Access the full text.
Sign up today, get DeepDyve free for 14 days.
Fangming Lin, Ashley Moran, P. Igarashi (2005)
Intrarenal cells, not bone marrow-derived cells, are the major source for regeneration in postischemic kidney.The Journal of clinical investigation, 115 7
T. Fang, M. Alison, H. Cook, R. Jeffery, N. Wright, R. Poulsom (2005)
Proliferation of bone marrow-derived cells contributes to regeneration after folic acid-induced acute tubular injury.Journal of the American Society of Nephrology : JASN, 16 6
F. Haddy (2004)
Acute renal failure and sepsis.The New England journal of medicine, 351 22
M. Statter, K. Fahrner, E. Barksdale, D. Parks, R. Flavell (1989)
CORRELATION OF FETAL KIDNEY AND TESTIS CONGENIC GRAFT SURVIVAL WITH REDUCED MAJOR HISTOCOMPATIBILITY COMPLEX BURDENTransplantation, 47
B. Dekel, T. Burakova, Herzl Ben-Hur, H. Marcus, Rachel Oren, Joseph Laufer, Y. Reisner (1997)
Engraftment of human kidney tissue in rat radiation chimera: II. Human fetal kidneys display reduced immunogenicity to adoptively transferred human peripheral blood mononuclear cells and exhibit rapid growth and development.Transplantation, 64 11
A. Maeshima, Shin Yamashita, Y. Nojima (2003)
Identification of renal progenitor-like tubular cells that participate in the regeneration processes of the kidney.Journal of the American Society of Nephrology : JASN, 14 12
M. Morigi, M. Introna, B. Imberti, D. Corna, M. Abbate, Cinzia Rota, Daniela Rottoli, A. Benigni, N. Perico, C. Zoja, A. Rambaldi, A. Remuzzi, G. Remuzzi (2008)
Human Bone Marrow Mesenchymal Stem Cells Accelerate Recovery of Acute Renal Injury and Prolong Survival in MiceSTEM CELLS, 26
N. Imai, K. Hishikawa, T. Marumo, J. Hirahashi, Toshihiko Inowa, Y. Matsuzaki, H. Okano, T. Kitamura, D. Salant, T. Fujita (2007)
Inhibition of Histone Deacetylase Activates Side Population Cells in Kidney and Partially Reverses Chronic Renal InjurySTEM CELLS, 25
F. Brivet, D. Kleinknecht, P. Loirat, P. Landais (1996)
Acute renal failure in intensive care units : causes, outcome, and prognostic factors of hospital mortality : a prospective, multicenter studyCritical Care Medicine, 24
B. Dekel, T. Burakova, F. Arditti, S. Reich-Zeliger, O. Milstein, S. Aviel‐Ronen, G. Rechavi, N. Friedman, N. Kaminski, J. Passwell, Y. Reisner (2003)
Human and porcine early kidney precursors as a new source for transplantationNature Medicine, 9
A. Collins, R. Foley, C. Herzog, B. Chavers, D. Gilbertson, A. Ishani, B. Kasiske, Jiannong Liu, L. Mau, Marshall McBean, Anne Murray, W. Peter, J. Xue, Qiao Fan, Haifeng Guo, Qi Li, Shuling Li, Suying Li, Yi Peng, Yang Qiu, Tricia Roberts, M. Skeans, J. Snyder, C. Solid, Changchun Wang, E. Weinhandl, D. Zaun, Rui Zhang, Cheryl Arko, Shu‐Cheng Chen, F. Dalleska, F. Daniels, S. Dunning, J. Ebben, Eric Frazier, Christopher Hanzlik, Roger Johnson, Daniel Sheets, Xinyue Wang, B. Forrest, E. Constantini, S. Everson, P. Eggers, L. Agodoa (2008)
Excerpts from the United States Renal Data System 2007 annual data report.American journal of kidney diseases : the official journal of the National Kidney Foundation, 51 1 Suppl 1
Fangming Lin, Kimberly Cordes, Linheng Li, L. Hood, W. Couser, S. Shankland, P. Igarashi (2003)
Hematopoietic stem cells contribute to the regeneration of renal tubules after renal ischemia-reperfusion injury in mice.Journal of the American Society of Nephrology : JASN, 14 5
B. Humphreys, B. Humphreys, M. Valerius, Akio Kobayashi, Joshua Mugford, Savuth Soeung, J. Duffield, A. McMahon, J. Bonventre, J. Bonventre, J. Bonventre (2008)
Intrinsic epithelial cells repair the kidney after injury.Cell stem cell, 2 3
R. Lanza, H. Chung, J. Yoo, P. Wettstein, C. Blackwell, N. Borson, E. Hofmeister, G. Schuch, S. Soker, C. Moraes, M. West, A. Atala (2002)
Generation of histocompatible tissues using nuclear transplantationNature Biotechnology, 20
S Gupta, ME Rosenberg (2008)
Stem Cells and Regenerative Medicine
T. Yokoo, Akira Fukui, T. Ohashi, Y. Miyazaki, Y. Utsunomiya, T. Kawamura, T. Hosoya, M. Okabe, E. Kobayashi (2006)
Xenobiotic kidney organogenesis from human mesenchymal stem cells using a growing rodent embryo.Journal of the American Society of Nephrology : JASN, 17 4
C. Sagrinati, G. Netti, B. Mazzinghi, E. Lazzeri, F. Liotta, Francesca Frosali, E. Ronconi, Claudia Meini, M. Gacci, R. Squecco, M. Carini, L. Gesualdo, F. Francini, E. Maggi, F. Annunziato, L. Lasagni, M. Serio, S. Romagnani, P. Romagnani (2006)
Isolation and characterization of multipotent progenitor cells from the Bowman's capsule of adult human kidneys.Journal of the American Society of Nephrology : JASN, 17 9
Sandeep Gupta, M. Rosenberg (2008)
Do Stem Cells Exist in the Adult Kidney?American Journal of Nephrology, 28
M. Rosenberg, Sandeep Gupta (2007)
Stem cells and the kidney: where do we go from here?Journal of the American Society of Nephrology : JASN, 18 12
T. Yokoo, Akira Fukui, Kei Matsumoto, T. Ohashi, Y. Sado, Hideaki Suzuki, T. Kawamura, M. Okabe, T. Hosoya, E. Kobayashi (2008)
Generation of a Transplantable Erythropoietin-Producer Derived From Human Mesenchymal Stem CellsTransplantation, 85
Sandeep Gupta, C. Verfaillie, D. Chmielewski, S. Kren, K. Eidman, J. Connaire, Y. Heremans, T. Lund, M. Blackstad, Yue-hua Jiang, A. Luttun, M. Rosenberg (2006)
Isolation and characterization of kidney-derived stem cells.Journal of the American Society of Nephrology : JASN, 17 11
M. Herrera, B. Bussolati, S. Bruno, V. Fonsato, G. Romanazzi, G. Camussi (2004)
Mesenchymal stem cells contribute to the renal repair of acute tubular epithelial injury.International journal of molecular medicine, 14 6
J. Duffield, J. Bonventre (2005)
Kidney tubular epithelium is restored without replacement with bone marrow-derived cells during repair after ischemic injury.Kidney international, 68 5
M. Iwasaki, Y. Adachi, K. Minamino, Yasuhiro Suzuki, Yuming Zhang, M. Okigaki, K. Nakano, Y. Koike, Jianfeng Wang, H. Mukaide, S. Taketani, Y. Mori, Hakuo Takahashi, T. Iwasaka, S. Ikehara (2005)
Mobilization of bone marrow cells by G-CSF rescues mice from cisplatin-induced renal failure, and M-CSF enhances the effects of G-CSF.Journal of the American Society of Nephrology : JASN, 16 3
Sandeep Gupta, M. Rosenberg (2008)
Renal stem cells
Schrier (2004)
Acute renal failure and sepsisN Engl J Med, 351
J. Tumlin, R. Wali, W. Williams, P. Murray, A. Tolwani, A. Vinnikova, H. Szerlip, Jiuming Ye, E. Paganini, L. Dworkin, Kevin Finkel, M. Kraus, H. Humes (2008)
Efficacy and safety of renal tubule cell therapy for acute renal failure.Journal of the American Society of Nephrology : JASN, 19 5
Alfonso Velasco, Orion Hegre (1989)
Decreased immunogenicity of fetal kidneys: the role of passenger leukocytes.Journal of pediatric surgery, 24 1
F. Brivet, D. Kleinknecht, P. Loirat, P. Landais (1996)
Acute renal failure in intensive care units--causes, outcome, and prognostic factors of hospital mortality; a prospective, multicenter study. French Study Group on Acute Renal Failure.Critical care medicine, 24 2
B. Dekel, H. Marcus, Ben Herzel, W. Böcher, J. Passwell, Y. Reisner (2000)
In vivo modulation of the allogeneic immune response by human fetal kidneys: the role of cytokines, chemokines, and cytolytic effector molecules.Transplantation, 69 7
B. Bussolati, S. Bruno, C. Grange, S. Buttiglieri, M. Deregibus, D. Cantino, G. Camussi (2005)
Isolation of renal progenitor cells from adult human kidney.The American journal of pathology, 166 2
H. Iwatani, Takahito Ito, E. Imai, Y. Matsuzaki, A. Suzuki, Masaya Yamato, M. Okabe, M. Hori (2004)
Hematopoietic and nonhematopoietic potentials of Hoechst(low)/side population cells isolated from adult rat kidney.Kidney international, 65 5
A. Collins, R. Foley, C. Herzog, B. Chavers, D. Gilbertson, A. Ishani, B. Kasiske, Jiannong Liu, L. Mau, Marshall McBean, Anne Murray, Wendy Peter, J. Xue, Qiao Fan, Haifeng Guo, Qingsheng Li, Shuling Li, Suying Li, Yi Peng, Yang Qiu, Tricia Roberts, M. Skeans, J. Snyder, C. Solid, Changchun Wang, E. Weinhandl, D. Zaun, Rui Zhang, Cheryl Arko, S. Chen, F. Dalleska, F. Daniels, S. Dunning, J. Ebben, Eric Frazier, Christopher Hanzlik, Roger Johnson, Daniel Sheets, Xinyue Wang, B. Forrest, E. Constantini, S. Everson, P. Eggers, L. Agodoa (2008)
Excerpts from the United States Renal Data System 2007 annual data report.American Journal of Kidney Diseases, 51
M. Masuya, C. Drake, P. Fleming, C. Reilly, H. Zeng, W. Hill, A. Martin-Studdard, D. Hess, M. Ogawa (2003)
Hematopoietic origin of glomerular mesangial cells.Blood, 101 6
H. Ott, Thomas Matthiesen, Saik-Kia Goh, L. Black, S. Kren, T. Netoff, Doris Taylor (2008)
Perfusion-decellularized matrix: using nature's platform to engineer a bioartificial heartNature Medicine, 14
(2008)
Atlas of Chronic Kidney Disease and End‐Stage Renal Disease in the United States
M. Nicola, C. Carlo-Stella, M. Magni, M. Milanesi, P. Longoni, P. Matteucci, S. Grisanti, A. Gianni (2002)
Human bone marrow stromal cells suppress T-lymphocyte proliferation induced by cellular or nonspecific mitogenic stimuli.Blood, 99 10
F. Tögel, Zhuma Hu, K. Weiss, J. Isaac, C. Lange, C. Westenfelder (2005)
Administered mesenchymal stem cells protect against ischemic acute renal failure through differentiation-independent mechanisms.American journal of physiology. Renal physiology, 289 1
U. Kunter, S. Rong, P. Boor, F. Eitner, G. Müller-Newen, Ž. Djurić, Claudia Roeyen, A. Konieczny, T. Ostendorf, L. Villa, M. Milovanceva-Popovska, D. Kerjaschki, J. Floege (2007)
Mesenchymal stem cells prevent progressive experimental renal failure but maldifferentiate into glomerular adipocytes.Journal of the American Society of Nephrology : JASN, 18 6
K. Hishikawa, T. Marumo, S. Miura, A. Nakanishi, Y. Matsuzaki, Katsunori Shibata, Tomoko Ichiyanagi, Hiroko Kohike, Takuya Komori, I. Takahashi, O. Takase, N. Imai, Masahiro Yoshikawa, Toshihiko Inowa, M. Hayashi, T. Nakaki, H. Nakauchi, H. Okano, T. Fujita (2005)
Musculin/MyoR is expressed in kidney side population cells and can regulate their functionThe Journal of Cell Biology, 169
D. Marshall, M. Dilworth, M. Clancy, C. Bravery, N. Ashton (2007)
Increasing renal mass improves survival in anephric rats following metanephros transplantationExperimental Physiology, 92
U. Kunter, S. Rong, Ž. Djurić, P. Boor, G. Müller-Newen, Donghai Yu, J. Floege (2006)
Transplanted mesenchymal stem cells accelerate glomerular healing in experimental glomerulonephritis.Journal of the American Society of Nephrology : JASN, 17 8
A. Bartholomew, C. Sturgeon, M. Siatskas, K. Ferrer, K. Mcintosh, S. Patil, W. Hardy, S. Devine, D. Ucker, R. Deans, A. Moseley, R. Hoffman (2002)
Mesenchymal stem cells suppress lymphocyte proliferation in vitro and prolong skin graft survival in vivo.Experimental hematology, 30 1
S. Karsou, B. Jaber, B. Pereira (2000)
Impact of intermittent hemodialysis variables on clinical outcomes in acute renal failure.American journal of kidney diseases : the official journal of the National Kidney Foundation, 35 5
B. Bussolati, Peter Hauser, Raquel Carvalhosa, G. Camussi (2009)
Contribution of stem cells to kidney repair.Current stem cell research & therapy, 4 1
(2007)
Tissue Engineering: differentiation of Murine Pluripotential Embryonic Stem Cells Seeded in Whole Organ Decellularized Rat Kidney Scaffolds
Grant Challen, I. Bertoncello, J. Deane, S. Ricardo, M. Little (2006)
Kidney side population reveals multilineage potential and renal functional capacity but also cellular heterogeneity.Journal of the American Society of Nephrology : JASN, 17 7
S. Rogers, H. Liapis, M. Hammerman (2001)
Transplantation of metanephroi across the major histocompatibility complex in rats.American journal of physiology. Regulatory, integrative and comparative physiology, 280 1
A. Maeshima, H. Sakurai, S. Nigam (2005)
Adult kidney tubular cell population showing phenotypic plasticity, tubulogenic capacity, and integration capability into developing kidney.Journal of the American Society of Nephrology : JASN, 17 1
M. Morigi, B. Imberti, C. Zoja, D. Corna, S. Tomasoni, M. Abbate, Daniela Rottoli, S. Angioletti, A. Benigni, N. Perico, M. Alison, G. Remuzzi (2004)
Mesenchymal stem cells are renotropic, helping to repair the kidney and improve function in acute renal failure.Journal of the American Society of Nephrology : JASN, 15 7
S. Rogers, M. Hammerman (2001)
Transplantation of rat metanephroi into mice.American journal of physiology. Regulatory, integrative and comparative physiology, 280 6
F. Tögel, J. Isaac, C. Westenfelder (2004)
Hematopoietic stem cell mobilization-associated granulocytosis severely worsens acute renal failure.Journal of the American Society of Nephrology : JASN, 15 5
T. Fang, W. Otto, J. Rao, R. Jeffery, T. Hunt, M. Alison, H. Cook, N. Wright, R. Poulsom (2008)
Haematopoietic lineage‐committed bone marrow cells, but not cloned cultured mesenchymal stem cells, contribute to regeneration of renal tubular epithelium after HgCl2‐induced acute tubular injuryCell Proliferation, 41
Toshihiko Inowa, K. Hishikawa, T. Takeuchi, T. Kitamura, T. Fujita (2008)
Isolation and potential existence of side population cells in adult human kidneyInternational Journal of Urology, 15
J. Duffield, K. Park, L. Hsiao, V. Kelley, D. Scadden, T. Ichimura, J. Bonventre (2005)
Restoration of tubular epithelial cells during repair of the postischemic kidney occurs independently of bone marrow-derived stem cells.The Journal of clinical investigation, 115 7
S. Kale, A. Karihaloo, P. Clark, M. Kashgarian, D. Krause, L. Cantley (2003)
Bone marrow stem cells contribute to repair of the ischemically injured renal tubule.The Journal of clinical investigation, 112 1
A. Asakura, M. Rudnicki (2002)
Side population cells from diverse adult tissues are capable of in vitro hematopoietic differentiation.Experimental hematology, 30 11
The understanding of cellular sources of kidney regeneration has rapidly evolved in the last decade. It is now believed that regeneration occurs predominantly from cells that reside within the injured kidney, with minimal contribution from extra‐renal cells. We now know that improved kidney regeneration seen following exogenous administration of stem cells occur predominantly by noncellular paracrine mechanisms. Of all extra‐renal stem cells, mesenchymal stem cells (MSC) are the most promising stem cell type for treating kidney diseases. There is an ongoing clinical trial evaluating safety and efficacy of MSC in treating acute kidney injury (AKI). Results of this trial are expected to bring use of MSC closer to the clinical realm. An improved understanding of the small molecules that facilitate kidney regeneration and are secreted by MSC will likely result in the development of new therapies for treating AKI. Identification of adult stem cell markers will result in improved understanding of pathophysiology of kidney diseases and could lead to the development of new cellular therapies. Directed differentiation of stem cells into desired cell types such as erythropoietin producing cells will allow selective replacement of lost kidney function. Cell‐based therapies for patients with chronic kidney disease are presently in proof‐of‐principle stage and are expected to evolve in the coming years with improved understanding of stem cell biology. Technological advancement in cellular therapy is expected to provide improved therapeutic options for patients with kidney diseases in the near future.
Seminars in Dialysis – Wiley
Published: Jan 1, 2009
Read and print from thousands of top scholarly journals.
Already have an account? Log in
Bookmark this article. You can see your Bookmarks on your DeepDyve Library.
To save an article, log in first, or sign up for a DeepDyve account if you don’t already have one.
Copy and paste the desired citation format or use the link below to download a file formatted for EndNote
Access the full text.
Sign up today, get DeepDyve free for 14 days.
All DeepDyve websites use cookies to improve your online experience. They were placed on your computer when you launched this website. You can change your cookie settings through your browser.