Nephron endowment, defined during the fetal period, dictates renal and related cardiovascular health throughout life. We show here that, despite its negative effects on kidney growth, genetic increase of GDNF prolongs the nephrogenic program beyond its normal cessation. Multi-stage mechanistic analysis revealed that excess GDNF maintains nephron progenitors and nephrogenesis through increased expression of its secreted targets and augmented WNT signaling, leading to a two-part effect on nephron progenitor maintenance. Abnormally high GDNF in embryonic kidneys upregulates its known targets but also Wnt9b and Axin2, with concomitant deceleration of nephron progenitor proliferation. Decline of GDNF levels in postnatal kidneys normalizes the ur...
AbstractThe kidney develops by cycles of ureteric bud branching and nephron formation. The cycles be...
Nephrons, the functional units of the kidney, develop from progenitor cells (cap mesenchyme [CM]) su...
SummaryA balance between Six2-dependent self-renewal and canonical Wnt signaling-directed commitment...
Nephron endowment, defined during the fetal period, dictates renal and related cardiovascular health...
Mechanisms controlling ureter lenght and the position of the kidney are poorly understood. Glial cel...
AbstractThe secreted signaling molecule GDNF is expressed in the metanephric mesenchyme and has rece...
Nephron endowment in glial cell line-derived neurotrophic factor (GDNF) heterozygous mice.Background...
A balance between Six2-dependent self-renewal and canonical Wnt signaling-directed commitment regula...
SummaryNephron progenitors in the embryonic kidney propagate while generating differentiated nephron...
SummaryNephrons, the functional units of the kidney, develop from progenitor cells (cap mesenchyme [...
SummaryThe identity of niche signals necessary to maintain embryonic nephron progenitors is unclear....
BACKGROUND: Nephron number is a major determinant of long-term renal function and cardiovascular ris...
Background: During normal human kidney development, nephrogenesis (the formation of nephrons) is co...
<p><b>(A)</b> Schematic representation of <i>Gdnf</i> expression (blue) in the mouse kidney at E11.5...
Intrauterine growth restriction (IUGR) is a risk factor for hypertension (HT) and chronic renal dise...
AbstractThe kidney develops by cycles of ureteric bud branching and nephron formation. The cycles be...
Nephrons, the functional units of the kidney, develop from progenitor cells (cap mesenchyme [CM]) su...
SummaryA balance between Six2-dependent self-renewal and canonical Wnt signaling-directed commitment...
Nephron endowment, defined during the fetal period, dictates renal and related cardiovascular health...
Mechanisms controlling ureter lenght and the position of the kidney are poorly understood. Glial cel...
AbstractThe secreted signaling molecule GDNF is expressed in the metanephric mesenchyme and has rece...
Nephron endowment in glial cell line-derived neurotrophic factor (GDNF) heterozygous mice.Background...
A balance between Six2-dependent self-renewal and canonical Wnt signaling-directed commitment regula...
SummaryNephron progenitors in the embryonic kidney propagate while generating differentiated nephron...
SummaryNephrons, the functional units of the kidney, develop from progenitor cells (cap mesenchyme [...
SummaryThe identity of niche signals necessary to maintain embryonic nephron progenitors is unclear....
BACKGROUND: Nephron number is a major determinant of long-term renal function and cardiovascular ris...
Background: During normal human kidney development, nephrogenesis (the formation of nephrons) is co...
<p><b>(A)</b> Schematic representation of <i>Gdnf</i> expression (blue) in the mouse kidney at E11.5...
Intrauterine growth restriction (IUGR) is a risk factor for hypertension (HT) and chronic renal dise...
AbstractThe kidney develops by cycles of ureteric bud branching and nephron formation. The cycles be...
Nephrons, the functional units of the kidney, develop from progenitor cells (cap mesenchyme [CM]) su...
SummaryA balance between Six2-dependent self-renewal and canonical Wnt signaling-directed commitment...