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  lüll Stem cell technology for the treatment of acute and chronic renal failure Pino CJ; Humes HDTransl Res  2010[Sep]; 156 (3): 161-8Acute and chronic renal failure are disorders with high rates of morbidity and  mortality. Current treatment is based upon conventional dialysis to provide  volume regulation and small solute clearance. There is growing recognition that  renal failure is a complex disease state requiring a multifactorial therapy to  address the short-comings of the conventional monofactorial approach. Kidney  transplantation remains the most effective treatment, however, organ availability  lags far behind demand. Many key kidney functions including gluconeogenesis,  ammoniagenesis, metabolism of glutathione, catabolism of important peptide  hormones, growth factors, and cytokines critical to multiorgan homeostasis and  immunomodulation are provided by renal tubule cells. Therefore, cell-based  therapies are promising multifactorial treatment approaches. In this review,  current stem cell technologies including adult stem cells, embryonic stem cells  and induced pluripotent stem cells will be discussed as cell sources for the  treatment of acute and chronic renal failure.|Acute Kidney Injury/*surgery/therapy[MESH]|Adult[MESH]|Cell Differentiation[MESH]|Embryonic Stem Cells/transplantation[MESH]|Hemofiltration/methods[MESH]|Homeostasis[MESH]|Humans[MESH]|Kidney Failure, Chronic/*surgery/therapy[MESH]|Kidney Tubules/physiology[MESH]|Kidney/cytology/pathology/physiology[MESH]|Kidneys, Artificial[MESH]|Mesenchymal Stem Cell Transplantation/methods[MESH]|Mesenchymal Stem Cells/cytology[MESH]|Morphogenesis[MESH]|Renal Replacement Therapy/methods[MESH]|Stem Cell Transplantation/*methods[MESH]|Ureter/physiology/physiopathology[MESH] |