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Mannose-binding lectin as a predictor of microalbuminuria in type 1 diabetes: an inception cohort study
Peter Hovind1, Troels Krarup Hansen, Lise Tarnow
1Steno Diabetes Center, Niels Steensens Vej 2, DK-2820 Gentofte, Denmark. phovind@dadlnet.dk
Abstract:
Inflammation and complement activation via the mannose-binding lectin (MBL) pathway have been suggested to play a role in the pathogenesis of diabetic microvascular complications. The association between the complement-activating protein MBL and the development of persistent microalbuminuria was evaluated in an inception cohort of 286 newly diagnosed type 1 diabetic patients consecutively admitted to the Steno Diabetes Center between 1 September 1979 and 31 August 1984. Serum MBL was measured with an immunofluorometric assay in 270 of the patients (159 men) after 3 years of diabetes duration. During the median (range) follow-up period of 18.0 (1.0-21.8) years, 75 patients subsequently progressed to persistent micro- or macroalbuminuria (urinary albumin excretion rate >30 mg/24 h). In patients with MBL levels above the median (1,597 microg/l), the cumulative incidence of persistent micro- or macroalbuminuria was 41% (CI 31-50) as compared with 26% (CI 17-34) in patients with MBL levels below the median (log-rank test, P = 0.003). In a Cox proportional hazard model with sex and age as fixed covariates, MBL was independently associated with later development of persistent micro- or macroalbuminuria (hazard ratio 1.21 [CI 1.02-1.42] per 1,000 microg/l increase in MBL; P = 0.03) after adjusting for possible confounders. In our study, high levels of MBL early in the course of type 1 diabetes was significantly associated with later development of persistent micro- or macroalbuminuria, suggesting that complement activation initiated by MBL may be involved in the pathogenesis of diabetic microvascular complications.
Insights
High mannose-binding lectin (MBL) levels in early type 1 diabetes are linked to developing persistent microalbuminuria. This suggests MBL-initiated complement activation may contribute to diabetic microvascular complications.
Area of Science:
- Immunology
- Endocrinology
- Nephrology
Background:
- Diabetic microvascular complications are a major cause of morbidity.
- The mannose-binding lectin (MBL) pathway of complement activation is implicated in inflammation.
- MBL's role in diabetic kidney disease pathogenesis requires further elucidation.
Purpose of the Study:
- To investigate the association between MBL levels and the development of persistent microalbuminuria in newly diagnosed type 1 diabetes patients.
- To determine if MBL is an independent risk factor for diabetic microvascular complications.
Main Methods:
- Prospective inception cohort study of 286 type 1 diabetes patients.
- Serum MBL levels measured by immunofluorometric assay.
- Long-term follow-up (median 18 years) for microalbuminuria development using Cox proportional hazard models.
Main Results:
- Patients with MBL levels above the median had a significantly higher cumulative incidence of persistent microalbuminuria (41% vs. 26%).
- MBL was independently associated with the later development of microalbuminuria (HR 1.21 per 1,000 microg/l increase).
- High MBL levels early in diabetes course predicted future microalbuminuria.
Conclusions:
- Elevated MBL levels in early type 1 diabetes are a significant risk factor for developing persistent microalbuminuria.
- MBL-initiated complement activation may play a role in the pathogenesis of diabetic microvascular complications.
- MBL could be a potential therapeutic target for preventing diabetic kidney disease.
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