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Biomedical subjects

T Chinet

Publications and source records attributed to T Chinet.

At least 37 records · Page 2Linked to original sources

[CFTR protein and molecular mechanisms of pulmonary involvement in cystic fibrosis].

Cystic fibrosis is an often fatal hereditary disease mainly affecting the epithelium, especially in the airways, the pancreatic ducts, the sudoriparous glands and bile ducts. The pathophysiologic mechanism is complex but involves abnormal epithelial ion transport which controls water movement through the epithelial layers. In the bronchi, there is deficient secretion of chloride activated by cyclic AMP and exaggerated sodium absorption which contributes to dehydrated bronchial secretion and impaired mucociliary clearance. The cystic fibrosis gene was cloned in 1989. It encodes for a protein called cystic fibrosis transmembrane conductance regulator or CFTR. This protein belongs to a group of proteins which bind ATP and are implicated in ion transportation across membranes. The CFTR protein has several functions and is involved in the cyclic AMP regulation of the chloride channel. More than 500 mutations of the gene encoding for the CFTR protein have been described in cystic fibrosis. The most frequent mutation is a phenylalanine deletion in position 508 or delta F508 which occurs in approximately 70% of the mutations observed in France. Progress in our understanding of the molecular and functional consequences of the different mutations has been rapid, but the correlations between each mutation and the clinical phenotypes observed have not been fruitful. Many advances in the last years using murine models of cystic fibrosis have been developed and clinical trials using genetic therapy are now being conducted.

Biological Transport, Active↗

Effects of smoking on bronchial clearance of technetium-99m-DTPA and indium-113m-DTPA.

UNLABELLED: In asymptomatic smokers, epithelial permeability in the distal lung regions is increased. To date, the effect of smoking on the epithelial permeability in proximal lung regions is still debated. The measurement of bronchial clearance of inhaled radiolabeled diethylene-triaminepentaacetic acid (BC-DTPA) can be used to assess epithelial permeability of proximal bronchi, but there are two potential limitations to this method: in vivo breakdown of 99mTc-DTPA in smokers and mucociliary transport of DTPA. METHODS: Eight nonsmokers and eight asymptomatic smokers were studied. We used a spinning disk system to generate an aerosol of large particles of 99mTc-DTPA or 113mIn-DTPA (MMAD 6.3 microns). To measure the bronchial clearance of 99mTc-DTPA and 113mIn-DTPA, we analyzed the perihilar regions of the lung. To determine the contribution of mucociliary transport, we measured the activity over a tracheal region of interest (ROI) in eight nonsmokers. RESULTS: Technetium-99m-DTPA bronchial clearance did not differ in smokers (1.16 +/- 0.54%/min; mean +/- s.d.) or nonsmokers (1.29 +/- 0.51%/min; ns). The 113mIn-DTPA bronchial clearances in nonsmokers (1.24 +/- 0.51%/min) and in smokers (1.01 +/- 0.66%/min) were similar to the 99mTc-DTPA bronchial clearances (ns). In the tracheal ROI, we found no increase in activity. CONCLUSION: In smokers, BC-DTPA was not increased compared to nonsmokers. In contrast to distal lung regions, there was no evidence of breakdown of the 99mTc-DTPA complex in the proximal regions of smokers' lungs. Mucociliary clearance does not significantly contribute to BC-DTPA.

Adult↗

Mechanisms of increased epithelial lung clearance of DTPA in diffuse fibrosing alveolitis.

The aim of this study was to elucidate possible mechanisms of increased epithelial lung clearance in diffuse fibrosing alveolitis (DFA). We investigated the relationships between epithelial lung clearance as assessed by the clearance of aerosolized 99mTc-diethylene-triamine-penta-acetic acid (RC-DTPA), luminal alveolitis as assessed by bronchoalveolar lavage, and pulmonary function, in 30 nonsmokers with DFA. In 14 of these patients, RC-DTPA and lung function were determined before and during therapy with prednisolone (0.5 mg.kg-1 daily). RC-DTPA was higher in patients with DFA (4.45 +/- 2.50%.min-1) than in normal subjects (1.18 +/- 0.31%.min-1). RC-DTPA did not correlate with the number of alveolar neutrophils, but correlated positively with the number of alveolar lymphocytes, and negatively with vital capacity (VC). RC-DTPA decreased from 6.1 +/- 2.8 to 3.8 +/- 1.9%.min-1 with prednisolone. RC-DTPA before prednisolone correlated positively with the prednisolone-associated improvement in VC. We conclude that in patient with DFA, RC-DTPA is increased, and decreases but does not return to normal with corticosteroid therapy. Our data suggest that in DFA the increase in RC-DTPA could be related to the recoil-induced stretch of the respiratory epithelium and to alveolar lymphocytic inflammation.

Aerosols↗

Inhaled therapy in asthma: metered-dose inhaler experience.

Metered-dose inhalers are the most widely-used mode of administration of bronchodilators and anti-inflammatory agents in the treatment of asthma. However, their use is complex and about 50% of the patients do not use their metered-dose inhaler(s) properly. The most frequent errors include inadequate coordination between actuation and inspiration, rapid inspiration, absence of breathhold, and actuation of the aerosol on more than one occasion during the same inspiration. The misuse of metered-dose inhalers results in a loss of efficacy of the drug. It is, therefore, recommended that the patient be carefully trained in the proper use of metered-dose inhalers at the time of prescription. If a patient is unable to use a metered-dose inhaler properly, despite education, it may be advisable to employ a different inhalation system.

Aerosols↗

Bronchial clearance of DTPA is increased in acute asthma but not in chronic asthma.

To investigate bronchial permeability in asthma, we measured the bronchial clearance of 113mIn-DTPA in seven asthmatics during and after an acute attack of asthma, seven asthmatics with chronic airflow limitation, and seven asthmatics without airflow limitation but with bronchial hyperresponsiveness to methacholine. We compared these results with those from seven normal subjects, seven patients with chronic bronchitis and bronchial infection, and seven patients with emphysema. An aerosol of 113mIn-DTPA was produced with a spinning disc to ensure a predominantly bronchial deposition of inhaled particles (6.3 microns MMAD). Radioactivity over the chest was recorded with a gamma-camera for 10 min after the subject inhaled the aerosol. Central regions of interest were selected, and the logarithm of the radioactivity was plotted against time; bronchial clearance of 113mIn-DTPA was calculated as the negative slope of the regression line. Clearance was substantially higher in asthmatics during their acute attacks than in all other groups (p less than 0.0001), and it decreased toward normal levels after recovery from the acute episode. The bronchial clearance of 113mIn-DTPA in all other groups did not differ from normal. We conclude that the bronchial clearance of 113mIn-DTPA is increased in asthmatics during attacks of asthma but in the stable state is not related either to bronchial hyperresponsiveness or to airflow limitation. Our findings are best explained by an increase in permeability of the bronchial mucosa of asthmatics during acute attacks.

Acute Disease↗

[Ion movement disorders in cystic fibrosis].

The most important of ion transport abnormalities is a reduced permeability to chlorine of certain epithelial cells, notably those of the sweat glands and bronchi. This abnormality is due to a defective regulation of the chlorine channels located in the apical membrane of these cells, and more precisely to the lack of activation of these channels by protein kinases A and C. Other epithelial ion transports are affected, but the mechanism of these disturbances is imperfectly known. In the airways, for instance, a decrease of chlorine secretion and an increase of sodium absorption concur to dehydrate the bronchial secretions and thus produce the respiratory manifestations of cystic fibrosis.

Biological Transport↗

Effects of inflammation and fibrosis on pulmonary function in diffuse lung fibrosis.

To investigate the relation between lung function and inflammation and fibrosis in patients with diffuse lung fibrosis, a study was made of untreated patients without appreciable airway obstruction (14 patients with cryptogenic fibrosing alveolitis and seven with pneumoconiosis). Quantitative assessment of inflammatory infiltration and fibrosis was carried out on open lung biopsy specimens and compared with lung volumes, carbon monoxide transfer factor (TLCO), TLCO corrected for alveolar volume (TLCO/VA), and arterial blood gases at rest and during exercise. The degree of fibrosis and the degree of cellular infiltration were positively correlated. Lung volumes and TLCO were correlated with the grades of fibrosis and cellular infiltration of alveoli; arterial blood gases during exercise tended to correlate with both fibrosis and infiltration (p less than 0.06). In contrast, morphological data were not correlated with gas exchange at rest or with TLCO/VA. It is concluded that, in untreated patients with diffuse lung fibrosis, lung volumes, TLCO, and arterial blood gases during exercise reflect the lung lesions, and that the pulmonary function tests used cannot discriminate between fibrosis and infiltration of the lung by inflammatory cells.

Adult↗

Lung function declines in patients with pulmonary sarcoidosis and increased respiratory epithelial permeability to 99mTc-DTPA.

Respiratory epithelial clearance of 99mTc-DTPA (RC-Tc-DTPA) and pulmonary function tests (PFT) were determined at intervals of 6 or 12 months in 37 untreated, nonsmoking patients with sarcoidosis over a period of 6 to 36 months. PFT included the measurements of total lung capacity (TLC), vital capacity (VC), FEV1, and diffusing capacity for carbon monoxide. No difference was found between the respiratory clearance of 113mIn-DTPA (2.25 +/- 1.00%/min) and RC-Tc-DTPA (2.29 +/- 1.11%/min) in eight patients with pulmonary sarcoidosis. Pulmonary function decreased 15% or more in at least 2 function tests during 11 follow-up periods, but it remained stable during 47 follow-up periods. In patients whose lung function deteriorated, RC-Tc-DTPA increased to 3.51 +/- 1.55%/min; in contrast, in patients whose lung function remained stable, regardless of the initial values, RC-Tc-DTPA was normal (1.00 +/- 0.50%/min; p less than 0.001). In eight patients who were treated with corticosteroids, RC-Tc-DTPA decreased from 3.48 +/- 1.31%/min to 1.56 +/- 0.64%/min (p less than 0.001), and PFT improved. We conclude that in nonsmokers with pulmonary sarcoidosis, increased RC-Tc-DTPA is not related to dissociation of 99mTc from DTPA, RC-Tc-DTPA is increased when pulmonary function decreases, and, when increased, RC-Tc-DTPA decreases with corticosteroid therapy.

Adult↗

[The peak flow meter].

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Forced Expiratory Flow Rates↗

Comparison of the dose-response curves obtained by forced oscillation and plethysmography during carbachol inhalation.

We compared the cumulative dose-response curves obtained during carbachol inhalation by simultaneous measurements of airway specific conductance (sGaw) and respiratory conductance, in 23 subjects with or without bronchial hyperresponsiveness. The sGaw was measured by a body plethysmograph, whilst the random noise forced oscillation technique (FOT) was used to determine respiratory conductance. The sGaw was compared to respiratory conductance extrapolated to zero frequency (Grs0). Bronchial sensitivity was assessed by the threshold dose of carbachol (TD) that induced a decrease in sGaw and Grs0 of twice the baseline coefficient of variation. Bronchial responsiveness was assessed by the slopes (S) of the individual dose-response curves. The TD and S values obtained by FOT and by plethysmography were closely correlated (p less than 0.001). The carbachol doses inducing a 50% reduction in sGaw were equivalent to those causing a 42% reduction in Grs0 (r = 0.90; p less than 0.001). During bronchial challenge testing, FOT provides comparable information in terms of bronchial sensitivity and responsiveness to that supplied by plethysmography.

Adult↗