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Biomedical subjects

G Bellon

Publications and source records attributed to G Bellon.

At least 73 records · Page 4Linked to original sources

[Male infertility caused by bilateral agenesis of the vas deferens: a new clinical form of cystic fibrosis?].

Congenital bilateral absence of vas deferens causes male excretory infertility and represents 1 to 2% of male infertility. Because of a genotypic similarity with cystic fibrosis, the possible in vitro fertilization with epididymal sperm requires careful genetic counselling. We studied genotype, sweat chloride concentration, respiratory function tests, sinus abnormalities, pancreatic and hepatic functions in 22 subjects with congenital bilateral absence of vas deferens. Among them, four were compound heterozygotus, all of them with the R117H mutation. Ten had a positive sweat test, one of them also being compound heterozygotus. Congenital bilateral absence of vas deferens and double mutation or positive sweat test led to high probable cystic fibrosis diagnosis in 13 subjects. Six subjects were heterozygotus for one cystic fibrosis mutation, criterium which is not sufficient for cystic fibrosis diagnosis; five of them had sinus abnormalities, present in 11 of the 22 subjects. Only three patients had no mutation nor sweat chloride abnormalities. This work confirms the high frequency of cystic fibrosis mutations in males with congenital bilateral absence of vas deferens, with a higher frequency of positive sweat test than in other publications, and a high frequency of sinus abnormalities. This monosymptomatic phenotype of cystic fibrosis suggests new hypotheses for a relationship between genotype and phenotype.

Adult↗

All-trans-retinoic acid enhances collagen gene expression in irradiated and non-irradiated hairless mouse skin.

All-trans-retinoic acid (t-RA) can repair some of the tissue damage caused by chronic exposure of skin to UV radiation. In the present study, we have investigated its effect on collagen and collagenase gene expression in hairless mouse skin. Hairless mice (SKH-hr 1) were irradiated dorsally with increasing doses of UVB radiation (total, 4.8 J cm-2) for 10 weeks. The animals were then topically treated with 0.05% t-RA dissolved in a vehicle or with the vehicle alone three times a week for up to 10 weeks. Non-irradiated animals underwent the same treatment. In our experimental conditions, UVB irradiation alone induced no changes in type I, III and VI collagen mRNA levels in dorsal and ventral skin. The mRNA level of collagenase I was also unchanged. Topically applied t-RA increased the steady state levels of type I and III collagen mRNA in irradiated and non-irradiated dorsal skin. The mean increase was about 2.2- and 2.7-fold in non-irradiated skin and 2.4- and 2.5-fold in irradiated skin for type I and III collagen mRNA respectively. The increase in irradiated skin was partly due to the vehicle alone, which exerted a stimulating effect on the steady state levels of alpha 1(I) and alpha 1(III) mRNA. The mRNA level of type VI collagen was also significantly increased by t-RA, but only in irradiated skin. The mRNA level of collagenase was significantly decreased only in irradiated t-RA-treated skin. In addition, t-RA exerted a systemic effect because the mRNA levels of collagen were enhanced by factors of 1.9 and 2.5 for alpha 1(I) and 2.0 and 2.0 for alpha 1(III) in the ventral skin of irradiated and non-irradiated animals respectively. This study leads to the conclusion that topical t-RA exerts directly and/or indirect effects on the expression of collagen genes in irradiated and non-irradiated hairless mouse skin.

Animals↗

Regulation of Staphylococcus aureus capsular polysaccharide type 5: CO2 inhibition in vitro and in vivo.

Staphylococcus aureus capsular polysaccharide type 5 (CP5) expression was investigated in lung tissue and nasal polyps of two cystic fibrosis (CF) patients, in rats, and in vitro using ELISA and IFA. In CF tissues, S. aureus expressed protein A and teichoic acid but only 1%-5% of cells expressed CP5. When rats were challenged with CP5-positive S. aureus in the granuloma pouch model, only 1%-5% of CP5-positive cells were detectable in pouch exudates. CF and pouch isolates, however, reexpressed CP5 (70%-90% of cells) when grown in vitro with air. Addition of > or = 1% CO2 to air or to O2/N2 gas mixtures reduced CP5 expression significantly (P < .001) in a dose-dependent manner (6%-1% CP5-positive cells). The results show that S. aureus does not produce CP5 in CF airways and in rat granuloma pouches and that CO2 is an environmental signal that regulates CP5 expression.

Animals↗

Body composition and physical performance in children after renal transplantation.

Body composition using standard anthropometric methods and dual-energy X-ray absorptiometry (DEXA) was determined in a cross-sectional study among 26 pediatric renal transplant recipients. At the same time, spiroergometry exam, pulmonary function tests, dynamometry and tremometry exams were performed in all patients. Fat body mass obtained by DEXA correlated inversely with maximal physical load during spiroergometry exam (r2 = 0.51, p = 0.0001). The study demonstrates good tolerance of increased physical load in children after renal transplantation. An inverse relationship was found between fat body mass and physical performance. Exercise training programs for children after renal transplantation are therefore suggested.

Absorptiometry, Photon↗

[Regulation of Staphylococcus aureus capsular polysaccharide type 5: in vitro and in vivo inhibition by CO2].

Staphylococcus aureus capsular polysaccharide type 5 (CP5) expression was investigated in lung tissue and nasal polyps of two cystic fibrosis (CF) patients, in rats and in vitro using ELISA and immunofluorescence. In CF tissues, S. aureus expressed protein A and teichoic acid but only 1-5% of cells expressed CP5. When rats were challenged with CP5-positive S. aureus in the granuloma pouch model, only 1-5% CP5-positive cells were detectable in pouch exsudates. CF and pouch isolates, however, re-expressed CP5 (70-90% of cells) when grown in vitro with air. Addition of 1% CO2 or more to air or to O2/N2 gas mixtures reduced CP5 expression significantly (p < 0.001) in a dose-dependent manner (1-6% CP5-positive cells). The results show that S. aureus does not produce CP5 in CF airways and in rat granuloma pouches and that CO2 is an environmental signal which regulates CP5 expression.

Adult↗

In vivo modulation of annexins I, II and V expression by thyroxine and methylthiouracil.

Regulation of annexin concentration and localization were investigated in thyroid tissues of hypothyroid [methylthiouracil (MeSur) treatment], euthyroid (control) and hyperthyroid [thyroxine (T4) treatment] rats. A low level of circulating thyroid hormones induces a decrease of total thyroid calcium-binding protein concentration when compared with the concentration in unstimulated animals. Conversely, concentrations of annexins I, II and V increase. The accumulation of these proteins in two subcellular compartments (cytosolic and particulate fractions) can be reversed by addition of thyroid hormones. The finding of a specific increase in annexins concentration in thyroid-hormone-deficient rats, with a general decrease of the total calcium-binding protein content points to a very important role of these proteins in the cells. Furthermore, hyperthyroidisnt gives opposite results. To investigate the transduction pathway of annexins I-, II- and V-induced biosynthesis by thyroid hormones in thyroid glands, we used cultured pig thyroid cells as in vitro model system. In previous work [16], we have shown that annexin concentrations and localization are under TSH control via the adenylate cyclase pathway. In the presence of MeSur (in the culture medium), the protein-binding iodine remains low, indicative of weak thyroid hormone synthesis (data not shown) and that the annexins content is unchanged. These results suggest that, in thyroid tissue, an indirect mechanism links thyroid hormones to annexin expressions via the TSH feed-back loop, and excludes autocrine regulation.

Animals↗

Gelatinase B is involved in the in vitro wound repair of human respiratory epithelium.

Following epithelial injury, extracellular matrix undergoes imposing remodelings. We examined the contribution of matrix metalloproteinases, gelatinases A and B, in an in vitro wound repair model of human respiratory epithelium. Confluent human surface respiratory epithelial (HSRE) cells cultured from dissociated surface cells of human nasal polyps were chemically injured. Over the next 3 to 5 days, cells migrated onto the injured area to repair the circular wound. Repair kinetics of these wounds was monitored until wound closure occurred. Gelatinolytic activities were analysed in culture supernates and in cell protein extracts derived from repairing migratory and non repairing stationary cells. Small amounts of gelatinase A were expressed by HSRE cells, and variations of this gelatinase remained very weak for the time of the wound repair. In contrast, gelatinase B was upregulated during the wound repair process, with a maximum peak observed at wound closure. A marked gelatinase B activation occurred only in cells involved in the repair process. Gelatinase B was localized in some migratory basal cells, recognized by an anti-cytokeratin 14 antibody and located around the wound. We could not detect any gelatinase A in repairing or in stationary HSRE cells. Addition of the 6-6B monoclonal antibody, known to inhibit gelatinase B activation, to the culture medium during the repair process resulted in a dose-dependent decrease of the wound repair speed. These results suggest that gelatinase B, produced by epithelial cells, actively contributes to the wound repair process of the respiratory epithelium.

Adult↗

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↗

[Aerosol administration of a replication defective recombinant adenovirus expressing normal human cDNA-CFTR in the respiratory tractus in patients with cystic fibrosis].

At present it is conceivable to think that gene therapy represents a way to treat or even prevent the respiratory manifestations of cystic fibrosis. Consistent to such a concept, there is sufficient evidence that Ad-CFTR, a recombinant replication-deficient adenovirus expressing the human cystic fibrosis transmembrane conductance regulator cDNA, can vectorize the expression of a functional CFTR (cystic fibrosis transmembrane conductance regulator) to the nasal and airway epithelia. The clinical protocol was designed to assess the safety of single escalating doses of a replication defective adenovirus expressing the cystic fibrosis transmembrane conductance regulator gene (Ad-CFTR) when administered to the tracheobronchial portion of the airways and whether biological efficacy of CFTR delivery could be demonstrated. Six cystic fibrosis patients received nasal instillation and subsequent aerosol (Optineb, Air Liquide, Paris, France) administration of Ad-CFTR the following day. Doses (pfu) applied to the nose were 10(5) (patients SG and PB), 10(7) (patients FP and EP) and 4 x 10(8) (patients DS and FG), while aerosolised doses were 10(7) (patients SG and PB), 10(8) (patients FP and EP) and 5.4 x 10(8) (patients DS and FG), respectively. No acute toxic effects, no increase in the titer of anti-adenovirus antibodies and no spreading or shedding of Ad-CFTR were detected. In one patient Ad-CFTR DNA was found in the urine and blood two days after aerosolisation. Ad-CFTR DNA was detected in nasal and bronchial brush samples, in BAL, in saliva and tonsils 21, 8, 14 and 4 days post virus administration, respectively. Ad-CFTR mRNA (RT-PCR on bronchial cells) and CFTR protein (immunochemistry on nasal and bronchial cells) were detected up to 14 days following Ad-CFTR administration. These results show that the nebulisation of Ad-CFTR is a possible approach for treating the respiratory manifestation of cystic fibrosis.

Adenoviridae↗

[Intrabronchial inhaled seed migration. Value of ultrasonography in the diagnosis of pleural-cutaneous fistula].

We report two cases of inhalation of seeds in infants aged 11 months and two years. In the first the syndrome of inhalation had not been apreciated. The seed blocked the left bronchus, provoking an obstructive emphysema with superinfection. The outcome was statisfactory after removal by bronchoscopy. In the second case although the aspiration of the particle was appreciated the endoscopy was performed too late to prevent the migration of the seed. After having produced a pneumonia it crossed the pleura and gave a subcutaneous swelling. This migration could in part be followed by ultrasound which enabled the appropriate moment for surgical exploration to be defined. These two cases show the two possible evolutions when the inhalation of a seed occurs and the contribution that can be made by ultrasound.

Bronchi↗

Glutamine increases collagen gene transcription in cultured human fibroblasts.

We have previously shown that glutamine stimulates the synthesis of collagen in human dermal confluent fibroblast cultures (Bellon, G. et al. [1987] Biochim. Biophys. Acta, 930, 39-47). In this paper, we examine the effects of glutamine on collagen gene expression. A dose-dependent effect of glutamine on collagen synthesis was demonstrated from 0 to 0.25 mM followed by a plateau up to 10 mM glutamine. Depending on the cell population, collagen synthesis was increased by 1.3-to 2.3-fold. The mean increase in collagen and non-collagen protein synthesis was 63% and 18% respectively. Steady-state levels of alpha 1(I) and alpha 1(III) mRNAs, were measured by hybridizing total RNA to specific cDNA probes at high stringency. Glutamine increased the steady-state level of collagen alpha 1(I) and alpha 1(III) mRNAs in a dose-dependent manner. At 0.15 mM glutamine, collagen mRNAs were increased by 1.7-and 2.3-fold respectively. Nuclear run-off experiments at this concentration of glutamine indicated that the transcriptional activity was increased by 3.4-fold for the pro alpha 1(I) collagen gene. The effect of glutamine on gene transcription was also supported by the measurement of pro alpha 1(I) collagen mRNA half-life since glutamine did not affect its stability. Protein synthesis seemed to be required for the glutamine-dependent induction of collagen gene expression since cycloheximide suppressed the activation. The effect of glutamine appeared specific because analogues and/or derivatives of glutamine, such as acivicin, 6-diazo-5-oxo-L-norleucine, homoglutamine, ammonium chloride and glutamate did not replace glutamine. The influence of amino acid transport systems through plasma membrane was assessed by the use of 2(methylamino)-isobutyric acid and beta 2-aminobicyclo-(2.2.1)-heptane-2-carboxylic acid. The glutamine-dependent induction of collagen gene expression was found to be independent of transport system A but dependent on transport system L whose inhibition induced a decrease in pro alpha 1(I) collagen gene transcription by an unknown mechanism. Thus, glutamine, at physiological concentrations, indirectly regulates collagen gene expression.

Amino Acids↗

Cleavage of lymphocyte surface antigens CD2, CD4, and CD8 by polymorphonuclear leukocyte elastase and cathepsin G in patients with cystic fibrosis.

Polymorphonuclear leukocytes (PMN) accumulating in airways of patients with cystic fibrosis (CF) as a response to chronic endobronchial bacterial lung infection, release lysosomal serine proteinases such as PMN-elastase at concentrations of approximately 0.5 microM to 5 microM into the airway lumen. Immunohistology of CF lung material and fluorescence activated cell sorter analysis of sequential CF bronchoalveolar lavages demonstrated loss of the CD4 and CD8 Ag on CD3+ T lymphocytes in sputum-filled airways. In 10 CF sputum samples 1.0%, 19.1%, and 15.7% of all CD3+ T lymphocytes expressed CD4, CD8, and CD2, respectively. Incubation of CF sputum supernatant fluids with peripheral blood T lymphocytes resulted in total reduction of CD4 and CD8 but not CD2. Addition of alpha 1-proteinase inhibitor abolished surface Ag cleavage completely. Purified PMN-elastase and cathepsin G cleaved CD2, CD4, and CD8 on peripheral blood T lymphocytes at proteinase concentrations of 0.83 to 8.3 microM in a dose-dependent manner. Cleaved CD4 and CD8 were reexpressed on the surface of T lymphocytes after 24 h in the absence of PMN-elastase. Incubation of a CD4+ T cell clone with PMN-elastase lead to a significant reduction of cytotoxicity toward target cells and significantly reduced IL-2 and IL-4 production. The results suggest a temporary functional impairment of T lymphocytes in foci of high inflammation characterized by stimulated PMN, which may lower tissue destruction.

Adult↗

Chronic UVB- and all-trans retinoic-acid-induced qualitative and quantitative changes in hairless mouse skin.

Histochemical and ultrastructural studies have already demonstrated that chronic exposure to UV radiation induces profound alterations in all structural elements of the skin and that topical all-trans retinoic acid (tRA) can substantially correct much of the tissue damage. However, previous biochemical studies on dermal components of the extracellular matrix have led to contradictory results, particularly with regard to the effect of chronic UV exposure. The aim of our study was to investigate changes in collagen content and other dermal modifications induced by tRA in irradiated and non-irradiated hairless mouse skin. Hairless mice were exposed to increasing doses of UVB for 10 weeks (the cumulative total dose was 4.6 J cm-2). After the UV irradiation period the animals were treated with 0.05% tRA or with ethanol-polyethylene glycol vehicle alone three times a week for up to 10 weeks. Non-irradiated animals underwent the same treatments. The main clinical and histological changes induced by UVB exposure were erythema, wrinkling, keratosis and epidermal thickening. Following UVB exposure, tRA treatment did not improve the clinical aspect but increased the width of the dermal repair zone. Fibronectin, laminin and type I and VI collagens were detected by indirect immunofluorescence techniques in this zone. Type I and III collagens were quantitated in skin fragments after cyanogen bromide digestion and polyacrylamide gel electrophoresis. Under our experimental conditions, UVB irradiation alone induced neither changes in total collagen nor in type I and III collagen levels. tRA treatment of irradiated skin significantly increased both type I and III collagen levels by factors of 1.33 and 1.88 respectively. The ratio of type III to types I + III increased significantly. Topical tRA also increased collagen type levels in non-irradiated hairless mouse skin. Type I collagen increased proportionally to type III. This study leads to the conclusion that topical tRA exerts direct or indirect effects on collagen metabolism in irradiated as well as non-irradiated hairless mouse skin.

Animals↗

The alpha 3 chain of type IV collagen prevents activation of human polymorphonuclear leukocytes.

Our initial observation that type I collagen activates polymorphonuclear leukocytes (PMN) prompted the testing of the activating potential of type IV collagen. It was noted, however, that type IV collagen isolated from bovine lens capsule did not activate PMN but rather prevented their stimulation by N-formylmethionyl-leucyl-phenylalanine, phorbol myristate acetate, or type I collagen. This observation led to the present study, which demonstrates that the inhibitory effect of lens capsule type IV collagen resides in the noncollagenous (NC1) domain of the alpha 3 chain and specifically in the region comprising residues 185-203 of the NC1 domain of both the human and bovine molecules. Synthetic peptides from the same region of the NC1 domains of the alpha 1, alpha 2, alpha 4, and alpha 5 chains did not possess the inhibitory effect seen with the alpha 3 chain. The sequence S-N-S (residues 189-191) is unique to the peptide of the alpha 3 chain, and substitution of either serine with alanine abolishes the inhibition. Type IV collagen isolated from the mouse Engelbreth-Holm-Swarm (EHS) tumor, a molecule that lacks the alpha 3 chain, did not prevent PMN activation but instead stimulated the secretion of elastase and type IV collagenase. Incubation of PMN with intact lens capsule type IV collagen or a peptide comprising residues 185-203 of the alpha 3 (IV) chain resulted in a 3-fold increase of intracellular cAMP, whereas, Ca2+ levels remained unchanged. Incubating PMN with forskolin or with dibutyryl-cAMP resulted in the inhibition of O2- production and degranulation by PMN, thus mimicking the effects of type IV collagen and the alpha 3 (IV) 185-203 peptide. The data suggest that type IV collagen, through its alpha 3 chain, down-regulates PMN activation and thus decreases the potential for damage as these cells traverse the capillary wall. Our in vitro experiments suggest that the higher the content of the alpha 3 (IV) chain is in a basement membrane, the wider would be its capacity for self-protection.

8-Bromo Cyclic Adenosine Monophosphate↗