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    Results: 1 to 20 of 286

    1.

    Na/Li countertransport abnormalities in type 1 diabetes with and without nephropathy are familial.

    Mead PA, Wilkinson R, Thomas TH.

    Diabetes Care. 2001 Mar;24(3):527-32.PMID: 11289480 [PubMed - indexed for MEDLINE]Related articlesFree article

    2.

    Abnormal kinetics of erythrocyte sodium lithium countertransport in patients with diabetic nephropathy in Thailand.

    Vareesangthip K, Panthongdee W, Shayakul C, Nitiyanant W, Ong-Aj-Yooth L.

    J Med Assoc Thai. 2006 Aug;89 Suppl 2:S48-53.PMID: 17044454 [PubMed - indexed for MEDLINE]Related articles

    3.

    Thiol group modulation of sodium-lithium countertransport kinetics in diabetic nephropathy.

    Jones SC, Thomas TH, Marshall SM.

    Diabetologia. 1997 Sep;40(9):1079-84.PMID: 9300245 [PubMed - indexed for MEDLINE]Related articles

    4.

    Increased Na+/Li+ countertransport activity may help to identify type 1 diabetic adolescents and young adults at risk for developing persistent microalbuminuria.

    Chiarelli F, Catino M, Tumini S, de Martino M, Mezzetti A, Verrotti A, Vanelli M.

    Diabetes Care. 1999 Jul;22(7):1158-64.PMID: 10388982 [PubMed - indexed for MEDLINE]Related articlesFree article

    6.

    Thiol protein defect in sodium-lithium countertransport in subset of essential hypertension.

    Mead P, Wilkinson R, Thomas TH.

    Hypertension. 1999 Dec;34(6):1275-80.PMID: 10601130 [PubMed - indexed for MEDLINE]Related articlesFree article

    7.

    Sodium-lithium countertransport is increased in normoalbuminuric type 1 diabetes but is not related to other risk factors for microangiopathy.

    Vervoort G, Elving LD, Wetzels JF, Lutterman JA, Smits P, de Pont JJ, Berden JH.

    Eur J Clin Invest. 2002 Feb;32(2):93-9.PMID: 11895455 [PubMed - indexed for MEDLINE]Related articles

    8.

    Erythrocyte membrane thiol proteins associated with changes in the kinetics of Na/Li countertransport: a possible molecular explanation of changes in disease.

    Thomas TH, Rutherford PA, Vareesangthip K, Wilkinson R, West IC.

    Eur J Clin Invest. 1998 Apr;28(4):259-65.PMID: 9615900 [PubMed - indexed for MEDLINE]Related articles

    9.

    Modification of erythrocyte Na+/Li+ countertransport kinetics by two types of thiol group.

    Thomas TH, West IC, Wilkinson R.

    Biochim Biophys Acta. 1995 May 4;1235(2):317-22.PMID: 7756341 [PubMed - indexed for MEDLINE]Related articles

    10.

    Sodium-lithium transport in adolescents with IDDM. Relationship to incipient nephropathy and glycemic control.

    Crompton CH, Balfe JW, Balfe JA, Chatzilias A, Daneman D.

    Diabetes Care. 1994 Jul;17(7):704-10.PMID: 7924781 [PubMed - indexed for MEDLINE]Related articles

    11.

    Erythrocyte sodium-lithium countertransport activity in non-nephropathic diabetic twins.

    Hardman TC, Dubrey SW, Leslie RD, Lant AF.

    Diabetes Care. 1996 Jan;19(1):32-8.PMID: 8720530 [PubMed - indexed for MEDLINE]Related articles

    12.

    Elevated sodium-lithium countertransport activity in erythrocytes is predictive of the development of microalbuminuria in IDDM.

    Monciotti CG, Semplicini A, Morocutti A, Maioli M, Cipollina MR, Barzon I, Palaro C, Brocco E, Trevisan M, Fioretto P, Crepaldi G, Nosadini R.

    Diabetologia. 1997 Jun;40(6):654-61.PMID: 9222644 [PubMed - indexed for MEDLINE]Related articles

    13.

    Abnormal effect of thiol groups on erythrocyte Na/Li countertransport kinetics in adult polycystic kidney disease.

    Vareesangthip K, Thomas TH, Wilkinson R.

    Nephrol Dial Transplant. 1995 Dec;10(12):2219-23.PMID: 8808214 [PubMed - indexed for MEDLINE]Related articles

    14.

    Genetic predisposition to hypertension (as detected by Na+/Li+ countertransport) and risk of diabetic nephropathy in childhood diabetes.

    Chiarelli F, Verrotti A, Kalter-Leibovici O, Laron Z, Morgese G.

    J Paediatr Child Health. 1994 Dec;30(6):547-9.PMID: 7865273 [PubMed - indexed for MEDLINE]Related articles

    15.

    Changes in erythrocyte sodium-lithium countertransport kinetics in diabetic nephropathy.

    Rutherford PA, Thomas TH, Carr SJ, Taylor R, Wilkinson R.

    Clin Sci (Lond). 1992 Mar;82(3):301-7.PMID: 1312415 [PubMed - indexed for MEDLINE]Related articles

    16.

    Elevated erythrocyte sodium-lithium counter-transport in hypertensive patients with non-insulin-dependent diabetes mellitus.

    Senda T, Serizawa N, Negishi K, Katayama S.

    Diabetes Res Clin Pract. 1996 Mar;31(1-3):37-44.PMID: 8792100 [PubMed - indexed for MEDLINE]Related articles

    17.

    Thiol group control of sodium-lithium countertransport kinetics in uraemia: evidence of a membrane abnormality affected by haemodialysis.

    Rutherford PA, Thomas TH, O'Kelly J, West IC, Wilkinson R.

    Nephron. 1996;72(2):184-8.PMID: 8684524 [PubMed - indexed for MEDLINE]Related articles

    18.

    [Erythrocyte sodium-lithium countertransport in diabetic children: 12 months development and relationship with familial hypertension]

    Guarena C, Boero R, Quarello F, Cerruti F, Rolando B, Sacchetti C, Rosati C, Iadarola G, Piccoli G.

    Arch Mal Coeur Vaiss. 1992 Aug;85(8):1205-7. French. PMID: 1482260 [PubMed - indexed for MEDLINE]Related articles

    19.

    Abnormal thiol reactivity of tropomyosin in essential hypertension and its association with abnormal sodium-lithium countertransport kinetics.

    Watkins SL, West IC, Wilkinson R, Thomas TH.

    J Hypertens. 2001 Mar;19(3):485-93.PMID: 11288819 [PubMed - indexed for MEDLINE]Related articles

    20.

    Sodium activation kinetics of red blood cell Na+/Li+ countertransport in diabetes: methodology and controversy.

    Canessa M, Zerbini G, Laffel LM.

    J Am Soc Nephrol. 1992 Oct;3(4 Suppl):S41-9. Review.PMID: 1457760 [PubMed - indexed for MEDLINE]Related articles

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