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Basic Research in Cardiology|March 2, 2005
Differential effects of isoflurane and ketamine/inactin anesthesia on cAMP and cardiac function in FVB/N mice during basal state and beta-adrenergic stimulationJames R Peña, Beata M WolskaCardiovascular Research|February 27, 2004
Troponin I phosphorylation plays an important role in the relaxant effect of beta-adrenergic stimulation in mouse heartsJames R Peña, Beata M WolskaAmerican Journal of Physiology. Regulatory, Integrative and Comparative Physiology|October 14, 2006
Myofilament response to Ca2+ and Na+/H+ exchanger activity in sex hormone-related protection of cardiac myocytes from deactivation in hypercapnic acidosisTepmanas Bupha-Intr, Jonggonnee Wattanapermpool, James R Peña, et al.Biomaterials|February 14, 2015
Localized delivery of mechano-growth factor E-domain peptide via polymeric microstructures improves cardiac function following myocardial infarctionJames R Peña, James R Pinney, Perla Ayala, et al.Journal of Muscle Research and Cell Motility|March 28, 2008
Correlations between alterations in length-dependent Ca2+ activation of cardiac myofilaments and the end-systolic pressure-volume relationGrzegorz Nowak, James R Peña, Dalia Urboniene, et al.Circulation Research|June 18, 2005
Expression of slow skeletal troponin I in adult mouse heart helps to maintain the left ventricular systolic function during respiratory hypercapniaDalia Urboniene, Fernando A L Dias, James R Peña, et al.Circulation Research|May 4, 2002
Expression of slow skeletal troponin I in hearts of phospholamban knockout mice alters the relaxant effect of beta-adrenergic stimulationBeata M Wolska, Grace M Arteaga, James R Peña, et al.Frontiers in Physiology|December 5, 2022
Mechano-growth factor E-domain modulates cardiac contractile function through 14-3-3 protein interactomesChristopher Solís, Walter C Thompson, James R Peña, et al.Journal of Molecular and Cellular Cardiology|June 30, 2006
The effect of myosin regulatory light chain phosphorylation on the frequency-dependent regulation of cardiac functionFernando A L Dias, Lori A Walker, Grace M Arteaga, et al.Journal of Molecular and Cellular Cardiology|August 16, 2011
Long-term rescue of a familial hypertrophic cardiomyopathy caused by a mutation in the thin filament protein, tropomyosin, via modulation of a calcium cycling proteinRobert D Gaffin, James R Peña, Marco S L Alves, et al.Pageof 2