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38 results on '"Timothy D. O'connell"'

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1. Free fatty acid receptor 4 responds to endogenous fatty acids to protect the heart from pressure overload

2. Mechanistic insights into cardiovascular protection for omega-3 fatty acids and their bioactive lipid metabolites

4. Guanylyl cyclase-A phosphorylation decreases cardiac hypertrophy and improves systolic function in male, but not female, mice

5. Predicting Risk for Incident Heart Failure With Omega-3 Fatty Acids

6. Free fatty acid receptor 4 is a nutrient sensor that resolves inflammation to maintain cardiac homeostasis

7. Abstract 255: Novel Role for Free Fatty Acid Receptor 4 in Response to Pathologic Pressure Overload-Induced Heart Failure in Mice

8. Abstract 526: Free Fatty Acid Receptor 4 is Required for an Adaptive Response to Pathologic Pressure Overload-induced Heart Failure in Mice

9. Abstract 026: Eicosapentaenoic Acid is a Strong Predictor of Risk for Heart Failure in the Multi-ethnic Study of Atherosclerosis

10. With or Without Langendorff

11. Derivation and High Engraftment of Patient-Specific Cardiomyocyte Sheet Using Induced Pluripotent Stem Cells Generated From Adult Cardiac Fibroblast

12. Cardiac Alpha1-Adrenergic Receptors: Novel Aspects of Expression, Signaling Mechanisms, Physiologic Function, and Clinical Importance

13. ω3-Polyunsaturated fatty acids for heart failure: Effects of dose on efficacy and novel signaling through free fatty acid receptor 4

14. Nuclear localization drives α1-adrenergic receptor oligomerization and signaling in cardiac myocytes

15. Omega-3 Fatty Acids Prevent Pressure Overload–Induced Cardiac Fibrosis Through Activation of Cyclic GMP/Protein Kinase G Signaling in Cardiac Fibroblasts

16. An association between gene expression and better survival in female mice following myocardial infarction

17. An α1A-Adrenergic–Extracellular Signal-Regulated Kinase Survival Signaling Pathway in Cardiac Myocytes

18. EPA, not DHA, prevents fibrosis in pressure overload-induced heart failure: potential role of free fatty acid receptor 4[S]

19. Eicosapentaenoic Acid Prevents Interstitial Cardiac Fibrosis in a Mouse Model of Hypertensive Heart Disease

20. Abnormal Myocardial Contraction in α1A– and α1B–adrenoceptor double-knockout mice

21. α1-Adrenergic receptor responses in α1AB-AR knockout mouse hearts suggest the presence of α1D-AR

22. α1-Adrenoceptor Subtypes Mediate Negative Inotropy in Myocardium from α1A/C-Knockout and Wild Type Mice

23. Quantification of Catecholamine Uptake in Adult Cardiac Myocytes

24. Nuclear Localization of α1A‐Adrenergic Receptors Is Required for Signaling in Cardiac Myocytes: An 'Inside‐Out' α1‐AR Signaling Pathway

25. 1,25-Dihydroxyvitamin D3 regulation of cardiac myocyte proliferation and hypertrophy

26. Inhibition of cardiac myocyte maturation by 1,25-dihydroxyvitamin D3

27. Promising Small Molecule for Heart Failure Targeting Adrenal Catecholamine Release and β-Adrenergic Receptor Signaling in the Heart∗

28. Nuclear alpha1-adrenergic receptors signal activated ERK localization to caveolae in adult cardiac myocytes

29. Diminished GATA4 protein levels contribute to hyperglycemia-induced cardiomyocyte injury

30. Rapamycin prevents thyroid hormone-induced cardiac hypertrophy

31. Isolation and Culture of Adult Mouse Cardiac Myocytes

32. α1-Adrenergic receptors prevent a maladaptive cardiac response to pressure overload

33. Aldosterone directly stimulates cardiac myocyte hypertrophy

34. Efficacy and Safety of Dofetilide in the Treatment of Frequent Ventricular Tachyarrhythmias After Amiodarone Intolerance or Failure

35. 1,25-Dihydroxyvitamin D3-regulated binding of nuclear proteins to a c-myc intron element

36. Immunochemical identification of the 1,25-dihydroxyvitamin D3 receptor protein in human heart

37. Regulation of myosin isozyme expression by vitamin D3 deficiency and 1,25-dihydroxyvitamin D3 in the rat heart

38. Inhibitory Effects of Omega-3 PUFAs on Cardiac Fibrosis In Vivo and In Vitro

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