6 resultados para INTERSTITIUM

em Université de Lausanne, Switzerland


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Introduction: Les complications dues à la cocaïne inhalée se¦rencontrent de plus en plus fréquemment dans les services d'urgence¦et dans la pratique des médecins de premier recours. La survenue de¦complications pulmonaires aiguës de type pneumothorax est¦méconnue.¦Vignette clinique: Un patient de 25 ans consulte aux urgences en¦raison d'une gêne pharyngée, une odynodysphagie et une dysphonie¦en progression depuis 12 h. Il avoue une prise de cocaïne sniffée à 5¦reprises dans les 6 heures précédant l'apparition des symptômes. Des¦crépitations sous-cutanées sont mise en évidence à la palpation du¦creux sus-claviculaire droit, remontant jusqu'à la base du cou. La¦radiographie thoracique confirme un emphysème sous-cutané des¦creux sus-claviculaires (fig. 1). Le patient bénéficie d'une¦oxygénothérapie et d'une observation, avec une évolution¦spontanément favorable.¦Discussion: Après une prise de cocaïne par inhalation profonde, des¦manoeuvres de Valsalva intenses répétées contre glotte fermée sont¦pratiquées, afin d'augmenter la quantité de substance absorbée et donc¦ses effets. Ceci engendre un gradient de pression entre les alvéoles et¦l'interstitium pulmonaire, entraînant une augmentation de la pression¦intra-alvéolaire, puis une rupture des alvéoles avec libération d'air à¦travers les tissus péri-bronchiques dans le médiastin et les tissus¦sous cutanés. En cas de rupture dans la cavité pleurale, il en résulte¦un pneumothorax. Un tabagisme actif est souvent associé, laissant¦suspecter un effet favorisant du tabac sur la survenue des lésions¦pulmonaires. Un traitement conservateur associant antalgie et¦oxygénothérapie s'avère en général suffisant. En présence d'une¦augmentation de la taille du pneumothorax ou de signes de mise¦sous tension, la pose d'un drain thoracique est indiquée. L'arrêt de la¦consommation de cocaïne et du tabac doit être encouragé.¦Conclusion: Un emphysème sous-cutané ou un pneumothorax¦spontané chez un jeune patient doivent faire suspecter une éventuelle¦consommation de cocaïne. Les questions concernant la prise de¦cocaïne ou d'autres substances (alcool, amphétamines, etc.), ainsi¦que son mode d'utilisation et sa fréquence, doivent être formulées¦clairement et réitérées à plusieurs reprises. Le risque de pneumothorax¦existe également lors de consommation occasionnelle et peut entraîner¦des complications pulmonaires importantes.

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We describe an angiotensin (Ang) II-containing innervation of the kidney. Cryosections of rat, pig and human kidneys were investigated for the presence of Ang II-containing nerve fibers using a mouse monoclonal antibody against Ang II (4B3). Co-staining was performed with antibodies against synaptophysin, tyrosine 3-hydroxylase, and dopamine beta-hydroxylase to detect catecholaminergic efferent fibers and against calcitonin gene-related peptide to detect sensory fibers. Tagged secondary antibodies and confocal light or laser scanning microscopy were used for immunofluorescence detection. Ang II-containing nerve fibers were densely present in the renal pelvis, the subepithelial layer of the urothelium, the arterial nervous plexus, and the peritubular interstitium of the cortex and outer medulla. They were infrequent in central veins and the renal capsule and absent within glomeruli and the renal papilla. Ang II-positive fibers represented phenotypic subgroups of catecholaminergic postganglionic or sensory fibers with different morphology and intrarenal distribution compared to their Ang II-negative counterparts. The Ang II-positive postganglionic fibers were thicker, produced typically fusiform varicosities and preferentially innervated the outer medulla and periglomerular arterioles. Ang II-negative sensory fibers were highly varicose, prevailing in the pelvis and scarce in the renal periphery compared to the rarely varicose Ang II-positive fibers. Neurons within renal microganglia displayed angiotensinergic, cate-cholaminergic, or combined phenotypes. Our results suggest that autonomic fibers may be an independent source of intrarenal Ang II acting as a neuropeptide co-transmitter or neuromodulator. The angiotensinergic renal innervation may play a distinct role in the neuronal control of renal sodium reabsorption, vasomotion and renin secretion.

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Directional guidance of cells via gradients of chemokines is considered crucial for embryonic development, cancer dissemination, and immune responses. Nevertheless, the concept still lacks direct experimental confirmation in vivo. Here, we identify endogenous gradients of the chemokine CCL21 within mouse skin and show that they guide dendritic cells toward lymphatic vessels. Quantitative imaging reveals depots of CCL21 within lymphatic endothelial cells and steeply decaying gradients within the perilymphatic interstitium. These gradients match the migratory patterns of the dendritic cells, which directionally approach vessels from a distance of up to 90-micrometers. Interstitial CCL21 is immobilized to heparan sulfates, and its experimental delocalization or swamping the endogenous gradients abolishes directed migration. These findings functionally establish the concept of haptotaxis, directed migration along immobilized gradients, in tissues.

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Fabry disease (FD) is an X-linked lysosomal storage disorder caused by deficiency of alpha-galactosidase A, which leads to storage of sphingolipids in virtually all human cells and consequently to organ dysfunction. Pulmonary involvement is still debated. But, obstructive lung disease is up to ten times more prevalent in patients with FD compared to general public. Also, an accelerated decline in forced expiratory volume in one second (FEV1) over time was observed in these patients. Lysosomal storage of glycosphingolipids is considered leading to small airway disease via hyperplasia of the bronchiolar smooth muscle cells. Larger airways may become involved with ongoing disease process. There is no evidence for involvement of the lung interstitium in FD. The effect of enzyme replacement therapy on respiratory involvement remains to be determined in large, prospective controlled trials.

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PURPOSE OF REVIEW: The kidney plays an essential role in maintaining sodium and water balance, thereby controlling the volume and osmolarity of the extracellular body fluids, the blood volume and the blood pressure. The final adjustment of sodium and water reabsorption in the kidney takes place in cells of the distal part of the nephron in which a set of apical and basolateral transporters participate in vectorial sodium and water transport from the tubular lumen to the interstitium and, finally, to the general circulation. According to a current model, the activity and/or cell-surface expression of these transporters is/are under the control of a gene network composed of the hormonally regulated, as well as constitutively expressed, genes. It is proposed that this gene network may include new candidate genes for salt- and water-losing syndromes and for salt-sensitive hypertension. A new generation of functional genomics techniques have recently been applied to the characterization of this gene network. The purpose of this review is to summarize these studies and to discuss the potential of the different techniques for characterization of the renal transcriptome. RECENT FINDINGS: Recently, DNA microarrays and serial analysis of gene expression have been applied to characterize the kidney transcriptome in different in-vivo and in-vitro models. In these studies, a set of new interesting genes potentially involved in the regulation of sodium and water reabsorption by the kidney have been identified and are currently under detailed investigation. SUMMARY: Characterization of the kidney transcriptome is greatly expanding our knowledge of the gene networks involved in multiple kidney functions, including the maintenance of sodium and water homeostasis.