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Biomedical subjects

M Griese

Publications and source records attributed to M Griese.

At least 19 recordsLinked to original sources

Limited proteolysis of surfactant protein D causes a loss of its calcium-dependent lectin functions.

Surfactant protein D (SP-D) is a multimeric collagenous lectin that mediates the clearance of pathogens and modulates immune cell functions via its C-terminal carbohydrate recognition domain (CRD). We hypothesized that extracellular proteolysis of SP-D may result in a loss of its functional properties. Multimeric SP-D was partially digested by human leukocyte elastase (HLE) dose- and time-dependently. Physiologic concentrations of calcium slowed, but did not protect from degradation. In solution, both native and degraded SP-D had an apparent molecular weight of 650 to >1000 kDa. Under reducing conditions, the degraded SP-D monomers run at 10 kDa less than native SP-D. Amino acid sequencing located all major cleavage sites into the CRD. Functional studies showed that degraded SP-D had lost its calcium-dependent lectin properties, i.e. neither bound to mannose nor agglutinated bacteria. These studies demonstrate that elastase results in the limited proteolysis of SP-D with loss of its CRD-dependent activities and suggest that proteases at concentrations observed in various lung diseases may impair the antimicrobial and immunomodulatory roles of SP-D.

Agglutination Tests↗

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↗

Exhaled hydrogen peroxide, nitrite and nitric oxide in healthy children: decrease of hydrogen peroxide by atmospheric nitric oxide.

Hydrogen peroxide (H2O2) and nitrite (NO2-) in exhaled breath condensate have recently been suggested as non-invasive markers of airway inflammation. The goal of this study was to clarify the role of factors that may potentially influence the measurement of H2O2 and nitrite and to look for possible correlations among these inflammatory markers. H2O2 and nitrite values were assessed fluorometrically in breath condensate of 102 healthy children (age 4-18 years) and a detailed status of atopy (including history, lung function and skin prick test) was taken in all children. To find out the role of atmospheric nitric oxide, eNO and envNO were measured via chemiluminescence in association with the sampling of the breath condensate. Median (interquartile range) H2O2 was 0.51 (0.26 - 0.74) microM and nitrite was 3.3 (2.7 4.1) microM. A significant negative correlation between H2O2 and envNO was observed (r = -0.50; p < 0.0001). ENO was independent of envNO at our envNO range up to 56 ppb. No further correlation was found. The inflammatory markers in exhaled breath condensate H2O2, nitrite and eNO are not interrelated to each other in healthy children. Whereas eNO was not dependent on envNO values, high envNO values must be taken into account when measuring H2O2 in exhaled breath condensate.

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↗

Sequential genotyping of Pseudomonas aeruginosa from upper and lower airways of cystic fibrosis patients.

A controversy exists concerning the adequate specimen to characterise colonisation of cystic fibrosis (CF) airways by Pseudomonas aeruginosa. Oropharyngeal, sputum and bronchoalveolar lavage samples were evaluated from 38 stable CF patients for the detection of P. aeruginosa, genetically different isolates within the same host and longitudinal variations in the genotype during repeated examinations. Bacterial isolates were typed by pulsed-field gel electrophoresis of deoxyribonucleic acid macrorestriction fragments. Sensitivity, negative and positive predictive values and specificity to detect P. aeruginosa were 35.7, 73.5, 83.3 and 96.2% for oropharyngeal cultures in nonexpectorating patients and 91.7, 94.1, 100 and 100% for sputum cultures from expectorating patients, respectively. Genotypes of Pseudomonas isolates recovered from oropharyngeal swabs and sputum differed to the strains recovered by bronchoscopy in 55% and 40%, respectively. In 62% longitudinal variations in the genotype occurred. One-half of these alterations were detectable by bronchoscopy only. In conclusion, sputum samples were of equal value as specimens from bronchoalveolar lavage to detect Pseudomonas aeruginosa colonisation. Cultures from the oropharynx are not suitable for characterising bacterial conditions in the cystic fibrosis lung. Different genotypes within the same host and longitudinal genetic alterations are common and may be detectable in the bronchoalveolar lavage fluid exclusively.

Adolescent↗

Changes of exhaled nitric oxide during steroid treatment of childhood asthma.

Exhaled nitric oxide (eNO) is elevated in several inflammatory airway diseases and is significantly reduced by anti-inflammatory treatment with inhaled steroids. The aim of this randomized, open clinical trial was to evaluate eNO in relation to conventional lung function parameters at rest and after exercise during sequential changes of inhaled steroids in children with persistent asthma. The study consisted of a 4 week run-in period, a 4 week washout phase and a randomized treatment period during which only one group was treated again with inhaled budesonide. After run-in, eNO was reduced to normal values, and rose again during washout. In the patients randomized to steroid treatment, eNO was again decreased, whereas it remained unchanged in the untreated patients. Forced expiratory volume in one second and forced vital capacity at rest and after exercise improved significantly after run-in, but showed no difference after randomization. However there was a strong correlation of eNO with patient compliance. Exhaled nitric oxide was able to differentiate between children briefly treated with or without steroids, the conventional lung-function variables however could not. In practice exhaled nitric oxide may thus be a valuable parameter to monitor adherence to steroids, but less suitable to describe physiologically relevant impairments of lung function.

Adolescent↗

Surfactant proteins D and A in sputum.

The surfactant proteins SP-D and SP-A are collectins and central components of the innate immune system of the peripheral lungs. They bind to carbohydrates on microorganisms and promote their removal. In the larger airways their role and concentrations are not yet known. Sputum may thus potentially be useful to characterize the collectins in this compartment. Induced sputum was obtained from healthy adults and spontaneous sputum from patients with cystic fibrosis. ELISA and carbohydrate binding assays were used to quantify the amount and functional capacity of the collectins in plugs or sol-fractions, prepared by centrifugation of the plugs. SP-D and SP-A were detectable in only about 50% of the sputum plugs. Varying the salt, detergent and calcium conditions of the assay did not improve the results. In samples with reproducibly detectable SP-D or SP-A, their carbohydrate binding capacity was zero. Sputum sol fraction and LPS inhibited the binding of the collectins to carbohydrate in the presence of calcium. Whereas SP-D and SP-A are abundant in the peripheral lung, their presence in sputum derived from the larger airways is variable and their carbohydrate binding capacity is lost.

Adolescent↗

Reduced proteolysis of surfactant protein A and changes of the bronchoalveolar lavage fluid proteome by inhaled alpha 1-protease inhibitor in cystic fibrosis.

In cystic fibrosis (CF), the chronic neutrophilic inflammation of the airways results in proteolytic degradation of lung tissue early in the course of the disease. Inhalation of alpha 1-protease inhibitor (alpha 1-PI) may restore the protease-antiprotease imbalance and thus lead to less tissue damage. To monitor its impacts on bronchoalveolar lavage (BAL) fluid protein pattern (proteome) and on surfactant protein A (SP-A), eight young adults with CF inhaled 100 mg of alpha 1-PI twice daily over eight weeks. BAL fluids were obtained before and after inhalation. Total protein, the number and amount of proteins with a molecular mass < 20 kDa were reduced compared to pretreatment values. Degradation products of SP-A were shown by immunoblotting, being reduced after alpha 1-PI treatment. This pilot study demonstrates that inhalation of alpha 1-PI is associated with biochemical changes consistent with reduced proteolysis. The display of the BAL proteome by two-dimensional electrophoresis may be helpful to quantify the overall molecular changes associated with proteolytic or other lung injuries and offers the possibility to monitor directly therapeutic interventions.

Administration, Inhalation↗

Inhalation of alpha(1)-protease inhibitor in cystic fibrosis does not affect surfactant convertase and surface activity.

The inhalation of alpha(1)-protease inhibitor (alpha(1)-PI) was assessed in a pilot study to restore the protease-antiprotease balance in the lungs of cystic fibrosis (CF) patients. In addition, the effect of this treatment on the surface active properties of lung surfactant and the metabolic conversion of aggregate forms was studied. Eight young adults with CF inhaled 100 mg of alpha(1)-PI twice daily over 8 weeks and bronchoalveolar lavages (BAL) were obtained before and 12 h after the last inhalation. Large aggregate (LA) forms of surfactant were isolated from the in vivo material by ultracentrifugation and their conversion into small aggregates (SA) was assessed by an in vitro surface area cycling assay. Although alpha(1)-PI partially restored the protease-anti-protease imbalance and reduced BAL protein content, no effects were noted on the impaired minimal surface tension and on the in vivo and in vitro conversion of LA to SA. Antiserum against the specific carboxyl esterase ES-2, previously identified in mice and rats as the putative surfactant convertase, did not detect a protein of the appropriate size in CF BAL. Whereas short-term inhalation of alpha(1)-PI was beneficial for the proteolytic aspects of CF lung injury, this appeared not to be the case for surfactant conversion and surface activity.

Administration, Inhalation↗

A noninvasive method to collect nasally exhaled air condensate in humans of all ages.

BACKGROUND: The analysis of exhaled breath condensate may provide valuable insights into inflammatory and other metabolic processes of the lungs. However, its collection by active exhalation with conventional methods is cumbersome, demands a substantial level of co-operation with high motivation and is very difficult or impossible in children younger than about 4-6 years or in the elderly. A comfortable, noninvasive and efficient method is desirable. DESIGN AND PATIENTS: For collection a high-performance pump connected to a cold trap and nasal prongs were used. The volume of the condensate collected was assessed in 141 children of all ages and five adults. As an example for a low molecular component, H2O2 a marker of oxidative stress, was determined fluorometrically. RESULTS: On average, in healthy children from 4 weeks to 18 years of age, 84.0 (79.4, 87.3) microL min(-1) of nasally exhaled air condensate were collected. The volume obtained was about 45% less in 1-6-year-old children, increased linearly with collection time, and averaged about 20-30% of the exhaled water vapour. The concentration of H2O2 in the healthy children was 0.49 (0.48, 0.61) microM and did not depend on age, the time of the day, family, or personal history of atopy and sex. CONCLUSIONS: The method described is generally applicable, comfortable, noninvasive, safe and efficient and allows the collection of nasally exhaled air condensate for the evaluation of metabolic processes of the lungs.

Adolescent↗

Uptake of a natural surfactant and increased delivery of small organic anions into type II pneumocytes.

The uptake of natural lung surfactant into differentiated type II cells may be used for the targeted delivery of other molecules. The fluorescent anion pyranine [hydroxypyren-1,3,6-trisulfonic acid, sodium salt (HPTS)] was incorporated into a bovine surfactant labeled with [3H]dipalmitoylphosphatidylcholine ([3H]DPPC). The uptake of [3H]DPPC and of HPTS increased with time of incubation and concentration, decreased with the size of the vesicles used, and was stimulated by 8-bromo-cAMP and partially inhibited by hypertonic sucrose. However, the amount of HPTS uptake was approximately 100 times smaller than that of [3H]DPPC. This large difference was due to a more rapid regurgitation of some of the HPTS from the cells but not to leakage from the surfactant before uptake. The acidification of the internalized surfactant increased linearly over 90 min to 7.13, and after 24 h, a pH of 6.83 was measured. In conclusion, after internalization of a double-labeled natural surfactant, the lipid moieties were accumulated in relation to the anions, which were targeted to a compartment not very acidic and in part rapidly expelled from the cells.

1,2-Dipalmitoylphosphatidylcholine↗

Surfactant protein A and other bronchoalveolar lavage fluid proteins are altered in cystic fibrosis.

Inflammation and proteolytic processes play an important role in the progression of cystic fibrosis (CF) lung disease. The goal of this study was to describe bronchoalveolar lavage fluid (BALF) protein pattern of CF patients in comparison to controls and to assess if there is proteolytic degradation of surfactant protein A (SP-A), an important innate host defence component of the lungs. BALFs from 17 clinically stable CF patients and from eight healthy children were separated by two-dimensional gel electrophoresis. Silver staining was used to show BALF proteins and Western blotting to detect SP-A isoforms. In CF, BALF proteins of a low molecular weight < or = 20 kD were more abundant than in controls. Various proteins were seen in CF which were not present in controls and vice versa. Degradation of SP-A was present in 15 of 17 CF BALFs but in none of the controls, in contrast polymeric isoforms were seen in all controls and in four of 17 CF patients. Proteolytic damage to surfactant protein A and significant changes of normal bronchoalveolar lavage fluid proteins occur in lungs of cystic fibrosis patients. Identification of altered bronchoalveolar lavage fluid proteins may give new insights into pathogenic mechanisms and provide new targets for therapy.

Adolescent↗

Clinical biological and genetic heterogeneity of the inborn errors of pulmonary surfactant metabolism.

Pulmonary surfactant is a multimolecular complex located at the air-water interface within the alveolus to which a range of physical (surface-active properties) and immune functions has been assigned. This complex consists of a surface-active lipid layer (consisting mainly of phospholipids), and of an aqueous subphase. From discrete surfactant sub-fractions one can isolate strongly hydrophobic surfactant proteins B (SP-B) and C (SP-C) as well as collectins SP-A and SP-D, which were shown to have specific structural, metabolic, or immune properties. Inborn or acquired abnormalities of the surfactant, qualitative or quantitative in nature, account for a number of human diseases. Beside hyaline membrane disease of the preterm neonate, a cluster of hereditary or acquired lung diseases has been characterized by periodic acid-Schiff-positive material filling the alveoli. From this heterogeneous nosologic group, at least two discrete entities presently emerge. The first is the SP-B deficiency, in which an essentially proteinaceous material is stored within the alveoli, and which represents an autosomal recessive Mendelian entity linked to the SFTPB gene (MIM 1786640). The disease usually generally entails neonatal respiratory distress with rapid fatal outcome, although partial or transient deficiencies have also been observed. The second is alveolar proteinosis, characterized by the storage of a mixed protein and lipid material, which constitutes a relatively heterogeneous clinical and biological syndrome, especially with regard to age at onset (from the neonate through to adulthood) as well as the severity of associated signs. Murine models, with a targeted mutation of the gene encoding granulocyte macrophage colony-stimulating factor (GM-CSF) (Csfgm) or the beta subunit of its receptor (II3rb1) support the hypothesis of an abnormality of surfactant turnover in which the alveolar macrophage is a key player. Apart from SP-B deficiency, in which a near-consensus diagnostic chart can be designed, the ascertainment of other abnormalities of surfactant metabolism is not straightforward. The disentanglement of this disease cluster is however essential to propose specific therapeutic procedures: repeated broncho-alveolar lavages, GM-CSF replacement, bone marrow grafting or lung transplantation.

Adult↗

Asthma severity, recommended changes of inhaled therapy and exhaled nitric oxide in children: a prospective, blinded trial.

Orally exhaled nitric oxide (ENO) correlates with several variables of airway inflammation and might be useful to direct asthma therapy. If this is true, ENO should correlate with disease severity and the therapeutic decisions made. - In 74 children with allergic asthma (age 9.7 years, range 4-16) disease severity was determined by history, clinical symptoms, and lung function and inhaled therapy was adjusted according to the NIH criteria. ENO was also measured, but the patients, their parents and the physicians who made the therapeutic decision were left unaware of the results. 31 healthy children served as controls. ENO was higher in asthmatics than in controls, but did not differ with asthma severity. ENO was weakly correlated with the changes in asthma therapy recommended (r = 0.303, P = 0.009). ENO values above normal (> 13 ppb) had a sensitivity of 0.67 and a specificity of 0.65 to predict a step up in therapy. Due to the non-normal distribution of ENO there was a substantial overlap between the different groups. The lack of correlation with disease severity and the weak prediction of physician recommended inhaled therapy, suggest that ENO may be of some value to guide asthma therapy. Studies using ENO to direct therapy are necessary for a definite answer.

Asthma↗

Pulmonary complications after bone marrow transplantation in children: twenty-four years of experience in a single pediatric center.

In children, pulmonary sequelae contribute to early and late morbidity after bone marrow transplantation (BMT). Between 1975-1999, we performed 152 BMTs in 138 pediatric patients with malignant and nonmalignant diseases. Allogenic bone marrow was used from 99 HLA identical siblings and from 23 other related or unrelated donors. Autologous marrow was used in 30 transplantations. Median age was 8. 6 years (range, 1.1-22.4) at time of BMT. The median survival was 42%, the survival time was 6.5 years (range, 0.8-23.1), and the median follow-up time was 6.8 years (range, 0.8-23.2). Seventeen patients had severe respiratory complications. Early severe respiratory complications leading to death within the first 4 months after BMT were due to pulmonary edema (n = 1), or fungal (n = 3), bacterial (n = 1), or viral (n = 2) pneumonia. Late severe respiratory sequelae were defined as persistent respiratory symptoms for more than 4 months despite treatment, and these occurred in 10 patients, of whom 5 died. Underlying diagnoses covered a wide spectrum, including bronchiolitis obliterans (n = 3), severe restrictive lung disease (n = 2), idiopathic pneumonia syndrome (n = 3), chronic bronchitis (n = 1), and hepatopulmonary syndrome (n = 1). The overall probability for death was 0.58, and for death from severe respiratory complications, 0.16. With improved HLA matching, fewer BMTs after relapsed or primary progressive disease, and improved supportive care, including the usage of CMV negative blood products, after 1990 the probability of death from severe respiratory complications was only 0.04, whereas before 1990 it was 0.23 (P = 0.029; in each time period, n = 69). The disease spectrum has changed from initially more infectious complications to bronchiolitis obliterans and idiopathic pneumonia syndrome. Lung function measurements performed in 85 of 138 patients usually showed a mild restrictive pattern. To identify those children as early as possible who are at risk for severe respiratory complications, a close longitudinal follow-up after BMT by pediatric pulmonologists is necessary.

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↗

Characteristics of flow dependency of nitric oxide in exhaled air in children with cystic fibrosis and asthma.

Nitric oxide (NO) is a free radical produced by the lungs which can easily be measured in exhaled air. NO may serve as a non-invasive marker for airway inflammation in chronic inflammatory diseases like asthma. However in patients with cystic fibrosis (CF) and severe airway involvemen normal or low levels of NO have been reported. To investigate this further we measured NO levels in exhaled air at 5 different flow rates in 14 asthmatics, 15 CF-patients and 13 healthy children. A dependency of exhaled NO on expiratory flow was demonstrated in all three groups. At slow flows lower NO levels in CF-patients and significantly higher levels in asthmatics compared to healthy individuals were found. When the data were fitted to a one compartment model of the lung described by NO(MOUTH) = NO(LUNG) - NO(LUNG) x e(-T/Vex) (T = transfer factor; Vex = expiratory flow), NO(LUNG) was increased in asthmatics (191.9 +/- 53.8 ppb) and low in CF (26.7 +/- 5.7 ppb) compared to healthy individuals (76.9 +/- 50.9 ppb; p(anova) = 0.0213). NO produced in the central compartment of the lung behaved similarly and was distinguished from a peripheral compartment with the two compartment model NO(MOUTH) = NO(central) - (NO(central) - NO(peripher) ) x e(-T/Vex). We conclude that NO in exhaled air is flow dependent and at slow expiratory flows elevated in asthmatics and reduced in CF-patients compared to healthy children. Concentrations extrapolated for the whole lung and for the central airways changed proportionally.

Adolescent↗

A genome-wide search for linkage to asthma. German Asthma Genetics Group.

Asthma is among the most frequent chronic diseases in childhood. Although numerous environmental risk factors have already been identified, the basis for familial occurrence of asthma remains unclear. Previous genome screens for atopy in British/Australian families and for asthma in different American populations showed inconsistent results. We report a sib pair study of a sample of 97 families, including 415 persons and 156 sib pairs. Following an extensive clinical evaluation, all participants were genotyped for 351 polymorphic dinucleotide markers. Linkage analysis for asthma identified four chromosomal regions that could to be linked to asthma: chromosome 2 (at marker D2S2298, P = 0.007), chromosome 6 (around D6S291, lowest P = 0.008), chromosome 9 (proximal to D9S1784, P = 0.007), and chromosome 12 (D12S351, P = 0.010). These linkage regions could be reproduced for all loci by analysis of total or specific immunoglobulin E (minimum P values at these regions were 0. 003, 0.001, 0.010, and 0.015, respectively).

Asthma↗