dentification of sequence variants robustly associated with predisposition to diabetic kidney disease (DKD) has the potential to provide insights into the pathophysiological mechanisms responsible. We conducted a genome-wide association study (GWAS) of DKD in type 2 diabetes (T2D) using eight complementary dichotomous and quantitative DKD phenotypes: the principal dichotomous analysis involved 5,717 T2D subjects, 3,345 with DKD. Promising association signals were evaluated in up to 26,827 subjects with T2D (12,710 with DKD). A combined T1D+T2D GWAS was performed using complementary data available for subjects with T1D, which, with replication samples, involved up to 40,340 subjects with diabetes (18,582 with DKD). Analysis of specific DKD p...
Identification of sequence variants robustly associated with predisposition to diabetic kidney disea...
Identification of sequence variants robustly associated with predisposition to diabetic kidney disea...
Aims/hypothesis Diabetic kidney disease (DKD) is the leading cause of kidney failure and has a subst...
dentification of sequence variants robustly associated with predisposition to diabetic kidney diseas...
Identification of sequence variants robustly associated with predisposition to diabetic kidney disea...
Identification of sequence variants robustly associated with predisposition to diabetic kidney disea...
Aims/hypothesis Diabetic kidney disease (DKD) is the leading cause of kidney failure and has a subst...
dentification of sequence variants robustly associated with predisposition to diabetic kidney diseas...
Identification of sequence variants robustly associated with predisposition to diabetic kidney disea...
Identification of sequence variants robustly associated with predisposition to diabetic kidney disea...
Aims/hypothesis Diabetic kidney disease (DKD) is the leading cause of kidney failure and has a subst...