Risultati della ricerca - Cheavar A. Blair
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Omecamtiv Mecarbil Enhances the Duty Ratio of Human β-Cardiac Myosin Resulting in Increased Calcium Sensitivity and Slowed Force Development in Cardiac Muscle di Anja M. Swenson, Wanjian Tang, Cheavar A. Blair, Christopher Fetrow, William C. Unrath, Michael J. Previs, Kenneth S. Campbell, Christopher M. Yengo
Pubblicazione 2017Artigo -
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Diabetes with heart failure increases methylglyoxal modifications in the sarcomere, which inhibit function di Maria Papadaki, Ronald J. Holewinski, Samantha Beck Previs, Thomas G. Martin, Marisa J. Stachowski, Amy Li, Cheavar A. Blair, Christine S. Moravec, Jennifer E. Van Eyk, Kenneth S. Campbell, David M. Warshaw, Jonathan A. Kirk
Pubblicazione 2018Artigo -
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Abnormal contractility in human heart myofibrils from patients with dilated cardiomyopathy due to mutations in TTN and contractile protein genes di Petr G. Vikhorev, Natalia Smoktunowicz, Alex B. Munster, O’Neal Copeland, Sawa Kostin, Cécile Montgiraud, Andrew E. Messer, Mohammad R. Toliat, Amy Li, Cristobal G. dos Remedios, Sean Lal, Cheavar A. Blair, Kenneth S. Campbell, Maya Guglin, Manfred Richter, Ralph Knöll, Steven B. Marston
Pubblicazione 2017Artigo
Strumenti per la ricerca:
Soggetti correlati
Medicine
Internal medicine
Actin
Biochemistry
Biology
Cardiology
Chemistry
Endocrinology
Heart failure
Myosin
Biophysics
Calcium
Cancer research
Cardiomyopathy
Cell biology
Contractility
Diabetes mellitus
Dilated cardiomyopathy
Environmental health
Enzyme
Fibrosis
Gene
Gene isoform
Genetics
Glycation
Hepatic stellate cell
Insulin
Insulin resistance
Liver fibrosis
MYH7