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Pediatric Research|January 14, 2011
Adverse and protective influences of adenosine on the newborn and embryo: implications for preterm white matter injury and embryo protectionScott A Rivkees, Christopher C WendlerMolecular Aspects of Medicine|February 17, 2017
Long-term consequences of disrupting adenosine signaling during embryonic developmentScott A Rivkees, Christopher C WendlerArteriosclerosis, Thrombosis, and Vascular Biology|March 17, 2012
Regulation of cardiovascular development by adenosine and adenosine-mediated embryo protectionScott A Rivkees, Christopher C WendlerDevelopmental Biology|January 26, 2006
Sphingosine-1-phosphate inhibits cell migration and endothelial to mesenchymal cell transformation during cardiac developmentChristopher C Wendler, Scott A RivkeesBrain Research|August 27, 2014
Diazoxide promotes oligodendrocyte differentiation in neonatal brain in normoxia and chronic sublethal hypoxiaYing Zhu, Christopher C Wendler, Olivia Shi, et al.Scientific Reports|September 29, 2016
In Utero Caffeine Exposure Induces Transgenerational Effects on the Adult HeartXiefan Fang, Ryan R Poulsen, Scott A Rivkees, et al.BMC Developmental Biology|June 15, 2011
The Sphingosine-1-phospate receptor 1 mediates S1P action during cardiac developmentRyan R Poulsen, Carolyn M McClaskey, Scott A Rivkees, et al.Birth Defects Research. Part A, Clinical and Molecular Teratology|January 11, 2008
Hypoxia induces cardiac malformations via A1 adenosine receptor activation in chicken embryosSatish K Ghatpande, Charles J Billington, Scott A Rivkees, et al.Plos One|December 14, 2011
Caffeine acts via A1 adenosine receptors to disrupt embryonic cardiac functionDaniela L Buscariollo, Gregory A Breuer, Christopher C Wendler, et al.American Journal of Physiology. Regulatory, Integrative and Comparative Physiology|October 31, 2014
Caffeine exposure alters cardiac gene expression in embryonic cardiomyocytesXiefan Fang, Wenbin Mei, William B Barbazuk, et al.Pageof 3