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Summary Anatomy Item Literature (15) Expression Attributions Wiki
XB-ANAT-1656

Papers associated with pulmonary artery

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Plasticity of lung development in the amphibian, Xenopus laevis., Rose CS., Biol Open. December 15, 2013; 2 (12): 1324-35.      


Maturation of the gastric microvasculature in Xenopus laevis (Lissamphibia, Anura) occurs at the transition from the herbivorous to the carnivorous lifestyle, predominantly by intussuceptive microvascular growth (IMG): a scanning electron microscope study of microvascular corrosion casts and correlative light microscopy., Lametschwandtner A., Anat Sci Int. June 1, 2012; 87 (2): 88-100.                    


TASK1 (K(2P)3.1) K(+) channel inhibition by endothelin-1 is mediated through Rho kinase-dependent phosphorylation., Seyler C., Br J Pharmacol. March 1, 2012; 165 (5): 1467-75.


Carvedilol targets human K2P 3.1 (TASK1) K+ leak channels., Staudacher K., Br J Pharmacol. July 1, 2011; 163 (5): 1099-110.


Analysis of voltage-gated potassium channel beta1 subunits in the porcine neonatal ductus arteriosus., Hayama E., Pediatr Res. February 1, 2006; 59 (2): 167-74.


Molecular cloning, characterization, and chromosomal assignment of porcine cationic amino acid transporter-1., Cui Z., Genomics. March 1, 2005; 85 (3): 352-9.


Fluorescent labeling of endothelial cells allows in vivo, continuous characterization of the vascular development of Xenopus laevis., Levine AJ., Dev Biol. February 1, 2003; 254 (1): 50-67.                      


Metabolic inhibition with cyanide induces calcium release in pulmonary artery myocytes and Xenopus oocytes., Wang YX., Am J Physiol Cell Physiol. February 1, 2003; 284 (2): C378-88.


Evidence against aquaporin-1-dependent CO2 permeability in lung and kidney., Fang X., J Physiol. July 1, 2002; 542 (Pt 1): 63-9.


DCPIB is a novel selective blocker of I(Cl,swell) and prevents swelling-induced shortening of guinea-pig atrial action potential duration., Decher N., Br J Pharmacol. December 1, 2001; 134 (7): 1467-79.


Block of inwardly rectifying K+ currents by extracellular Mg2+ and Ba2+ in bovine pulmonary artery endothelial cells., Leung YM., Can J Physiol Pharmacol. September 1, 2000; 78 (9): 751-6.


Confocal imaging of early heart development in Xenopus laevis., Kolker SJ., Dev Biol. February 1, 2000; 218 (1): 64-73.              


Regulation of Shaker-type potassium channels by hypoxia. Oxygen-sensitive K+ channels in PC12 cells., Conforti L., Adv Exp Med Biol. January 1, 2000; 475 265-74.


Kv2.1/Kv9.3, an ATP-dependent delayed-rectifier K+ channel in pulmonary artery myocytes., Patel AJ., Ann N Y Acad Sci. April 30, 1999; 868 438-41.


Differences in pulmonary microvascular anatomy between Bufo marinus and Xenopus laevis., Smith DG., Cell Tissue Res. March 1, 1977; 178 (1): 1-15.

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