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Items: 1 to 20 of 116

1.

Lower levels of total HDL and HDL3 cholesterol are associated with albuminuria in normoalbuminuric Type 1 diabetic patients.

Bulum T, Kolaric B, Duvnjak L.

J Endocrinol Invest. 2013 Sep;36(8):574-8. doi: 10.3275/8850. Epub 2013 Feb 12.

PMID:
23404243
2.

[Lower levels of HDL2 cholesterol are associated with microalbuminuria in patients with type 1 diabetes].

Bulum T, Duvnjak L, Prkacin I.

Acta Med Croatica. 2011;65(3):243-50. Croatian.

PMID:
22359892
3.

Total and LDL cholesterol are associated with glomerular filtration rate in normoalbuminuric type 1 diabetic patients.

Bulum T, Kolarić B, Prkacin I, Duvnjak L.

Coll Antropol. 2013 Sep;37(3):771-6.

PMID:
24308215
4.

Resting heart rate is associated with nonproliferative retinopathy in normoalbuminuric type 1 diabetic patients.

Bulum T, Blaslov K, Duvnjak L.

J Clin Hypertens (Greenwich). 2013 Aug;15(8):579-83. doi: 10.1111/jch.12130. Epub 2013 May 17.

5.

Hyperfiltration in normoalbuminuric type 1 diabetic patients: relationship with urinary albumin excretion rate.

Bulum T, Kolarić B, Prkacin I, Duvnjak L.

Coll Antropol. 2013 Jun;37(2):471-6.

PMID:
23940992
6.

Albuminuria and 24-h ambulatory blood pressure in normoalbuminuric and microalbuminuric NIDDM patients. A longitudinal study.

Nielsen S, Schmitz A, Poulsen PL, Hansen KW, Mogensen CE.

Diabetes Care. 1995 Nov;18(11):1434-41.

PMID:
8722066
8.

24-h blood pressure and autonomic function is related to albumin excretion within the normoalbuminuric range in IDDM patients.

Poulsen PL, Ebbehøj E, Hansen KW, Mogensen CE.

Diabetologia. 1997 Jun;40(6):718-25.

PMID:
9222653
9.
10.

Risk factors for development of microalbuminuria in diabetic and nondiabetic normoalbuminuric hypertensives with high or very high cardiovascular risk - a twelve-month follow-up study.

Cotter J, Oliveira P, Cunha P, Polónia J.

Nephron Clin Pract. 2009;113(1):c8-15. doi: 10.1159/000228070. Epub 2009 Jul 10.

PMID:
19590230
12.
13.

Relationship between lipoprotein profile and urinary albumin excretion in type II diabetic patients with stable metabolic control.

Reverter JL, Sentí M, Rubiés-Prat J, Lucas A, Salinas I, Pizarro E, Pedro-Botet J, Romero R, Sanmartí A.

Diabetes Care. 1994 Mar;17(3):189-94.

PMID:
8174446
14.
15.

Prevalence of abnormal lipid profiles and the relationship with the development of microalbuminuria in adolescents with type 1 diabetes.

Marcovecchio ML, Dalton RN, Prevost AT, Acerini CL, Barrett TG, Cooper JD, Edge J, Neil A, Shield J, Widmer B, Todd JA, Dunger DB.

Diabetes Care. 2009 Apr;32(4):658-63. doi: 10.2337/dc08-1641. Epub 2009 Jan 26.

16.

Raised serum sialic acid concentration precedes onset of microalbuminuria in IDDM. A 10-year follow-up study.

Yokoyama H, Jensen JS, Myrup B, Mathiesen ER, Rønn B, Deckert T.

Diabetes Care. 1996 May;19(5):435-40.

PMID:
8732705
17.

Factors associated with plasma lipids and lipoproteins in type 1 diabetes mellitus: the EURODIAB IDDM Complications Study.

Idzior-Walus B, Mattock MB, Solnica B, Stevens L, Fuller JH; EURODIAB IDDM Complications Study Group.

Diabet Med. 2001 Oct;18(10):786-96.

PMID:
11678968
18.

Decreased HDL2 and HDL3 cholesterol, Apo A-I and Apo A-II, and increased risk of myocardial infarction.

Buring JE, O'Connor GT, Goldhaber SZ, Rosner B, Herbert PN, Blum CB, Breslow JL, Hennekens CH.

Circulation. 1992 Jan;85(1):22-9.

PMID:
1728453
19.

Metabolic characteristics and urine albumin excretion rate in relation to pubertal maturation in Type 1 diabetes.

Riihimaa PH, Knip M, Hirvelä H, Tapanainen P.

Diabetes Metab Res Rev. 2000 Jul-Aug;16(4):269-75.

PMID:
10934455
20.

High rate of regression from micro-macroalbuminuria to normoalbuminuria in children and adolescents with type 1 diabetes treated or not with enalapril: the influence of HDL cholesterol.

Salardi S, Balsamo C, Zucchini S, Maltoni G, Scipione M, Rollo A, Gualandi S, Cicognani A.

Diabetes Care. 2011 Feb;34(2):424-9. doi: 10.2337/dc10-1177. Epub 2011 Jan 7.

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