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Biomedical subjects

F Ratjen

Publications and source records attributed to F Ratjen.

At least 37 records · Page 2Linked to original sources

Bronchoalveolar lavage fluid findings in children with hypersensitivity pneumonitis.

Bronchoalveolar lavage (BAL) has been shown to be useful in the diagnosis of hypersensitivity pneumonitis (HP) in adults, the typical constellation being lymphocytosis with a decrease in the CD4/CD8 ratio. Only limited data exist for the diagnostic value of BAL cytology in paediatric patients with this disorder. Children aged 6-15 yrs (n=9) with acute HP were studied. BAL was performed before initiation of anti-inflammatory treatment via a flexible bronchoscope in the middle lobe with 3 mL x kg body weight(-1) normal saline warmed to body temperature; BAL cytology and lymphocyte surface markers were compared with age-matched controls. The percentage of lymphocytes was significantly increased in all patients with HP. No significant differences were observed in the CD4/CD8 ratio between children without lung disease and those with HP. Increased expression of human leukocyte antigen-DR was found in seven of eight children with HP, whereas natural killer cells were elevated in five of eight children. Every patient had at least one of these two alterations in BAL fluid in addition to lymphocytosis. It was concluded that while lymphocytosis is generally present in children with hypersensitivity pneumonitis, the CD4/CD8 ratio is not increased in these patients. Assessing natural killer cells and human leukocyte antigen-DR expression appears to be a helpful adjunct in the diagnosis of paediatric patients with this disorder.

Alveolitis, Extrinsic Allergic↗

Nasal nitric oxide levels in cystic fibrosis patients are associated with a neuronal NO synthase (NOS1) gene polymorphism.

Nitric oxide (NO) plays an important role in a number of physiological processes in the airways, including host defense. Although the exact cellular and molecular source of the NO formation in airways is unknown, there is recent evidence that neuronal NO synthase (NOS1) contributes significantly to NO in the lower airways of cystic fibrosis (CF) patients. NOS1 protein has been shown to be expressed in nasal epithelium, suggesting an involvement of NOS1-derived NO in upper airway biology. We here hypothesized that nasal NO concentrations in CF patients are related to genotype variants in the NOS1 gene. Measurements of nasal NO concentration and pulmonary function were performed in 40 clinically stable CF patients. Genomic DNA from all patients was screened for an intronic AAT-repeat polymorphism in the NOS1 gene using polymerase chain reaction and simple sequence length polymorphism (SSLP) analysis. The allele size at that locus was significantly (P = 0.001) associated with upper airway NO. Mean (+/- SD) nasal NO concentrations were 40.5 +/- 5.2 ppb in CF patients (n = 12) with high repeat numbers (i.e., both alleles > or =12 repeats) and 72.6 +/- 7.4 ppb in patients (n = 28) with low repeat numbers (i.e., at least one allele <12 repeats). Furthermore, in the group of CF patients harboring NOS1 genotypes associated with low nasal NO, colonization of airways with P. aeruginosa was significantly more frequent than in patients with NOS1 genotypes associated high nasal NO concentrations (P = 0.0022). We conclude that (1) the variability in CF nasal NO levels are related to naturally occurring variants in the NOS1 gene, and (2) that nasal NOS1-derived NO affects the susceptibility of CF airways to infection with P. aeruginosa.

Adolescent↗

[Pulmonary metabolism of nitric oxide (NO) in patients with cystic fibrosis].

Airway nitric oxide (NO) and its metabolites are involved in a number of physiological and pathophysiological processes. For instance, NO relaxes airway smooth muscle, improves airway ciliary motility, has antimicrobial effects, and increases expression of the CFTR (cystic fibrosis transmembrane regulator) protein in airway epithelial cells. Of interest, concentrations of NO and of bioactive S-nitrosothiols (SNOs) are decreased in the airways of patients with cystic fibrosis (CF). When compared to patients with relatively normal pulmonary NO formation, CF patients with low NO-concentrations have a significantly reduced pulmonary function and a higher frequency of bacterial colonisation of the airways with pathogens such as P. aeruginosa. As a consequence of these observations clinical trails have now been initiated to study possible effects of an augmented bronchial NO-concentration in CF-patients.

Cystic Fibrosis↗

Matrix metalloproteases in BAL fluid of patients with cystic fibrosis and their modulation by treatment with dornase alpha.

BACKGROUND: Matrix metalloproteinases (MMPs) are involved in the remodelling and degradation of extracellular matrix and may play a role in pulmonary tissue destruction in cystic fibrosis (CF). METHODS: Bronchoalveolar lavage (BAL) fluid levels of MMP-8, MMP-9, and their natural inhibitor TIMP-1 were measured on two occasions within 18 months in 23 children with mild CF, 13 of whom were treated with DNase. RESULTS: MMP-8 (39.3 (6.8) v 0.12 (0.01) ng/ml), MMP-9 (58.0 (11.4) v 0.5 (0.02) ng/ml), and the molar ratio of MMP-9/TIMP-1 (0.36 (0.05) v 0.048 (0.01)) were significantly higher in patients with CF than in control children without lung disease. Gelatine zymography showed the typical banding pattern of neutrophil derived MMP-9, including 130 kDa NGAL-MMP-9 complex and 92 kDa latent MMP-9 bands; 85 kDa bands (corresponding to active MMP-9) were seen in all patients. There was a close correlation between BAL fluid concentrations of MMPs and alpha(2)-macroglobulin, a marker of alveolocapillary leakage. After 18 months MMP levels were increased in untreated patients and decreased in patients treated with DNase. CONCLUSIONS: Uninhibited MMPs may contribute to pulmonary tissue destruction even in CF patients with mild lung disease that may be positively affected by treatment with DNase.

Adolescent↗

Surfactant in children with malignancies, immunosuppression, fever and pulmonary infiltrates.

In children with malignancies and immunosuppression, significant morbidity and mortality result from respiratory complications. The aim of the present study was to investigate whether or not this is associated with altered surfactant components or functions. Bronchoalveolar lavage fluid from 24 children with malignancies, immunosuppression, pulmonary infiltrates and fever unresponsive to empirical antibiotic treatment were compared to that from 24 healthy children. Levels of surfactant protein (SP) A and D and their binding capacity for Pseudomonas aeruginosa, as well as levels of SP-B and SP-C, were assessed by enzyme-linked immunosorbent assay. The large and small surfactant aggregate forms were separated and the biophysical activity of large surfactant aggregates was determined using a pulsating bubble surfactometer. Compared to healthy controls, SP-A levels were increased four-fold, the increase being most pronounced in those children with pathogens recovered from their bronchoalveolar lavage fluid. In children with malignancies, levels of SP-C were increased two-fold and of small surfactant aggregates five-fold. No differences were observed in levels of SP-B or SP-D, binding capacity of SP-A or SP-D or the surface activity of large surfactant aggregates. The increased levels of surfactant protein A, particularly in children with recovered microorganisms, and unchanged binding capacity of surfactant protein A are consistent with upregulated local host defence mechanisms. Increased surfactant protein A and C may also be responsible for the conserved biophysical activity of surfactant in children with malignancies, immunosuppression, pulmonary infiltrates and fever.

Adolescent↗

Bronchial reactions to the inhalation of high-dose tobramycin in cystic fibrosis.

It has been established that inhaled tobramycin has a positive effect on respiratory function in Pseudomonas-aeruginosa positive patients with cystic fibrosis (CF). In a previous study the authors reported that low-dose tobramycin preparations containing the preservative phenol caused significant bronchial obstruction. Recently, high-dose tobramycin preparations with and without preservatives/phenol have become available. To assess the airway response to these preparations flow/volume curves in 12 patients with CF (four males, eight females, mean age+/-SD=19.0+/-7.4 yrs) were measured. The tobramycin preparations: Nebicina 2.0 mL (150 mg, containing the preservative phenol), Distobram 3.0 mL (150 mg, containing preservatives), Tobi 5.0 mL (300 mg), Tobi 2.5 mL (150 mg), and Tobi 5.0 mL, were used after bronchodilator application. Immediately and/or 5 min after the tobramycin inhalations there was a significant fall in lung function with the different preparations. There was no significant difference between preparations with and without preservatives/phenol. The bronchial obstruction was comparable to that observed after the inhalation of low-dose tobramycin and after saline. After 10 min of inhalation, the lung function returned to baseline values. Most patients preferred the Tobi 2.5 mL and disliked the Nebicina preparation due to the unpleasant taste. Preceding treatment with bronchodilators prevented the decline in lung function. Assessment of bronchial response at the first nebulisation of high-dose tobramycin and, in case of significant obstruction, beta-agonists in combination with the antibiotic inhalation are recommended.

Administration, Inhalation↗

Effect of inhaled tobramycin on early Pseudomonas aeruginosa colonisation in patients with cystic fibrosis.

Early antibiotic treatment of airway colonisation with Pseudomonas aeruginosa can delay onset of chronic lung infection in patients with cystic fibrosis. Whether the pathogen is eradicated by this treatment is unclear. We successfully eradicated the organism in 14 of 15 patients with cystic fibrosis who had been colonised by P aeruginosa. Patients inhaled 80 mg tobramycin twice daily for 12 months. Eradication was confirmed by sequential respiratory cultures and serum antibody titres that were negative for P aeruginosa. Our antibiotic therapy regimen maintained pulmonary function at high levels.

Administration, Inhalation↗

Effect of continuous antistaphylococcal therapy on the rate of P. aeruginosa acquisition in patients with cystic fibrosis.

SUMMARY. Continuous therapy with antistaphylococcal antibiotics is advocated by some cystic fibrosis (CF) centers, but it is unclear whether this strategy favors early colonization with P. aeruginosa. We used the data base for the German Centers of the European Registry for Cystic Fibrosis (ERCF) to assess the effect of continuous antistaphyloccocal therapy on the rate of P. aeruginosa acquisition in CF patients. Patients included in this analysis had to be < 18 years of age, P. aeruginosa-negative prior to entry in the ERCF, and to have had at least 2 additional P. aeruginosa-negative respiratory cultures while followed in the ERCF. Of the 639 patients fulfilling these criteria, 48.2% received continuous antistaphyloccocal therapy, 40.4% intermittent antibiotic therapy, and 11.4% no antibiotic therapy. There were no differences between the groups in body mass index, as well as forced vital capacity (FVC) and forced expired volume in 1 sec (FEV(1)) at baseline. The rate at which patients acquired positive respiratory cultures for Staph. aureus was significantly lower in the group receiving continuous antistaphyloccocal antibiotic therapy than in those not receiving such therapy. Patients receiving continuous antistaphyloccocal antibiotic therapy had a significantly higher rate of P. aeruginosa acquisition compared to patients receiving only intermittent or no antibiotic therapy. This difference was especially apparent for children younger than age 6 years. We conclude that continuous therapy with antistapyloccocal antibiotics directed against Staph. aureus increases the risk of colonization with P. aeruginosa. How this affects the clinical outcome of these patients remains to be determined.

Adolescent↗

Changes in strategies for optimal antibacterial therapy in cystic fibrosis.

Aggressive antibiotic therapy of bacterial airway infection is one of the main reasons for the dramatic increase in life expectancy over the last few decades. Staphylococcus aureus and Haemophilus influenzae are the predominant pathogens in younger patients, but the choice of antibiotic therapy against these pathogens remains highly controversial. There is general agreement that patients with pulmonary exacerbations should be treated and many cystic fibrosis (CF) centres will also try to eradicate bacteria in the absence of symptoms. Prophylactic antibiotic therapy, with anti-staphylococcal medications started at the time of diagnosis, is advocated by some groups but its positive effect remains unproven. In fact, recent studies have suggested that continuous prophylactic treatment with anti-staphylococcal antibiotics may increase the risk of early colonisation with Pseudomonas aeruginosa. P. aeruginosa is the main pathogen in older children with CF. While chronic airway infection with mucoid P. aeruginosa is considered irreversible, both the combination of oral ciprofloxacin with inhaled colistin and inhaled tobramycin alone has been used successfully in the early phase of colonisation. In patients chronically infected with P. aeruginosa, standard treatment of pulmonary exacerbations consists of intravenous combination therapy for 2-3 weeks. Controversy exists whether this treatment should be performed routinely every 3 months or only in the presence of a pulmonary exacerbation. Inhaled antibiotics such as tobramycin have been shown to improve lung function and reduce sputum density of P. aeruginosa, but both the optimal dose and the duration of therapy are unclear at the present time.

Anti-Bacterial Agents↗

Ciprofloxacin-induced acute renal failure in a patient with cystic fibrosis.

Acute renal failure is a rare adverse reaction of antibiotic therapy with quinolones seldom seen in young patients. We report an 18-year-old young woman with cystic fibrosis who experienced a pronounced decline in renal function after oral treatment with ciprofloxacin for 3 weeks. Withdrawal of the drug led to normalization of renal function after 10 days.

Acute Kidney Injury↗

Airway nitric oxide in infants with acute wheezy bronchitis.

Concentrations of nitric oxide (NO) in exhaled air are increased in children and adults with asthma, and NO measurements are used as a non-invasive marker to monitor airway inflammation in these patients. To define the role of NO in infants with acute wheezy bronchitis, we measured nasal and end-tidal NO concentrations in 17 infants with acute virus-associated wheezy bronchitis, in 22 term infants without respiratory disease, and in nine premature infants. Nasal NO measurements were performed with an olive placed in the infant's nose; end-tidal NO concentrations were assessed during tidal breathing through a snuggly fitting face mask. Both end-tidal NO concentrations and nasal NO concentrations were reduced in infants with acute wheezy bronchitis. There were no differences in NO concentrations between term infants and premature infants. Measurements by both techniques were highly reproducible, as assessed by repeated measurements three times daily on three consecutive days in eight premature infants. Reduced airway NO concentrations in infants with virus-associated acute wheezy bronchitis are in contrast to findings in adults where both upper and lower airway NO levels are increased in patients with asthma. Whether this reflects a different inflammatory reaction to upper airway infections in acutely wheezy infants or pathophysiologic differences in airway response remains to be determined.

Acute Disease↗

Airway nitric oxide levels in cystic fibrosis patients are related to a polymorphism in the neuronal nitric oxide synthase gene.

Patients with cystic fibrosis (CF) have decreased concentrations of expired nitric oxide (FENO) as compared with healthy individuals. A number of factors, including viscous mucus as a diffusion barrier for airway NO, consumption of NO by bacterial enzymes, and decreased NO production have been hypothesized to account for these low levels of FENO. We examined the relationship between the size of an AAT repeat polymorphism in intron 20 of the NOS1 gene and FENO in 75 patients with CF. Mean FENO was significantly (p = 0.027) lower in CF patients who harbored two alleles with a high number of repeats (>/= 12) than in those who harbored alleles with fewer repeats at this locus (4.0 +/- 0.8 [mean +/- SEM] ppb versus 6.4 +/- 0.9 ppb). Colonization of the airways with Pseudomonas aeruginosa was significantly (p = 0.0358) more common in CF patients with high numbers of AAT repeats in the NOS1 gene. Significant differences between NOS1 genotypes were also observed among patients homozygous for the cystic fibrosis transmembrane regulator delta F508 mutation for FENO (2.3 +/- 0.4 ppb versus 5.3 +/- 0.7 ppb, p = 0.0006), and this was also true for colonization of the airways with P. aeruginosa (p = 0.0147) and Aspergillus fumigatus (p = 0.0221). These data provide evidence that the NOS1 gene is not only associated with the variability of FENO, but also with P. aeruginosa colonization of airways in CF patients.

Adolescent↗

Fractional analysis of bronchoalveolar lavage fluid cytology in cystic fibrosis patients with normal lung function. Bronchoalveolar lavage for the evaluation of anti-inflammatory treatment (BEAT) study group.

Cystic fibrosis (CF) is associated with a neutrophil dominated airway inflammation. So far bronchoalveolar lavage (BAL) studies in CF have used pooled BAL samples which may be more representative of the alveolar compartment rather than the airways. To assess whether the first sample of a BAL is more sensitive in the evaluation of airway inflammation, the authors have studied 105 stable CF patients aged 5-37 yrs with a mean forced expiratory volume in one second (FEV1) of 96+/-15% (mean+/-SD). BAL cytology of the first and pooled samples were compared to reference values obtained in children without respiratory disease. Absolute cell counts and the percentage of neutrophils were significantly increased in CF patients. If the 95% confidence interval was used as a cut-off point, 17/105 CF patients had a normal percentage of neutrophils in pooled BAL samples, but only three also had a normal percentage of neutrophils in the first BAL aliquot. Therefore, neutrophil dominated airway inflammation is more pronounced in the first, mainly bronchial, bronchoalveolar lavage sample suggesting that sequential analysis of bronchoalveolar lavage fluid may have a higher sensitivity to detect early inflammatory changes in CF patients.

Adolescent↗

Reference values for bronchoalveolar lavage in children.

Bronchoalveolar lavage (BAL) is a well-established diagnostic tool for the assessment of pulmonary diseases in adults. How BAL contributes to the diagnostic process in childhood lung diseases is less clear. One of the problems in interpreting BAL findings in children is that there are few reference data for BAL fluid constituents in children. This report addresses some of the technical problems of bronchoalveolar lavage in children and summarizes current knowledge on cellular and noncellular bronchoalveolar lavage fluid components in children without lung disease.

Antigens, Surface↗

Lipid-laden macrophages in bronchoalveolar lavage fluid as a marker for pulmonary aspiration.

An increased lipid content in alveolar macrophages of bronchoalveolar lavage (BAL) fluid is thought to be a useful indicator for recurrent pulmonary aspiration. To assess whether pulmonary diseases unrelated to aspiration can raise the lipid content in alveolar macrophages, we evaluated Oil-Red-O-stained smears of BAL fluid in 18 children aged 3-15 years undergoing elective surgery for nonpulmonary illnesses under general anesthesia and in 18 children aged 1-16 years who had pulmonary diseases without clinical evidence of aspiration (pneumonia, exogenous allergic alveolitis, or cystic fibrosis). A semiquantitative lipid-laden macrophage (LLM) index was determined for each patient. LLM indices in children without pulmonary disease were higher than those published for healthy adults. In children with pulmonary diseases but without evidence of aspiration, a significantly higher LLM index was observed compared to controls. The LLM indices of children with pulmonary diseases were similar to those published by other authors for children with pulmonary aspiration. We conclude that an elevated LLM index in alveolar macrophages of BAL can be found in a variety of pulmonary diseases in which there is no clinical evidence of aspiration and is therefore unlikely to be a specific parameter for silent pulmonary aspiration.

Adolescent↗