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The Renal Papilla is a Niche for Adult Kidney Stem Cells

Overview
Journal J Clin Invest
Specialty General Medicine
Date 2004 Sep 17
PMID 15372103
Citations 164
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Abstract

Many adult organs contain stem cells, which are pluripotent and are involved in organ maintenance and repair after injury. In situ, these cells often have a low cycling rate and locate in specialized regions (niches). To detect such cells in the kidney, we administered a pulse of the nucleotide bromodeoxyuridine (BrdU) to rat and mouse pups and, after a long (more than 2-month) chase, examined whether the kidney contained a population of low-cycling cells. We found that in the adult kidney, BrdU-retaining cells were very sparse except in the renal papilla, where they were numerous. During the repair phase of transient renal ischemia, these cells entered the cell cycle and the BrdU signal quickly disappeared from the papilla, despite the absence of apoptosis in this part of the kidney. In vitro isolation of renal papillary cells showed them to have a plastic phenotype that could be modulated by oxygen tension and that when injected into the renal cortex, they incorporated into the renal parenchyma. In addition, like other stem cells, papillary cells spontaneously formed spheres. Single-cell clones of these cells coexpressed mesenchymal and epithelial proteins and gave rise to myofibroblasts, cells expressing neuronal markers, and cells of uncharacterized phenotype. These data indicate that the renal papilla is a niche for adult kidney stem cells.

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References
1.
Smith A . Mouse embryo stem cells: their identification, propagation and manipulation. Semin Cell Biol. 1992; 3(6):385-99. DOI: 10.1016/1043-4682(92)90010-s. View

2.
Sanerkin N . Chronic phenacetin nephropathy. (With particular reference to the relationship between renal papillary necrosis and "chronic interstitial nephritis"). Br J Urol. 1966; 38(4):361-70. DOI: 10.1111/j.1464-410x.1966.tb09722.x. View

3.
Oliver J, Barasch J, Yang J, Herzlinger D, Al-Awqati Q . Metanephric mesenchyme contains embryonic renal stem cells. Am J Physiol Renal Physiol. 2002; 283(4):F799-809. DOI: 10.1152/ajprenal.00375.2001. View

4.
Powars D, Chan L, Niland J, Hiti A, Opas L, JOHNSON C . Chronic renal failure in sickle cell disease: risk factors, clinical course, and mortality. Ann Intern Med. 1991; 115(8):614-20. DOI: 10.7326/0003-4819-115-8-614. View

5.
Kincaid-Smith P . Pathogenesis of the renal lesion associated with the abuse of analgesics. Lancet. 1967; 1(7495):859-62. DOI: 10.1016/s0140-6736(67)91425-0. View