatinase secretion coexisting with very low calpain activity. We conclude that sustained PKC activity is a key factor in the increased gelatinase secretion by AMs seen during the postnatal period and is due, at least in part, to reduced PKC degradation.

Aging↗

Efficacy of nebulized budesonide in treatment of severe infantile asthma: a double-blind study.

BACKGROUND AND OBJECTIVE: Treatments with inhaled corticosteroids yielded conflicting results in infants with severe asthma. The purpose of this study was to assess the efficacy of nebulized budesonide on the control of asthma in this age group. METHODS: In a double-blind, placebo-controlled study, 40 infants with severe asthma received either nebulized budesonide (1 mg) or placebo twice daily for 12 weeks, followed by a follow-up period of up to 12 weeks. A jet nebulizer driven by an air compressor was used to administer budesonide and placebo. RESULTS: Fewer patients in the budesonide group had an exacerbation during the treatment period (40%) compared with the placebo group (83%, p < 0.01). The duration of oral steroid therapy was shorter in the budesonide group than in the placebo group (median number of days of exacerbation as a proportion of the total treatment time, 0% vs 14.5%; p < 0.05). The incidence of daytime (p < 0.05) and nighttime wheezing (p < 0.01) was lower in the budesonide group than in the placebo group during the treatment period. The proportion of patients without an exacerbation of asthma during the entire 24 weeks was 28% for those patients who had received budesonide and 0% for those patients who had received placebo. Asthma improved in more patients in the budesonide group (17 and 19, 89%) than in the placebo group (7 of 16, 44%; p < 0.005). These results should improve and modify the treatment of infants with severe asthma. CONCLUSION: Nebulized budesonide (1 mg twice daily) is a well-tolerated and efficient treatment for severe infantile asthma.

Aerosols↗

Nasal cytology in rhinitis children: comparison between brushing and blowing the nose.

Allergic rhinitis is a common disease in childhood, but nasal cytology is rarely used by pediatricians. We compared two techniques of cell sampling, brushing and blowing the nose, among 77 children suffering from chronic rhinitis, of whom 59 were allergic. Staining by the May-Grunwald-Giemsa method enabled the evaluation of the density of cells and especially differential counting of the inflammatory cells. Staining by the Luna method was used as a control for the eosinophils. For the eosinophil count, we found a strong correlation between the two methods of collecting the nasal secretions (r = 0.96). Because blowing the nose is painless and easy to perform, it is more appropriate than brushing in routine use for the diagnosis of allergic rhinitis in children and in nasal challenge with allergens.

Adolescent↗

Predominant role of peripheral chemoreceptors in the termination of apnea in maturing newborn lambs.

Apneas are very common and normal in newborns but may become life threatening if they are not terminated appropriately. The aim of this study in newborn lambs was to investigate the influence on apnea termination of postnatal maturation, peripheral chemoreceptor function, and hypoxia. Apneas were induced by passive hyperventilation at varying inspired O2 fraction levels. The apnea termination threshold PCO2 (PATTCO2) was defined as the arterial PCO2 value at the first breath after the apnea. Three groups of awake intubated lambs were studied: 1) intact lambs tested at both 1 and 15 days of life, 2) intact 1-day-old lambs with central tissue hypoxia induced by CO inhalation, and 3) 1-day-old lambs with carotid body denervation (CBD). In individual lambs and regardless of age and carotid body function, there was a PO2-PCO2 response curve that was a determinant for the termination of an apnea. PATTCO2 invariably increased when arterial PO2 increased, regardless of age. During hypoxia and normoxia, PATTCO2 was significantly lower in 15-day-old lambs compared with 1-day-old lambs. No difference was seen during hyperoxia. PATTCO2 values were shifted to higher levels after carotid body removal. Finally, hypoxia induced by either a low inspired O2 fraction or CO inhalation consistently failed to induce a depressive effect on the PATTCO2 even in CBD lambs. In conclusion, in awake newborn lambs, the PCO2 level for apnea termination changed with postnatal age, and carotid body function was essential in lowering PATTCO2, thus protecting the lambs against prolonged apnea. Furthermore, hypoxia consistently failed to depress the reinitiation of breathing after apnea, even in CBD lambs.

Animals↗

Unapparent systemic dissemination of Mycobacterium tuberculosis.

A healthy 6-week-old girl exposed to tuberculosis presented a positive DNA amplification for Mycobacterium tuberculosis complex in gastric aspirates and cerebrospinal fluid whereas she had no other clinical or biological symptoms. Cultures were negative. This report underlines the interest of polymerase chain reaction for early diagnosis of tuberculosis and suggests the importance of treating exposed neonates and young infants just as active tuberculosis.

Cerebrospinal Fluid↗

Role of gelatinase B and elastase in human polymorphonuclear neutrophil migration across basement membrane.

Polymorphonuclear neutrophil (PMN) migration across basement membrane is thought to be dependent on the degradation of membrane constituents. PMN gelatinase B, a metalloproteinase able to degrade type IV collagen, may be involved in this phenomenon. PMN gelatinase B is released in the extracellular medium as a latent proform and then activated, mainly by PMN elastase. We investigated the role of gelatinase B in PMN migration across a Matrigel basement membrane matrix coated onto a filter, in a Boyden chamber. The effects of gelatinase and elastase inhibitors on PMN migration in this system were tested. Chemokinesis of PMN was tested in the same Boyden chamber across a filter free of basement membrane. The agarose method was used to test the same inhibitors for effects on PMN chemotaxis. In both systems, FMLP 10(-7)M was used as a chemoattractant. Addition of 10(-8)M TIMP-1 (the preferential gelatinase B inhibitor) inhibited trans-basement membrane PMN migration by 52 +/- 6% (P<0.05), without affecting PMN chemokinesis, chemotaxis, or degranulation. Also, (Ala)(2) Pro Val chloromethyl ketone (AAPVCK) 100 micron, a specific elastase inhibitor, inhibited trans-basement membrane PMN migration by 51 +/- 8% (P<0.05), without affecting PMN chemokinesis, chemotaxis, or degranulation. The AAPVCK-TIMP combination led to a decrease in migration across Matrigel basement membrane (46 +/- 2%, P,0.05)similar to that seen with TIMP alone. AAPVCK was responsible for inhibition of gelatinase B activation, leading to a decrease in activated gelatinase from 14% to 2% of total gelatinase release (P<0.05). All these results strongly suggest that gelatinase B is a major factor of PMN migration across basement membrane and that elastase may contribute to this process by activating pro-gelatinase B.

Amino Acid Chloromethyl Ketones↗

Oxidant-antioxidant balance in alveolar macrophages from newborn rats.

An oxidant-antioxidant imbalance in neonatal alveolar macrophages (AMs) may contribute to the increased susceptibility to lung injury described in the neonatal period. We therefore evaluated oxygen radical production by rat AMs at various postnatal ages, and measured in parallel cellular antioxidant enzyme activities. AMs were obtained by bronchoalveolar lavage from rats aged < 24 h, 21 days and 5 weeks, and results were compared to those obtained with adult rat AMs. Intracellular production of oxygen radical species, estimated fluorometrically using 2',5'-dichlorofluorescein diacetate as the substrate, was significantly reduced in neonates as compared with adults, both in the presence and in the absence of cell stimulation with phorbol myristate acetate (PMA) or opsonized zymosan. A similar pattern was observed for the extracellular release of oxygen radical species, evaluated by lucigenin-enhanced chemiluminescence (CL) or peroxidase-catalysed CL oxidation of luminol: peak CL values measured after cell stimulation with PMA or opsonized zymosan remained significantly lower for AMs from newborn rats than for AMs from adults. By contrast, high values for antioxidant enzyme activities (superoxide dismutase and glutathione peroxidase) in AMs were demonstrated in newborns as compared to adults. We conclude that high antioxidant activity in rat AMs after birth may be at least partly responsible for the low production of oxygen metabolites observed during the same period.

Aging↗

Pulmonary alveolar proteinosis: experience with eight pediatric cases and a review.

We report eight pediatric cases of pulmonary alveolar proteinosis (PAP) that illustrate the polymorphic nature of this disease: two cases with severe neonatal onset, three cases with progressive respiratory distress in patients under 1 year old, and three cases in older children with mild symptoms. Consanguineous parents or affected siblings were identified or suspected in four families. Three patients suffered from associated immune or blood disorders (severe combined immune deficiency, myelodysplasia). The respective roles of a macrophagic dysfunction and of an anomaly of the surfactant are discussed according to the various clinical presentations of pediatric PAP. We performed eight unilateral pulmonary lavages under endoscopy and selective ventilation for two patients under 7 kg in weight. These interventions led to progressive discontinuation of oxygen therapy in one case, and temporarily stabilized the disease for the second. Subsequent recurrence in this second patient was treated by massive lavage under extracorporeal oxygenation. A third infant was successfully transplanted with no recurrence within 3 years. Ambroxol was administered in one case. The three oldest children of our series remained asymptomatic, whereas three of the younger patients died. In the light of this experience, we propose that the treatment administered should be determined according to the age of the patient, the degree of respiratory deficiency, and the nature of any associated pathology.

Ambroxol↗

Correlation between activity of beta-lactam agents in vitro and bacteriological outcome in acute pulmonary exacerbations of cystic fibrosis.

A study was conducted to determine whether a direct relationship exists between beta-lactam and/or aminoglycoside activity measured in vitro and bacteriological outcome in acute pulmonary exacerbations of cystic fibrosis. Twenty-seven patients, aged between 6 months and 24 years (mean age 10 1/2 years), were included in the study and received 41 i.v. courses of a beta-lactam agent combined with an aminoglycoside. A total of 63 Pseudomonas aeruginosa strains were found in sputum taken on admission at densities exceeding 10(6) cfu/g of sputum. For each episode, the serum inhibitory quotient (SIQ) and the serum bactericidal quotient (SBQ) of the beta-lactam agent and of the aminoglycoside administered were determined for the Pseudomonas aeruginosa isolate(s). The SIQs and SBQs were calculated by dividing the average peak serum levels achievable in the patients by the minimal inhibitory concentrations and minimal bactericidal concentrations, respectively. The SIQs and SBQs were compared to bacteriological outcome. Bacteriological success was defined as a decrease of 2 log10 counts or more in the Pseudomonas aeruginosa density in sputum between days 0 and 7 of therapy. The SIQ and SBQ of beta-lactam agents were good predictors of bacteriological outcome: SIQs of < 1:16 were 100% predictive of failure (chi 2 28; p < 0.001) and of > or = 1:64 were 92.9% predictive of success (chi 2 35.68; p < 0.001); SBQs of < 1:8 were 100% predictive of failure (chi 2 42.78; p < 0.001) and of > or = 1:32 were 95.8% predictive of success (chi 2 31.5; p < 0.001). Aminoglycoside SIQs and SBQs were not predictive of outcome.

Adolescent↗

Influence of vagal afferents on diphasic ventilatory response to hypoxia in newborn lambs.

The effect of vagal afferents on the ventilatory response to hypoxia was studied in eleven awake newborn lambs. Tests were repeated before and after vagotomy in the same lambs in two conditions: with intact upper airways and after intubation. During hypoxia, a diphasic pattern of ventilatory response was observed in both vagotomized and intact lambs. However, face mask-breathing vagotomized lambs had a blunted increase in ventilation (VI) to hypoxia as compared with intact lambs (P = 0.0001) and they showed an expiratory braking during all hypoxic time. Furthermore, the normal increase in frequency (f) to hypoxia was abolished after vagotomy. After intubation, expiratory braking disappeared and, consequently, magnitude of the VI response to hypoxia was similar in intact and vagotomized lambs. These changes were due to improved tidal volume response in vagotomized intubated lambs (P < 0.002) with no significant change in f response. We concluded that, in awake newborn lambs, vagal afferents are essential for maintaining the pattern and the magnitude of the ventilatory response to hypoxia, the latter by controlling the motor output to the larynx.

Animals↗

Use of polymerase chain reaction for improved diagnosis of tuberculosis in children.

OBJECTIVE: To study the value of a rapid diagnostic method based on the amplification by polymerase chain reaction (PCR) of a fragment of the IS6110 insertion element for the detection of Mycobacterium tuberculosis in children. DESIGN: We tested 199 specimens obtained from 68 children referred for evaluation of suspected tuberculosis. RESULTS: In 83.3% of children with active disease and 38.9% with tuberculous infection but no evidence of disease, at least one positive PCR result was observed. No child without tuberculosis had positive PCR results (100% specificity). The sensitivity of the PCR was increased by testing of multiple samples from the same child and use of Chelex particles (Bio-Rad Laboratories, Ivry, France) rather than guanidine isothiocyanate-silica particles for DNA extraction. Bronchoalveolar lavage samples were no more useful than gastric aspirates. CONCLUSIONS: If appropriate laboratory methods are used, DNA amplification is a reliable method for the early diagnosis of tuberculosis in children and appears to be very helpful in clinical pediatric practice when the diagnosis of active tuberculosis is difficult or needs to be rapidly confirmed.

Adolescent↗