The kidney has several defense mechanisms to avert nephrocalcinosis by preventing intratubular crystal formation and adherence. Little is known about the fate of luminally adhered crystals. In order to study post–crystal adhesion defense mechanisms we quantified the number and morphology of crystal-containing tubules in rats at various time points following ethylene glycol administration as well as in renal biopsies of patients diagnosed with nephrocalcinosis of different etiology. In rats, nephrocalcinosis was completely cleared by epithelial overgrowth of adherent crystals, which were then translocated to the interstitium and subsequently disintegrated. These processes correlated with a low to moderate infiltration of inflammatory cells. ...
Crystal retention within the renal tubules is essential for nephrolithiasis and the development of u...
Crystal retention within the renal tubules is essential for nephrolithiasis and the development of u...
Crystal retention within the renal tubules is essential for nephrolithiasis and the development of u...
AIMS: Calcium nephrolithiasis (CN) is a multifactorial disorder in which environmental and dietary f...
Environmental and diet have a major role in calcium nephrolithiasis by affecting urine saturation, b...
Environmental and diet have a major role in calcium nephrolithiasis by affecting urine saturation, b...
Internalization of calcium oxalate crystals by renal tubular cells: A nephron segment–specific proce...
Environment and diet have a major role in calcium nephrolithiasis by affecting urine saturation, but...
Environment and diet have a major role in calcium nephrolithiasis by affecting urine saturation, but...
Adhesion, internalization and metabolism of calcium oxalate monohydrate crystals by renal epithelial...
Adhesion, internalization and metabolism of calcium oxalate monohydrate crystals by renal epithelial...
The rate of disease progression in autosomal-dominant (AD) polycystic kidney disease (PKD) exhibits ...
Hyperoxaluria associated with renal deposition of calcium oxalate (CaOx) crystals causes renal injur...
The production of concentrated urine inevitably leads to the precipitation of poorly soluble waste s...
Cell type-specific acquired protection from crystal adherence by renal tubule cells in culture.Backg...
Crystal retention within the renal tubules is essential for nephrolithiasis and the development of u...
Crystal retention within the renal tubules is essential for nephrolithiasis and the development of u...
Crystal retention within the renal tubules is essential for nephrolithiasis and the development of u...
AIMS: Calcium nephrolithiasis (CN) is a multifactorial disorder in which environmental and dietary f...
Environmental and diet have a major role in calcium nephrolithiasis by affecting urine saturation, b...
Environmental and diet have a major role in calcium nephrolithiasis by affecting urine saturation, b...
Internalization of calcium oxalate crystals by renal tubular cells: A nephron segment–specific proce...
Environment and diet have a major role in calcium nephrolithiasis by affecting urine saturation, but...
Environment and diet have a major role in calcium nephrolithiasis by affecting urine saturation, but...
Adhesion, internalization and metabolism of calcium oxalate monohydrate crystals by renal epithelial...
Adhesion, internalization and metabolism of calcium oxalate monohydrate crystals by renal epithelial...
The rate of disease progression in autosomal-dominant (AD) polycystic kidney disease (PKD) exhibits ...
Hyperoxaluria associated with renal deposition of calcium oxalate (CaOx) crystals causes renal injur...
The production of concentrated urine inevitably leads to the precipitation of poorly soluble waste s...
Cell type-specific acquired protection from crystal adherence by renal tubule cells in culture.Backg...
Crystal retention within the renal tubules is essential for nephrolithiasis and the development of u...
Crystal retention within the renal tubules is essential for nephrolithiasis and the development of u...
Crystal retention within the renal tubules is essential for nephrolithiasis and the development of u...