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Clinical Study

Radionuclide Staging of Renal Function in Type 1 Diabetes Mellitus

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Pages 685-691 | Published online: 07 Jul 2009

REFERENCES

  • Levey AS, Bosch JP, Lewis JB, Greene T, Rogers N, Roth D. A more accurate method to estimate glomerular filtration rate from serum creatinine: a new prediction equation. Modification of Diet in Renal Disease Study Group. Ann Intern Med. 1999; 130: 461–470
  • Levey AS, Greene T, Kusek J, Beck G. A simplified equation to predict glomerular filtration rate from serum creatinine. J Am Soc Nephrol. 2000; 11: 155A
  • Poggio ED, Wang X, Greene T, Van Lente F, Hall PM. Performance of the modification of diet in renal disease and Cockcroft-Gault equations in the estimation of GFR in health and in chronic kidney disease. J Am Soc Nephrol. 2005; 16: 459–466
  • Froissart M, Rossert J, Jacquot C, Paillard M, Houillier P. Predictive performance of the modification of diet in renal disease and Cockcroft-Gault equations for estimating renal function. J Am Soc Nephrol. 2005; 16: 763–773
  • Klopper JF, Hauser W, Atkins HL, Eckelman W, Richards P. Evaluation of 99mTc-DTPA for the measurements of glomerular filtration rate. J Nucl Med. 1972; 14: 107–110
  • De Lange MJ, Piers Da, Kosternik JGW. Renal handling of technetium-99m-DMSA: evidence for glomerular filtration and peritubular uptake. J Nucl Med. 1989; 30: 1219–1223
  • Taylor A. Radiopharmaceuticals for the measurement of “functioning renal mass”. Evaluation of renal function and disease with radionuclides: the upper urinary tract, MD Blaufox. Krager, Basel 1989; 60–83
  • Bogdanova V. Glomerular filtration rate estimation using 99mTc-DTPA and single blood sample. Radiol Iugosl. 1980; 14: 327–329
  • Kawamura J, Hosakawa S, Fujita T, et al. Validity of 99mTc-dimercaptosuccinic acid renal uptake for an assessment of individual renal function. J Urol. 1987; 119: 305–309
  • Horak E, Hopfer SM, Sunderman FW. Spectrophotometric assay for urinary N-acetyl-β-D-glucosaminidase activity. Clin Chem. 1981; 27: 1180–1185
  • Shemesh O, Golbetz H, Kriss JP. Limitations of creatinine as a filtration marker in glomerulopathic patients. Kidney Int. 1985; 28: 830–838
  • Müller-Suur R, Gutsche HU. Tubular reabsorption of technetium-99m-DMSA. J Nucl Med. 1995; 36: 1654–1658
  • Rajić M, Bogićević M, Antić S, et al. Alteration of 99mTc-DMSA biodistribution in glomerulonephritis. Nuc Med Review. 2002; 5: 15–19
  • Rajić M, Bogićević M, Ilić S, Stefanović V. 99mTc-DMSA tubular fixation in Balkan endemic nephropathy patients. Nephron. 1996; 74: 221–222
  • Rajić M, Bogićević M, Ilić S, Antić S, Stefanovic V. 99mTc-dimercaptosuccinic acid tubular fixation in diabetic nephropathy patients. Int Urol Nephrol. 1999; 31: 839–843
  • Rossing P, Rossing K, Gaede P, Pedersen O, Parving HH. Monitoring kidney function in type 2 diabetic patients with incipient and overt diabetic nephropathy. Diabetes Care. 2006; 29: 1024–1030
  • Rigalleau V, Lasseur C, Perlemoine C, et al. Estimation of glomerular function and filtration rate in diabetic subjects: Cockcroft formula or modification of Diet in Renal Disease study equation?. Diabetes Care. 2005; 28: 838–843
  • O'Bryan GT, Hostetter TH. The renal hemodynamics basis of diabetic nephropathy. Semin Nephrol. 1997; 17: 93–100
  • Østerby R, Parving HH, Hommel E, Jørgensen H, Løkkegaard H. Glomerular structure and function in diabetic nephropathy. Diabetes. 1990; 39: 1057–1063
  • Bak M, Thomsen K, Christiansen T, et al. Renal enlargement precedes renal hyperfiltration in early experimental diabetes in rats. J Am Soc Nephrol. 2000; 11: 1287–1292
  • Brenner BM. Hemodynamically mediated glomerular injury and the progressive nature of kidney disease. Kidney Int. 1983; 23: 617–655
  • Sackman H, Tran-Van T, Tack I, Hanaire-Broutin H, Tauber JP, Ader JL. Renal functional reserve in Type 1 patients. Diabetologia. 1998; 41: 86–93
  • Bouhanick B, Gallois Y, Hadjadj S, de Casson FB, Marre M. Relationship between glomerular hyperfiltration and angiotensin converting enzyme insertion/depletion polymorphism in Type 1 children and adolescents. Diabetes Care. 1999; 22: 618–622
  • Bangstad HJ, Østerby R, Rudberg S, Hartmann A, Brabrand K, Hanssen KE. Kidney function and glomerulopathy over 8 years in young patients with Type I (insulin-dependent) diabetes mellitus and microalbuminuria. Diabetologia. 2002; 45: 253–261
  • Thomson SC, Deng A, Bao D, Satriano J. Ornithine decarboxylase, kidney size, and tubular hypothesis of glomerular hyperfiltration in experimental diabetes. J Clin Invest. 2001; 107: 217–224
  • Østerby R. Glomerular structural changes in type 1 (insulin-dependent) diabetes mellitus: causes, consequences, and prevention. Diabetologia. 1992; 35: 803–812
  • Pinter G, Atkins J. Role of the postglomerular microvessels in pathophysiology of diabetic nephropathy. Diabetes. 1991; 40: 791–795
  • D'Amico G. Tubulo-interstitial damage in glomerular disease: its role in the progression of the renal damage. Nephrol Dial Transplant. 1998; 13: 80–85
  • Bosomworth MP, Aparicio SR, Hay AWM. Urine N-acetyl-beta-D-glucosaminidase: A marker of tubular damage?. Nephrol Dial Transplant. 1999; 14: 620–628
  • Basturk T, Altuntas Y, Kurklu A, Aydin L, Eren N, Unsal A. Urinary N-acetyl β glucosaminidase as an earlier marker of diabetic nephropathy and influence of low-dose perinodopril/indapamide combination. Ren Fail. 2006; 28: 125–128
  • Stefanovic V, Rajic M, Mitic-Zlatkovic M, et al. Urinary PC-1 activity in patients with type 1 diabetes mellitus. Ann Clin Biochem. 2003; 23: 5–238
  • Schultz CJ, Dalton RN, Neil HAW, et al. Markers of renal tubular dysfunction measured annually do not predict risk of microalbuminuria in the first few years after diagnosis of Type 1 diabetes. Diabetologia. 2001; 44: 224–229
  • Mungan N, Yuksel B, Bakman M, Topaloglu AK, Ozer G. Urinary N-acetyl-β-D-glucosaminidase activity in type I diabetes mellitus. Indian Pediatr. 2003; 40: 410–414
  • Chiarelli F, Cipollone F, Romano F, et al. Increased circulating nitric oxide in young patients with type I diabetes and persistent microalbuminuria. Relation to glomerular hyperfiltration. Diabetes. 2000; 49: 1258–1263
  • Caramori ML, Fioretto P, Mauer M. Perspectives in diabetes. The need for early predictors of diabetic nephropathy risk. Is albumin excretion rate sufficient?. Diabetes. 2000; 49: 1399–1408
  • Tsalamandris C, Allen TJ, Gilbert RE, et al. Progressive decline in renal function in diabetic patients with and without albuminuria. Diabetes. 1994; 43: 649–655

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