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PUBMED FOR HANDHELDS

Journal Abstract Search


119 related items for PubMed ID: 8741813

  • 21. Elevation of red cell sodium-lithium countertransport in hyperlipidemias.
    Corrocher R, Steinmayr M, Ruzzenente O, Brugnara C, Bertinato L, Mazzi M, Furri C, Bonfanti F, De Sandre G.
    Life Sci; 1985 Feb 18; 36(7):649-55. PubMed ID: 3968981
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  • 22. Cellular ions in NIDDM: relation of calcium to hyperglycemia and cardiac mass.
    Barbagallo M, Gupta RK, Resnick LM.
    Diabetes Care; 1996 Dec 18; 19(12):1393-8. PubMed ID: 8941470
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  • 23. Increased red cell sodium-lithium countertransport and lymphocyte cytosolic calcium are separate phenotypes in patients with essential hypertension.
    Romero JR, Rivera A, Monari A, Ceolotto G, Semplicini A, Conlin PR.
    J Hum Hypertens; 2002 May 18; 16(5):353-8. PubMed ID: 12082497
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  • 25. Thiol group modulation of sodium-lithium countertransport kinetics in diabetic nephropathy.
    Jones SC, Thomas TH, Marshall SM.
    Diabetologia; 1997 Sep 18; 40(9):1079-84. PubMed ID: 9300245
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  • 27. Erythrocyte sodium-lithium countertransport, adenosine triphosphatase activity and sodium-potassium fluxes in insulin-dependent diabetes.
    Besch W, Blücher H, Bettin D, Wolf E, Michaelis D, Kohnert KD.
    Int J Clin Lab Res; 1995 Sep 18; 25(2):104-9. PubMed ID: 7663004
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  • 28. Increased sodium-lithium countertransport in black non-insulin-dependent diabetic hypertensives.
    Johnson BA, Sowers JR, Zemel PC, Luft FC, Zemel MB.
    Am J Hypertens; 1990 Jul 18; 3(7):563-5. PubMed ID: 2163648
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  • 30. Plasma lipids affect maximum velocity not sodium affinity of human sodium-lithium countertransport: distinction from essential hypertension.
    Rutherford PA, Thomas TH, Laker MF, Wilkinson R.
    Eur J Clin Invest; 1992 Nov 18; 22(11):719-24. PubMed ID: 1478240
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  • 31. Increased sodium-lithium countertransport activity in red cells of patients with insulin-dependent diabetes and nephropathy.
    Mangili R, Bending JJ, Scott G, Li LK, Gupta A, Viberti G.
    N Engl J Med; 1988 Jan 21; 318(3):146-50. PubMed ID: 3336402
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  • 34. Cellular sodium membrane transport and cardiovascular risk factors in non-insulin-dependent diabetes mellitus.
    Foyle WJ, Fernandez M, Denver E, Sampson MJ, Pinkney J, Yudkin JS.
    Metabolism; 1996 Aug 21; 45(8):961-5. PubMed ID: 8769352
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  • 35. Erythrocyte Na,Li countertransport and arterial pressure in diabetic adolescents.
    Dianzani I, Boero R, Rolando B, Guarena C, Sacchetti C, Coppo R, Quarello F, Cerutti F.
    Acta Paediatr Scand; 1990 Dec 21; 79(12):1199-203. PubMed ID: 2085107
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  • 36. Nonlinear relationship between erythrocyte sodium-lithium countertransport and blood pressure in man.
    Petrov VV, Britov AN, Levitsky DO, Minchenko BI, Konstantinov EN, Svidersky VD, Novikov ID, Grishenkov EA, Lijnen PJ.
    Methods Find Exp Clin Pharmacol; 1994 Nov 21; 16(9):661-6. PubMed ID: 7746028
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  • 37. Na/Li countertransport abnormalities in type 1 diabetes with and without nephropathy are familial.
    Mead PA, Wilkinson R, Thomas TH.
    Diabetes Care; 2001 Mar 21; 24(3):527-32. PubMed ID: 11289480
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  • 38. Three red cell sodium transport systems in hypertensive and normotensive Utah adults.
    Smith JB, Ash KO, Hunt SC, Hentschel WM, Sprowell W, Dadone MM, Williams RR.
    Hypertension; 1984 Mar 21; 6(2 Pt 1):159-66. PubMed ID: 6327514
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  • 39. Erythrocyte sodium-lithium countertransport is not different in type 1 (insulin-dependent) diabetic patients with and without diabetic nephropathy.
    Elving LD, Wetzels JF, de Nobel E, Berden JH.
    Diabetologia; 1991 Feb 21; 34(2):126-8. PubMed ID: 2065847
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  • 40. Alternative splicing of NHE-1 mediates Na-Li countertransport and associates with activity rate.
    Zerbini G, Maestroni A, Breviario D, Mangili R, Casari G.
    Diabetes; 2003 Jun 21; 52(6):1511-8. PubMed ID: 12765964
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