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Renal Failure|September 13, 2005
Reduced nitric oxide bioavailability in a baboon model of Shiga toxin mediated hemolytic uremic syndrome (HUS)Richard L Siegler, Theodore J Pysher, Vernon L Tesh, et al.
Pediatric Research|March 22, 2006
Procalcitonin in children with Escherichia coli O157:H7 associated hemolytic uremic syndromeHélène Decaluwe, Lisa M Harrison, Michele M Mariscalco, et al.
Pediatric Nephrology (Berlin, Germany)|February 13, 2003
Response to Shiga toxin 1 and 2 in a baboon model of hemolytic uremic syndromeRichard L Siegler, Tom G Obrig, Theodore J Pysher, et al.
Cellular Microbiology|July 5, 2011
Shiga toxins induce autophagy leading to differential signalling pathways in toxin-sensitive and toxin-resistant human cellsMoo-Seung Lee, Rama P Cherla, Matthew H Jenson, et al.
Microbial Pathogenesis|March 8, 2005
Comparative evaluation of apoptosis induced by Shiga toxin 1 and/or lipopolysaccharides in human monocytic and macrophage-like cellsLisa M Harrison, Rama P Cherla, Christel van den Hoogen, et al.
The American Journal of Pathology|February 14, 2013
Distinct renal pathology and a chemotactic phenotype after enterohemorrhagic Escherichia coli shiga toxins in non-human primate models of hemolytic uremic syndromeDeborah J Stearns-Kurosawa, Sun-Young Oh, Rama P Cherla, et al.
American Journal of Nephrology|September 24, 2005
Lipopolysaccharide upregulates renal shiga toxin receptors in a primate model of hemolytic uremic syndromeFrederic Clayton, Theodore J Pysher, Randall Lou, et al.
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