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2009

Journal Article

Artificial selection for whole animal low intrinsic aerobic capacity co-segregates with hypoxia-induced cardiac pump failure

Palpant, Nathan J., Szatkowski, Michael L., Wang, Wang, Townsend, DeWayne, Bedada, Fikru B., Koch, Lauren G., Britton, Steven L. and Metzger, Joseph M. (2009). Artificial selection for whole animal low intrinsic aerobic capacity co-segregates with hypoxia-induced cardiac pump failure. PLoS One, 4 (7) e6117, e6117. doi: 10.1371/journal.pone.0006117

Artificial selection for whole animal low intrinsic aerobic capacity co-segregates with hypoxia-induced cardiac pump failure

2009

Journal Article

Single histidine button in cardiac troponin I sustains heart performance in response to severe hypercapnic respiratory acidosis in vivo

Palpant, Nathan J., D'Alecy, Louis G. and Metzger, Joseph M. (2009). Single histidine button in cardiac troponin I sustains heart performance in response to severe hypercapnic respiratory acidosis in vivo. FASEB Journal, 23 (5), 1529-1540. doi: 10.1096/fj.08-121996

Single histidine button in cardiac troponin I sustains heart performance in response to severe hypercapnic respiratory acidosis in vivo

2008

Journal Article

Molecular Cardiology in Translation: Gene, Cell and Chemical-Based Experimental Therapeutics for the Failing Heart

Turner, Immanuel, Belema-Bedada, Fikru, Martindale, Joshua, Townsend, DeWayne, Wang, Wang, Palpant, Nathan, Yasuda, So-chiro, Barnabei, Matthew, Fomicheva, Ekaterina and Metzger, Joseph M. (2008). Molecular Cardiology in Translation: Gene, Cell and Chemical-Based Experimental Therapeutics for the Failing Heart. Journal of Cardiovascular Translational Research, 1 (4), 317-327. doi: 10.1007/s12265-008-9065-6

Molecular Cardiology in Translation: Gene, Cell and Chemical-Based Experimental Therapeutics for the Failing Heart

2008

Journal Article

Single histidine-substituted cardiac troponin I confers protection from age-related systolic and diastolic dysfunction

Palpant, Nathan J., Day, Sharlene M., Herron, Todd J., Converso, Kimber L. and Metzger, Joseph M. (2008). Single histidine-substituted cardiac troponin I confers protection from age-related systolic and diastolic dysfunction. Cardiovascular Research, 80 (2), 209-218. doi: 10.1093/cvr/cvn198

Single histidine-substituted cardiac troponin I confers protection from age-related systolic and diastolic dysfunction

2008

Conference Publication

Single Histidine Button in Cardiac TroPonin I Sustains Heart Performance in Response to Severe Hypercapnic Respiratory Acidosis in Vivo

Palpant, Nathan J., D'Alecy, Louis G. and Metzger, Joseph M. (2008). Single Histidine Button in Cardiac TroPonin I Sustains Heart Performance in Response to Severe Hypercapnic Respiratory Acidosis in Vivo. 81st Annual Scientific Session of the American-Heart-Association, New Orleans La, Nov 08-12, 2008. PHILADELPHIA: LIPPINCOTT WILLIAMS & WILKINS.

Single Histidine Button in Cardiac TroPonin I Sustains Heart Performance in Response to Severe Hypercapnic Respiratory Acidosis in Vivo

2007

Conference Publication

Histidine substituted cardiac troponin I (a164h) improves survival and protects cardiac contractility during acute hypoxia in the aged murine heart

Palpant, Nathan, Day, Sharlene, Converso, Kimber and Metzger, Joseph (2007). Histidine substituted cardiac troponin I (a164h) improves survival and protects cardiac contractility during acute hypoxia in the aged murine heart. 80th Annual Scientific Session of the American-Heart-Association, Orlando Fl, Nov 04-07, 2007. PHILADELPHIA: LIPPINCOTT WILLIAMS & WILKINS.

Histidine substituted cardiac troponin I (a164h) improves survival and protects cardiac contractility during acute hypoxia in the aged murine heart

2007

Journal Article

Non-canonical Wnt signaling enhances differentiation of Sca1+/c-kit+ adipose-derived murine stromal vascular cells into spontaneously beating cardiac myocytes

Palpant, Nathan J., Yasuda, So-ichiro, MacDougald, Ormond and Metzger, Joseph M. (2007). Non-canonical Wnt signaling enhances differentiation of Sca1+/c-kit+ adipose-derived murine stromal vascular cells into spontaneously beating cardiac myocytes. Journal of Molecular and Cellular Cardiology, 43 (3), 362-370. doi: 10.1016/j.yjmcc.2007.06.012

Non-canonical Wnt signaling enhances differentiation of Sca1+/c-kit+ adipose-derived murine stromal vascular cells into spontaneously beating cardiac myocytes