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A Ritzel

Publications and source records attributed to A Ritzel.

3 recordsLinked to original sources

Decrease of platelet-endothelial cell adhesion molecule 1-gene-expression in inflammatory cells and in endothelial cells in the rat liver following CCl(4)-administration and in vitro after treatment with TNFalpha.

UNLABELLED: Platelet-endothelial cell adhesion molecule (PECAM-1), a member of the Ig superfamily is strongly expressed at endothelial cell-cell junctions, on most leukocytes and on monocytes. PECAM-1 has been implicated as a key mediator of the transendothelial migration of leukocytes and monocytes. To further define the physiological role of PECAM-1, we studied the modulation of PECAM-1-expression in a model of liver inflammation in both mononuclear cells (MCs) and sinusoidal endothelial cells (SECs). In normal rat liver sections, PECAM-1 immunohistology indicated a sinusoidal pattern similar to the ICAM-1 staining. Both, SECs, small and large MCs isolated from control rats express PECAM-1 as demonstrated by immunocytochemistry, flow cytometry, and Northern blot analysis. Immunohistochemical studies on liver sections from CCl(4)-treated animals indicated, that in the areas of necrosis 24-48 h after a single administration of the toxin, there was an accumulation of LFA-1-, ED1- (marker for rat monocytes) and ICAM-1-positive, but ED2-(marker for tissue macrophages)-negative inflammatory cells. Most of these cells were PECAM-1-negative. In situ hybridization indicated that there is no accumulation of PECAM-1 specific transcripts after CCl(4) treatment within the pericentral region. Immunocytology, flow cytometry, and Northern blot analysis of MCs and SECs isolated at different times after the administration of CCl(4) revealed a decrease of PECAM-1 gene expression in MCs and in SECs, whereas ICAM-1 expression increased. As TNFalpha has been shown to be upregulated early after CCl(4) administration, the influence of TNFalpha on PECAM-gene-expression was analyzed. TNFalpha treatment of cultured rat SECs and of small and large MCs from normal liver decreased PECAM-1 specific transcript level in parallel to the increase of ICAM-1 transcript level. CONCLUSIONS: Early production of TNFalpha after liver injury could induce an increased ICAM-1-expression and a decreased PECAM-1 expression, which might be essential for the transmigration of inflammatory cells into the parenchyma.

Animals↗

Platelet-endothelial cell adhesion molecule-1 gene expression in liver sinusoidal endothelial cells during liver injury and repair.

BACKGROUND/AIMS: Platelet-endothelial cell adhesion molecule (PECAM)-1 is suggested to be critical for transmigration processes. It is a matter of debate whether PECAM-1 is expressed in liver sinusoids and whether it is involved in liver inflammation. METHODS: Indirect immunostaining and in situ hybridization was used to analyze PECAM-1 gene expression in normal and diseased rat and human livers as well as in isolated rat sinusoidal endothelial cells (SECs), hepatic stellate cells and hepatocytes. At various time points after the administration of CCl4 (6 h, 24 h, 48 h, and 72 h), PECAM-1 gene expression was analyzed in livers and in SECs by immunostaining, and Northern blot analysis. RESULTS: In normal rat or human livers PECAM-1 immunoreactivity was detected along the sinusoids in a pattern similar to ICAM-1 staining. PECAM-1 specific transcripts were detected in freshly isolated and cultured SECs. After a single CCl4-administration, PECAM-1 immunoreactivity did not increase along the sinusoids in contrast to the early increase of ICAM-1. Northern blot analysis indicated that PECAM-1 expression in liver tissue and in isolated SECs does not increase after a single administration of CCl4, whereas ICAM-1 steady-state level increased after 6 h. In diseased human livers PECAM-1 was detectable along the sinusoids, within inflammatory infiltrates and within fibrotic septa. Neither in acutely nor chronically diseased human livers was an obvious increase of PECAM-1 immunoreactivity detectable. CONCLUSIONS: PECAM-1 is expressed by SECs. In contrast to ICAM-1, PECAM-1 transcript level is not enhanced during liver damage.

Animals↗

An in-frame triplet deletion within the gp91-phox gene in an adult X-linked chronic granulomatous disease patient with residual NADPH-oxidase activity.

In an adult patient suffering from X-linked chronic granulomatous disease (X-CGD) with residual activity of the NADPH-oxidase we found an unusual biochemical constellation with a defective gp91-phox gene. As shown by Western blot using a specific antibody the gp91-phox protein was normal in PMN. However, NADPH-oxidase activity was reduced and no heme spectrum was detectable. By Southern blot and RFLP analysis of genomic DNA a larger defect within the gp91-phox gene was excluded. Sequencing of the gp91-phox cDNA revealed an in-frame deletion of a TTC triplet in exon VI of the gp91-phox gene. This mutation indicates the loss of one amino acid (phenylalanine 215 or 216) in the gp91-phox protein. Sequencing of genomic DNA from the heterozygous daughter of the propositus confirmed this mutation. The absence of a functional cytochrome b558-spectrum in granulocytes of the patient suggests an involvement of the phenylalanine 216 area in heme binding by gp91 phox. This is the first mutation described in a X-CGD patient with absence of a functional cytochrome b558-spectrum but with detectable gp91-phox protein and residual NADPH-oxidase activity.

Adult↗