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Am J Physiol Cell Physiol 289: C312-C322, 2005. First published March 16, 2005; doi:10.1152/ajpcell.00107.2004
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RECEPTORS AND SIGNAL TRANSDUCTION

Pathologically elevated cyclic hydrostatic pressure induces CD95-mediated apoptotic cell death in vascular endothelial cells

Cornelia Hasel, Susanne Dürr, Anke Bauer, Rene Heydrich, Silke Brüderlein, Tabe Tambi, Umesh Bhanot, and Peter Möller

Institute of Pathology, University of Ulm, Ulm, Germany

Submitted 25 February 2004 ; accepted in final form 11 March 2005

We describe cyclic hydrostatic pressure of 200/100 mmHg with a frequency of 85/min as a hemodynamically relevant pathological condition enforcing apoptosis in endothelial cells (EC) after 24 h of treatment. This went along with an increase of CD95 and CD95L surface expression, shedding of CD95L into the supernatant, cleavage of caspase-3 and caspase-8, and elevated JNK-2, c-Jun, and CD95L mRNA expression. Furthermore, increased DNA-binding activity of the AP-1 transcription factor family members FRA-1 and c-Jun was observed. This activation was reduced by inhibition of JNK, which subsequently prevented elevated CD95L mRNA expression. Caspase inhibitors and a CD95L-neutralizing antibody also reduced EC apoptosis. Most of the pressure-induced events were most prominent at 24 and 48 h. However, after 48 h, the CD95/CD95L expression pattern switched back to CD95–/CD95L+ and the specific death rate decreased. Cyclic pathological hydrostatic pressure is a novel type of stress to EC that renders them susceptible to CD95/CD95L-mediated autoapoptosis and/or paracrine apoptosis accompanied by upregulation of intracellular molecules known to trigger both apoptosis and survival.

hypertension; CD95/CD95L



Address for reprint requests and other correspondence: P. Möller, Dept. of Pathology, Univ. of Ulm, Albert-Einstein-Allee 11, D-89081 Ulm, Germany (e-mail: peter.moeller{at}medizin.uni-ulm.de)







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