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43 results on '"Pierce GN"'

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1. Ruminant and industrial trans-fatty acid uptake in the heart.

2. Extensive autolytic fragmentation of membranous versus cytosolic calpain following myocardial ischemia-reperfusion.

3. Differential sensitivities of the NCX1.1 and NCX1.3 isoforms of the Na+-Ca2+ exchanger to alpha-linolenic acid.

4. Effects of omega-3 polyunsaturated fatty acids on cardiac sarcolemmal Na(+)/H(+) exchange.

5. Mg2+-dependent ATPase activity in cardiac myofibrils from the insulin-resistant JCR:LA-cp rat.

6. Inhibition of Na(+)/H(+) exchange at the beginning of reperfusion is cardioprotective in isolated, beating adult cardiomyocytes.

7. Altered cardiac Na(+)/H(+) exchange in phospholipase D-treated sarcolemmal vesicles.

8. Regulation of intracellular Ca2+ in the heart during diabetes.

9. The presence and partitioning of calcium binding proteins in hepatic and cardiac nuclei.

10. Involvement of lipoproteins, free radicals, and calcium in cardiovascular disease processes.

11. Adult cardiomyocytes express functional high-affinity receptors for basic fibroblast growth factor.

12. Induction of expression of the sodium-hydrogen exchanger in rat myocardium.

13. The contribution of ionic imbalance to ischemia/reperfusion-induced injury.

14. Interference of N-(1-[4-(4-fluorophenoxy)butyl]-piperidinyl)-N-methyl- 2-benzothiazolamine with Na+/H+ exchange and Na+/Ca2+ exchange in purified cardiac sarcolemmal membranes.

15. The action of oxidized low density lipoprotein on calcium transients in isolated rabbit cardiomyocytes.

16. The effects of low density lipoprotein on calcium transients in isolated rabbit cardiomyocytes.

17. Low molecular weight GTP-binding proteins in cardiac muscle. Association with a 32-kDa component related to connexins.

18. Two major antigens of heart sarcolemma are Ca2(+)-binding glycoproteins that copurify with the dihydropyridine receptor.

19. Effect of platelet-activating factor (PAF) on sodium calcium exchange in cardiac sarcolemmal vesicles.

20. Protection by benzamil against dysfunction and damage in rat myocardium after calcium depletion and repletion.

21. Na(+)-H+ exchange in cardiac sarcolemmal vesicles isolated from diabetic rats.

22. Sarcolemmal Na+-K+-ATPase activity in diabetic rat heart.

23. Sarcolemmal alterations during the development of genetically determined cardiomyopathy.

24. Influence of verapamil on some subcellular defects in diabetic cardiomyopathy.

25. Alterations in Ca2+ binding by and composition of the cardiac sarcolemmal membrane in chronic diabetes.

26. Lack of effect of prostaglandins on rat heart myofibrillar ATPase activity.

27. Cardiac myofibrillar ATPase activity in diabetic rats.

28. Stimulation of sodium-calcium exchange by cholesterol incorporation into isolated cardiac sarcolemmal vesicles.

29. Binding of glycolytic enzymes to cardiac sarcolemmal and sarcoplasmic reticular membranes.

30. Defective sarcoplasmic reticular calcium transport in diabetic cardiomyopathy.

31. Cardiac cell damage: a primary myocardial disease in streptozotocin-induced chronic diabetes.

32. Effects of chronic swimming training on cardiac sarcolemmal function and composition.

33. Cardiac contracile protein ATPase activity in a diet induced model of noninsulin dependent diabetes mellitus.

34. Na+-H+ exchange in cardiac sarcolemmal vesicles.

35. Alterations in adenylate cyclase activity due to streptozotocin-induced diabetic cardiomyopathy.

36. Role of phosphatidylinositol in cardiac sarcolemmal membrane sodium-calcium exchange.

37. Role for sulfur-containing groups in the Na+-Ca2+ exchange of cardiac sarcolemmal vesicles.

38. Passive calcium-buffering capacity of a rabbit ventricular homogenate preparation.

39. Calcium movements in relation to heart function.

40. Cationic interactions with Na+-H+ exchange and passive Na+ flux in cardiac sarcolemmal vesicles.

41. Adriamycin stimulates low-affinity Ca2+ binding and lipid peroxidation but depresses myocardial function.

42. Biochemical alterations in heart after exhaustive swimming in rats.

43. Alterations in heart and serum lysosomal activities in streptozotocin-induced diabetes.

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