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American Journal of Hypertension|August 13, 2013
AT1 receptors prevent salt-induced vascular dysfunction in isolated middle cerebral arteries of 2 kidney-1 clip hypertensive ratsAndreas M Beyer, Katherine Fredrich, Julian H Lombard
American Journal of Physiology. Renal Physiology|April 13, 2004
Angiostatin and matrix metalloprotease expression following ischemic acute renal failureDavid P Basile, Katherine Fredrich, Dorothee Weihrauch, et al.
Hypertension (Dallas, Tex. : 1979)|June 20, 2012
Dahl salt-sensitive rats are protected against vascular defects related to diet-induced obesityAndreas M Beyer, Gabor Raffai, Brian Weinberg, et al.
European Journal of Pediatric Surgery : Official Journal of Austrian Association of Pediatric Surgery ... [Et Al] = Zeitschrift Fur Kinderchirurgie|May 27, 2015
Interleukin-23 Increases Intestinal Epithelial Cell Permeability In VitroNathan P Heinzerling, Deborah Donohoe, Katherine Fredrich, et al.
American Journal of Physiology. Renal Physiology|February 15, 2008
Renal ischemia reperfusion inhibits VEGF expression and induces ADAMTS-1, a novel VEGF inhibitorDavid P Basile, Katherine Fredrich, Bhadrani Chelladurai, et al.
The Journal of Surgical Research|October 8, 2017
Intestinal alkaline phosphatase deficiency leads to dysbiosis and bacterial translocation in the newborn intestineJason Fawley, Shannon Koehler, Susan Cabrera, et al.
Journal of Pediatric Surgery|January 22, 2013
Enteral intestinal alkaline phosphatase administration in newborns decreases iNOS expression in a neonatal necrotizing enterocolitis rat modelRebecca M Rentea, Jennifer L Liedel, Katherine Fredrich, et al.
Journal of Pediatric Surgery|June 4, 2014
Intestinal alkaline phosphatase is protective to the preterm rat pup intestineNathan P Heinzerling, Jennifer L Liedel, Scott R Welak, et al.
The Journal of Surgical Research|April 5, 2015
Intestinal alkaline phosphatase to treat necrotizing enterocolitisBen E Biesterveld, Shannon M Koehler, Nathan P Heinzerling, et al.
American Journal of Physiology. Renal Physiology|January 6, 2005
Identification of persistently altered gene expression in the kidney after functional recovery from ischemic acute renal failureDavid P Basile, Katherine Fredrich, Morufu Alausa, et al.
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