Modulation of salt transport rate affects DNA synthesis in vivo in rat renal tubules. In adult male Wistar rats we investigated whether cell proliferation contributes to salt load-induced hypertrophy of distal tubules. In one treatment group salt transport in the thick ascending limb (TAL) was inhibited by furosemide (7.5 mg/100 g body wt/24 hr, via osmotic minipump) and stimulated in the successive distal segments by simultaneous high salt intake (F + Salt). Controls without furosemide treatment had a standard salt intake. All animals received the thymidine analog bromodeoxyuridine (BrdU) during 24 and 72 hours, respectively. In ciyostat sections of the perfusion-fixed kidneys DNA synthesis was assessed by immunohistochemistry for BrdU, an...
We searched for morphological evidence to support the hypothesis that stem cells are responsible for...
We searched for morphological evidence to support the hypothesis that stem cells are responsible for...
We investigated the proliferative capacity of renal proximal tubular cells in healthy rats. Previous...
Modulation of salt transport rate affects DNA synthesis in vivo in rat renal tubules. In adult male ...
Hyperplasia precedes increased glomerular filtration rate in rat remnant kidney. Using 3H-thymidine ...
Abstract. Histoautoradiography was done to evaluate cell turnover by measuring levels of DNA synthes...
The renal collecting system (CS) is composed of segment-specific (SS) and intercalated (IC) cells. T...
Compensatory renal hypertrophy is mediated by a cell cycle-dependent mechanism.BackgroundTwo mechani...
Nephron specific regulation of chloride channel CLC-K2 mRNA in the ratBackgroundThis study investiga...
Expression of salt and urea transporters in rat kidney during cisplatin-induced polyuria.BackgroundC...
Selective ADH-induced hypertrophy of the medullary thick ascending limb in Brattleboro rats. A morph...
Aside from the normal, sporadic turnover of epithelial cells along the adult nephron, most somatic c...
A cell cycle-dependent mechanism of renal tubule epithelial cell hypertrophy. The response of renal ...
We developed a dynamic model of a rat proximal convoluted tubule cell in order to investigate cell v...
Inhibition of angiotensin-converting enzyme modulates structural and functional adaptation to loop d...
We searched for morphological evidence to support the hypothesis that stem cells are responsible for...
We searched for morphological evidence to support the hypothesis that stem cells are responsible for...
We investigated the proliferative capacity of renal proximal tubular cells in healthy rats. Previous...
Modulation of salt transport rate affects DNA synthesis in vivo in rat renal tubules. In adult male ...
Hyperplasia precedes increased glomerular filtration rate in rat remnant kidney. Using 3H-thymidine ...
Abstract. Histoautoradiography was done to evaluate cell turnover by measuring levels of DNA synthes...
The renal collecting system (CS) is composed of segment-specific (SS) and intercalated (IC) cells. T...
Compensatory renal hypertrophy is mediated by a cell cycle-dependent mechanism.BackgroundTwo mechani...
Nephron specific regulation of chloride channel CLC-K2 mRNA in the ratBackgroundThis study investiga...
Expression of salt and urea transporters in rat kidney during cisplatin-induced polyuria.BackgroundC...
Selective ADH-induced hypertrophy of the medullary thick ascending limb in Brattleboro rats. A morph...
Aside from the normal, sporadic turnover of epithelial cells along the adult nephron, most somatic c...
A cell cycle-dependent mechanism of renal tubule epithelial cell hypertrophy. The response of renal ...
We developed a dynamic model of a rat proximal convoluted tubule cell in order to investigate cell v...
Inhibition of angiotensin-converting enzyme modulates structural and functional adaptation to loop d...
We searched for morphological evidence to support the hypothesis that stem cells are responsible for...
We searched for morphological evidence to support the hypothesis that stem cells are responsible for...
We investigated the proliferative capacity of renal proximal tubular cells in healthy rats. Previous...