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Clinical and Experimental Pharmacology & Physiology|December 15, 2010
Angiotensin receptors and development: the kidneyD Alcorn, J E McCausland, C MaricClinical and Experimental Pharmacology & Physiology. Supplement|January 1, 1996
Angiotensin receptors and development: the kidneyD Alcorn, J E McCausland, C MaricClinical and Experimental Pharmacology & Physiology|June 1, 1996
Angiotensin converting enzyme inhibition in the postnatal rat results in decreased cell proliferation in the renal outer medullaJ E McCausland, G B Ryan, D AlcornPediatric Nephrology (Berlin, Germany)|August 24, 1999
Development of the renal interstitiumD Alcorn, C Maric, J McCauslandAnatomy and Embryology|June 1, 1997
Embryonic and postnatal development of the rat renal interstitiumC Maric, G B Ryan, D AlcornExperimental Nephrology|May 1, 1997
Glomerular number and size following chronic angiotensin II blockade in the postnatal ratJ E McCausland, J F Bertram, G B Ryan, et al.Kidney International|February 7, 1998
Angiotensin II inhibits growth of cultured embryonic renomedullary interstitial cells through the AT2 receptorC Maric, G P Aldred, P J Harris, et al.Hypertension Research : Official Journal of the Japanese Society of Hypertension|February 7, 1998
Localization and functional properties of angiotensin II AT1 receptors in the kidney: focus on renomedullary interstitial cellsJ Zhuo, C Maric, P J Harris, et al.Matrix Biology : Journal of the International Society for Matrix Biology|May 4, 2001
Renomedullary interstitial cells in culture; the osmolality and oxygen tension influence the extracellular amounts of hyaluronan and cellular expression of CD44V Göransson, P Hansell, S Moss, et al.Kidney International. Supplement|September 15, 1998
Localization and interactions of vasoactive peptide receptors in renomedullary interstitial cells of the kidneyJ Zhuo, R Dean, C Maric, et al.Pageof 11