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Biomedical subjects

M Griese

Publications and source records attributed to M Griese.

At least 19 recordsLinked to original sources

alpha1-Antitrypsin inhalation reduces airway inflammation in cystic fibrosis patients.

The airways of cystic fibrosis (CF) patients are characterised by neutrophils that release high amounts of elastase overwhelming the local antiprotease shield. Inhalation of alpha(1)-antitrypsin (AAT) may restore the protease-antiprotease balance and attenuate airway inflammation in CF airways. The aims of the present study were: 1) to assess the best deposition region for inhaled AAT by two different inhalation strategies; and 2) to examine the effect of 4 weeks of AAT inhalation on lung function, protease-antiprotease balance and airway inflammation in CF patients. In a prospective, randomised study, 52 CF patients received a daily deposition by inhalation of 25 mg AAT for 4 weeks targeting their peripheral or bronchial compartment. The levels of elastase activity, AAT, pro-inflammatory cytokines, neutrophils, immunoglobulin G fragments and the numbers of Pseudomonas aeruginosa were assessed in induced sputum before and after the inhalation period. Inhalation of AAT increased AAT levels and decreased the levels of elastase activity, neutrophils, pro-inflammatory cytokines and the numbers of P. aeruginosa. However, it had no effect on lung function. No difference was found between the peripheral and bronchial inhalation mode. In conclusion, although no effect on lung function was observed, the clear reduction of airway inflammation after alpha(1)-antitrypsin treatment may precede pulmonary structural changes. The alpha(1)-antitrypsin deposition region may play a minor role for alpha(1)-antitrypsin inhalation in cystic fibrosis patients.

Administration, Inhalation↗

Anti-inflammatory cytokines in cystic fibrosis lung disease.

Lung inflammation plays a pivotal role in the pathogenesis of airway disease in cystic fibrosis (CF). An imbalance between pro- and anti-inflammatory mediators has been observed and a deficiency in the anti-inflammatory response has been proposed, but this concept remains controversial. In the present study, the concentrations of two anti-inflammatory mediators, lipoxin A (LxA4) and Clara cell protein 10 (CC-10), were assessed in bronchoalveolar lavage fluid (BALF) of CF patients with a wide range of endobronchial inflammation and disease controls with neutrophilic inflammation unrelated to CF. No differences were observed in LxA4 BALF concentrations between CF patients and controls with a similar degree of neutrophilic airway inflammation. Concentrations were also similar in CF patients with mild versus more severe airway inflammation. In contrast, CC-10 concentrations were lower in CF patients, but this decrease was limited to patients with more intense airway inflammation. The present data do not support the concept of a primary defect in anti-inflammatory mediators in cystic fibrosis lung disease. Although Clara cell protein concentrations were found to be reduced, these alterations appear to be secondary to neutrophilic airway inflammation rather than due to a primary deficiency.

Adolescent↗

Diagnostic and prognostic value of serum antibodies against Pseudomonas aeruginosa in cystic fibrosis.

BACKGROUND: Eradication of Pseudomonas aeruginosa in patients with cystic fibrosis (CF) is possible if initiated early in the course of colonisation. To detect P aeruginosa as early as possible is therefore a major goal. This study was undertaken to validate a commercialised test for the detection of serum Pseudomonas antibodies in patients with CF. METHODS: A representative cross sectional analysis of serum antibodies against three Pseudomonas antigens (alkaline protease, elastase, and exotoxin A) was performed in 183 patients with CF of mean age 16.7 years and FEV1 85.9% predicted. The results were correlated with microbiological results from the previous 2 years to calculate sensitivity, specificity, positive and negative predictive values. The following 2 years were assessed to determine prognostic predictive values. RESULTS: A combination of all three tested antibodies yielded the best results with a sensitivity of 86%, specificity of 96%, and a positive predictive value of 97%. These values were higher if only patients in whom sputum cultures were available were considered (n = 76, sensitivity 95%, specificity 100%, positive predictive value 100%). The prognostic positive predictive value was high in intermittently infected patients (83%) but low in patients free of infection (33%), whereas the prognostic negative predictive value was high in patients free of infection (78%) and low in intermittently infected patients (58%). CONCLUSIONS: Regular determination of serum antibodies may be useful in CF patients with negative or intermittent but not with positive P aeruginosa status. A rise in antibody titres indicates probable infection and eradication treatment may be initiated even in the absence of microbiological detection of P aeruginosa.

Adolescent↗

Protein oxidation by chronic pulmonary diseases in children.

The oxidation of proteins may play an important role in the pathogenesis of chronic inflammatory lung diseases, and may contribute to lung damage. However, the extent of oxidation and the distribution among proteins are not known for most pediatric lung diseases. In this work, protein oxidation was assessed as protein carbonyls. Bronchoalveolar lavages (BAL) from children with chronic lung diseases were investigated by dot-blot assay for content and for pattern of distribution of oxidized proteins by two-dimensional (2D) electrophoresis and Western blotting. Significantly higher levels of protein oxidation than in healthy controls were determined in groups of patients with interstitial lung disease, gastro-esophageal reflux disease, and pulmonary alveolar proteinosis. The proteins most sensitive to oxidation were serum albumin, surfactant protein A, and alpha1-antitrypsin. Our data show increased oxidative stress in lungs of children with chronic pulmonary diseases, with significant interindividual variations. The extent of protein oxidation was proportional to the count of neutrophilic granulocytes in BAL fluid. These findings strongly support the concept that an abundance of reactive oxygen species produced during neutrophilic inflammation may be a deleterious factor, leading to pulmonary damage in these patients.

Adolescent↗

Surfactant protein D in human lung diseases.

The lung is continuously exposed to inhaled pollutants, microbes and allergens. Therefore, the pulmonary immune system has to defend against harmful pathogens, while an inappropriate inflammatory response to harmless particles must be avoided. In the bronchoalveolar space this critical balance is maintained by innate immune proteins, termed surfactant proteins. Among these, surfactant protein D (SP-D) plays a central role in the pulmonary host defence and the modulation of allergic responses. Several human lung diseases are characterized by decreased levels of bronchoalveolar SP-D. Thus, recombinant SP-D has been proposed as a therapeutical option for cystic fibrosis, neonatal lung disease and smoking-induced emphysema. Furthermore, SP-D serum levels can be used as disease activity markers for interstitial lung diseases. This review illustrates the emerging role of SP-D translated from in vitro studies to human lung diseases.

Animals↗

Surfactant protein A--from genes to human lung diseases.

Surfactant associated protein-A (SP-A) is the most abundant pulmonary surfactant protein and belongs to the family of innate host defense proteins termed collectins. Besides pulmonary host defense, SP-A is also involved in the formation of pulmonary surfactant, as it is essential for the structure of tubular myelin. The human SP-A gene locus includes two functional genes, SFTPA1 and SFTPA2 which are expressed independently, and a pseudo gene. The largest amount of SP-A1 proteins assemble to larger molecular complexes, whereas SP-A2 forms mainly dimers and trimers. SP-A polymorphisms play a role in respiratory distress syndrome, allergic bronchopulmonary aspergillosis and idiopathic pulmonary fibrosis. The levels of SP-A are decreased in the lungs of patients with cystic fibrosis, respiratory distress syndrome and further chronic lung diseases. Future areas for clinical research include disease specific SP-A expression pattern and their functional consequences, the differential roles of SP-A1 and SP-A2 in human lung diseases, and therapeutical approaches to correct altered SP-A levels.

Humans↗

Instructions for infection control in outpatient care of patients with cystic fibrosis.

RATIONALE AND GOALS: Infections of the respiratory tract with multiresistant bacteria and other pathogens lead to a poor prognosis in patients with cystic fibrosis. The patient-to-patient transmission of infectious agents during the clinic visit and the transmission via the hands of healthcare workers has gained increased attention in the cystic fibrosis community. For this reason practical and possibly evidence-based instructions for infection control measures are needed that are feasible in every day outpatient management of patients with cystic fibrosis. - METHODS: For generating these instructions, a committee consisting of medical doctors and nursing staff providing care to cystic fibrosis patients, infectious diseases specialists and members of the department of infection control analyzed the patients' route through our cystic fibrosis unit during a routine clinic visit. First, the expert committee defined instructions concerning important infection control measures for each step. Next, each instruction was compared with the published literature and categorized as to its grade of evidence (I, II, 0). Instructions with grades of evidence I and II and instructions without demonstrated evidence (0) but theoretically reasonable and practically feasible, were accepted and outlined in a flow diagram. All other instructions were rejected. - RESULTS: The expert committee defined 45 instructions for infection control measures during an outpatient visit of a cystic fibrosis patient. 43 instructions within the categories "principles", "measures before entering the clinic", "measures in the examination room" and "measures when leaving the clinic" matched the criteria mentioned above and were accepted. 2 instructions were rejected. - CONCLUSIONS: Here we report evidence-based instructions for infection control in the setting of outpatient care for cystic fibrosis patients which are feasible in every day care. Since some instructions could only be assigned low evidence grade levels, i. e. II or 0, a further clarification of these issues by scientific investigations is warranted. Unresolved issues are primarily the recommendation for or against wearing a face mask for patients with certain pathogens and the issues of colonization with Stenotrophomonas maltophilia and Alcaligines xylosidans, but also with Aspergillus spp.. Continuous education of patients and healthcare workers as well as the validation of these practical instructions by a close monitoring and documentation of pathogens are of great importance.

Adolescent↗

Inhaled glutathione decreases PGE2 and increases lymphocytes in cystic fibrosis lungs.

Reduced glutathione (GSH), a major antioxidant and modulator of cell proliferation, is decreased in the bronchoalveolar lavage fluid (BALF) of cystic fibrosis (CF) patients. We previously have shown that GSH inhalation in CF patients significantly increased GSH levels in BALF and improved lung function (M. Griese et al., 2004, Am. J. Respir. Crit. Care Med.169, 822-828). GSH depletion in vitro enhances susceptibility to oxidative stress, increases inflammatory cytokine release, and impairs T cell responses. We therefore hypothesized that an increase in GSH in BALF reduces oxidative stress, decreases inflammation, and modulates T cell responses in lungs of CF patients. BALF from 17 CF patients (median FEV1 67% (43-105%) of predicted) was assessed before and after GSH inhalation for total protein, markers of oxidative stress (8-isoprostane, myeloperoxidase, and ascorbic and uric acid), pattern of protein oxidation, prostaglandin E2 (PGE2), and proinflammatory cytokines. BALF cells were differentiated using cytospin slides, and lymphocytes were further analyzed by flow cytometry. Inhalation of GSH decreased BALF levels of PGE2 and increased CD4+ and CD8+ lymphocytes in BALF significantly but had no effect on markers of oxidative stress. BALF lymphocytes correlated positively with lung function, whereas levels of PGE2 showed an inverse correlation. The patients with the greatest improvement in lung function after GSH treatment also had the largest decline in PGE2 levels. We conclude that GSH inhalation in CF patients increases lymphocytes and suppresses PGE2 in the bronchoalveolar space. Thus, GSH primarily affected the pulmonary immune response rather than the oxidative status in CF patients. The effect of GSH inhalation on PGE2 levels and lymphocytes in CF warrants further investigation.

Administration, Inhalation↗

Quantitation of surfactant protein B by HPLC in bronchoalveolar lavage fluid.

A sensitive reversed phase HPLC method with evaporative light scattering detection (ELSD) was developed for the determination of the hydrophobic surfactant protein B (SP-B) in human bronchoalveolar lavage fluid. Samples were extracted two times with CHCl(3):MeOH:HCl (2:3:0.005N) solution in a ratio of 1:2 by volume. The extract of the lower phase was separated on a C4 butyl silica gel column with an isocratic elution using a mobile phase, consisting of 97% methanol, 2.75% chloroform and 0.25% 0.1 M trifluoroacetic acid (by volume), at a flow rate of 1 ml/min. SP-B was detected by ELSD and quantified by comparison to an external standard. The duration of a run was 7 min, the quantification limit 30 ng and the limit of detection was at about 15 ng of SP-B. This method is suitable for the rapid routine quantification of SP-B in human bronchoalveolar lavage fluid samples.

Bronchoalveolar Lavage Fluid↗

Optimum peripheral drug deposition in patients with cystic fibrosis.

In order to identify the optimum particle size and breathing pattern for high peripheral deposition of inhaled drugs in patients with cystic fibrosis, regional deposition in these patients was studied systematically as a function of particle size, inhalation volume and flow rate. Regional deposition was assessed using the single-breath regional deposition technique in which the concentration profile of inhaled and exhaled non-radioactive, monodisperse test particles is analyzed. Using this technique particle deposition within the functional dead space volume and peripherally can be assessed. Regional deposition was measured in 12 patients with cystic fibrosis using 2, 3, 4, and 5.5 microm particles, inhalation volumes of 500, 1000, 1500, and 2000 cm(3), and inhalation flow rates of 100, 250, 500, and 750 cm(3)/sec. Peripheral deposition was highest when 2-3-microm particles were inhaled with air-flow rates of 250-500 cm(3)/sec. With these parameters peripheral deposition increased with increasing inhalation volume and reached values of about 60% of the total drug inhaled. It has been shown that high peripheral drug deposition can be achieved in patients with CF when inhalations are performed using an optimized combination of particle size and breathing pattern.

Administration, Inhalation↗

Anti-GM-CSF antibodies in paediatric pulmonary alveolar proteinosis.

BACKGROUND: Auto-antibodies against granulocyte-macrophage colony stimulating factor (GM-CSF) may be central to the pathogenesis of adult sporadic pulmonary alveolar proteinosis (PAP). The role of anti-GM-CSF auto-antibodies in paediatric forms of PAP is as yet unclear. METHODS: Anti-GM-CSF auto-antibodies were determined with the help of an antigen capture assay using serum and/or bronchoalveolar lavage (BAL) fluid from 27 patients with PAP (nine adults, 15 children, three neonates) and from 185 children with different diseases as disease controls (various pulmonary conditions and patients with malignancies). RESULTS: Anti-GM-CSF auto-antibodies were detected in the serum of five of seven adult PAP patients. They were not found in the serum of any of the children or neonates with PAP nor in any of the disease control patients. Raised anti-GM-CSF titres were found in BAL fluid from three of four adult patients with PAP. Anti-GM-CSF auto-antibodies were detected in BAL fluid of only one of the 15 children (age at diagnosis 11 years, age at BAL 24 years) and in none of the neonates with PAP, nor in any of the disease control patients. CONCLUSIONS: The presence of anti-GM-CSF auto-antibodies seems to define an autoimmune disease underlying most of the adult sporadic type of PAP, but age at diagnosis may cause an overlap with children in some rare instances. In most of the children and all of the neonates the anti-GM-CSF titres were not significantly increased, indicating that alternative explanations are needed for the pathogenesis of the disease in these patients.

Adult↗

Lung function in adults with cystic fibrosis at altitude: impact on air travel.

Current guidelines for air travel state that patients with chronic respiratory diseases are required to use oxygen if their in-flight arterial oxygen tensions (Pa,O2) drop below 6.6 kPa. This recommendation may not be strictly applicable to cystic fibrosis patients, who may tolerate lower Pa,O2 for several hours without clinical symptoms. Lung function, symptoms, blood gas levels and signs of pulmonary hypertension were studied in 36 cystic fibrosis patients at altitudes of 530 m and, after 7 h, 2,650 m. A hypoxia inhalation test (inspiratory oxygen fraction 0.15) was performed at low altitude in order to predict high-altitude hypoxaemia. Median Pa,O2 dropped from 9.8 kPa at low altitude to 7.0 kPa at high altitude. Mild exercise at a workload of 30 W further decreased Pa,O2. Two-thirds of all patients exhibited Pa,O2 of <6.6 kPa during exercise and, except for one patient, were asymptomatic. Patients were significantly less obstructed at an altitude of 2,650 m. Low forced expiratory volume in one second at baseline was associated with a low Pa,O2 at altitude. It is concluded that cystic fibrosis patients with baseline arterial oxygen tensions of >8.0 kPa safely tolerate an altitude of 2,650 m for several hours under resting conditions. The risk assessment of low in-flight oxygenation should encompass the whole clinical situation of cystic fibrosis patients, with special attention being paid to the presence of severe airway obstruction.

Adult↗

Surfactant function in children with chronic airway inflammation.

Pulmonary surfactant is necessary to keep the terminal conducting airways patent. It is unknown whether mild to moderate airway inflammation may influence surfactant function and thus contribute to the pathogenesis of chronic airway inflammation in children. To answer this question, 21 children with chronic obstructive bronchitis and 19 asymptomatic children with long-term tracheostomy and increased numbers of neutrophils in their airways were compared with 15 healthy controls. Bronchoalveolar lavage fluid was separated into large surfactant aggregates (LA) and a supernatant containing inhibitory constituents. Surfactant function of LA, recombinations of LA and supernatant, and recombinations of a defined bovine surfactant and supernatant was assessed in a capillary surfactometer. Compared with controls, the function of the LA surfactant was reduced and there was no difference between children with tracheostomy and chronic obstructive bronchitis. The function of LA-supernatant recombinations was poor in all subjects. This may be explained by the well-known protein influx during the lavage procedure. The activity of bovine surfactant-supernatant reconstitutions was impaired in children with tracheostomy. In all surfactant mixtures assessed, surfactant function was inversely correlated to the number of neutrophils in the lavage fluid. Chronic lower airway inflammation with mild or no clinical symptoms is associated with impaired surfactant function. The dysfunction may contribute to airflow restrictions frequently observed in these children.

Bronchitis, Chronic↗

Airway inflammation in children with tracheostomy.

We hypothesised that long-term tracheostomy in infants and children may perpetuate chronic airway inflammation and airway remodeling due to easier access to the lungs for microorganisms. Pulmonary surfactant represents an important part of the initial host defense, and in particular, the surfactant proteins (SP) A and D may directly interact with invading microorganisms and also modulate the activity of local immune cells. The goals of this study were to determine the presence and intensity of a peripheral airway inflammation and of potential deficiency states of surfactant proteins in nonsymptomatic children with tracheostomy. Bronchoalveolar lavage (BAL) cell pattern, bacteria and viruses recovered, and concentrations of SP-A, SP-B, SP-C, and SP-D were assessed in 46 children (4.3 years (1.6-6)) median (range) carrying a tracheostomy for 2.4 years (1.3-4.9), and were compared to 16 children with no lung disease. Children with tracheostomy had an increased total number of cells, increased neutrophils, and more frequently bacteria, but no viruses were recovered. SP-D concentration was reduced by 50% on average (P = 0.0002). SP-A, SP-B, and SP-C were not different between the two groups. SP-D was inversely correlated to neutrophils, and high numbers of bacteria were associated with lower SP-D concentrations. We suggest that bacteria and low SP-D support neutrophilic inflammation in the lower respiratory tract of nonsymptomatic with children with tracheostomy.

Bronchoalveolar Lavage↗

Interstitial lung disease in a baby with a de novo mutation in the SFTPC gene.

Mutations in the surfactant protein C gene (SFTPC) were recently reported in patients with interstitial lung disease. In a 13-month-old infant with severe respiratory insufficiency, a lung biopsy elicited combined histological patterns of nonspecific interstitial pneumonia and pulmonary alveolar proteinosis. Immunohistochemical and biochemical analyses showed an intra-alveolar accumulation of surfactant protein (SP)-A, precursors of SP-B, mature SP-B, aberrantly processed proSP-C, as well as mono- and dimeric SP-C. Sequencing of genomic DNA detected a de novo heterozygous missense mutation of the SFTPC gene (g.1286T>C) resulting in a substitution of threonine for isoleucine (173T) in the C-terminal propeptide. At the ultrastructural level, abnormal transport vesicles were detected in type-II pneumocytes. Fusion proteins, consisting of enhanced green fluorescent protein and wild-type or mutant proSP-C, were used to evaluate protein trafficking in vitro. In contrast to wild-type proSP-C, mutant proSP-C was routed to early endosomes when transfected into A549 epithelial cells. In contrast to previously reported mutations, the 173T represents a new class of surfactant protein C gene mutations, which is marked by a distinct trafficking, processing, palmitoylation, and secretion of the mutant and wild-type surfactant protein C. This report heralds the emerging diversity of phenotypes associated with the expression of mutant surfactant C proteins.

Base Sequence↗

Comparison of exhaled breath condensate from nasal and oral collection.

BACKGROUND: Analysis of exhaled breath condensate may provide new insights into pulmonary inflammatory processes. A new collection method via suction of nasally expired air especially suitable for younger children was presented recently. Here we compare this nasal suction method with the more widely used oral collection method regarding the amount of condensate collected as well as the concentrations of hydrogen peroxide (H2O2), nitrite and nitrate, respectively. MATERIALS AND METHODS: Exhaled breath condensate was collected from 11 healthy adults for the measurements of the amount of condensate and H2O2 concentration and from 17 children for the measurements of nitrite and nitrate. Condensate was collected via nasal suction and oral exhalation from each subject. RESULTS: Overall, no differences between both collection methods were found for all variables assessed except the concentration of H2O2, whereas the latter closely correlated (Spearman r = 0.88, p = 0.0007) between both collection methods. No correlation was found for the amount of condensate collected and the concentration of nitrite and nitrate. The Bland-Altman limits of agreement scattered over a wide range with clinical impact, proving significant differences between both collection methods for all variables measured. CONCLUSIONS: Although nasal and oral collection method proved again suitable for the collection of exhaled breath condensate, the variability of the results obtained precludes the interchangeable usage of the inflammatory markers assessed here.

Adult↗