Renal repair and recovery

被引:85
作者
Liu, Kathleen D. [1 ]
Brakeman, Paul R. [2 ]
机构
[1] Univ Calif San Francisco, Dept Med, Div Nephrol & Crit Care, San Francisco, CA 94143 USA
[2] Univ Calif San Francisco, Dept Pediat, San Francisco, CA 94143 USA
关键词
renal repair; recovery; acute renal failure; acute kidney injury; mesenchymal stem cell; growth factors; endothelial cells; dialysis;
D O I
10.1097/CCM.0b013e318168ca4a
中图分类号
R4 [临床医学];
学科分类号
1002 ; 100602 ;
摘要
Objective: To review the cellular and molecular mechanisms of renal repair and recovery after acute kidney injury (AKI). Data Source: The data were summarized from published research articles. Results: In AKI, there is an acute inflammatory response, epithelial cell necrosis and apoptosis, and shedding of epithelial cells into the tubular lumen. Recent work demonstrates that repopulation of damaged renal tubules occurs primarily from proliferation of tubular epithelial cells and resident renal-specific stem cells, with some contribution of paracrine factors from bone marrow-derived mesenchymal stem cells. In addition, growth factors seem to play a critical role in the repair process in animal models of renal injury. However, attempts to use growth factors in the clinical setting to attenuate human AKI or accelerate renal repair have not yet been successful. The endothelium also plays a critical role in the pathogenesis of AKI. Lastly, in human studies, the effect of dialysis on renal recovery remains poorly understood. Conclusions: Experimental animal models of AKI demonstrate that renal recovery and repair involves proliferation of tubular epithelial cells and stem cell populations and the coordinated contribution of multiple growth factors. Future efforts to improve recovery from AKI and improve patient outcomes may include novel therapies based on manipulation of populations of stem cells and augmenting repopulation of renal tubules.
引用
收藏
页码:S187 / S192
页数:6
相关论文
共 69 条
[1]   Extracellular signal-regulated kinase activation during renal ischemia/reperfusion mediates focal adhesion dissolution and renal injury [J].
Alderliesten, Maaike ;
de Graauw, Marjo ;
Oldenampsen, Judith ;
Qin, Yu ;
Pont, Chantal ;
van Buren, Liesbeth ;
van de Water, Bob .
AMERICAN JOURNAL OF PATHOLOGY, 2007, 171 (02) :452-462
[2]  
ALONSO A, 2005, COCHRANE DB SYST REV, V18
[3]   Mouse proximal tubular cell-cell adhesion inhibits apoptosis by a cadherin-dependent mechanism [J].
Bergin, E ;
Levine, JS ;
Koh, JS ;
Lieberthal, W .
AMERICAN JOURNAL OF PHYSIOLOGY-RENAL PHYSIOLOGY, 2000, 278 (05) :F758-F768
[4]   Stromal cells protect against acute tubular injury via an endocrine effect [J].
Bi, Baoyuan ;
Schmitt, Roland ;
Israilova, Malika ;
Nishio, Hitoshi ;
Cantley, Lloyd G. .
JOURNAL OF THE AMERICAN SOCIETY OF NEPHROLOGY, 2007, 18 (09) :2486-2496
[5]   Dedifferentiation and proliferation of surviving epithelial cells in acute renal failure [J].
Bonventre, JV .
JOURNAL OF THE AMERICAN SOCIETY OF NEPHROLOGY, 2003, 14 (06) :S55-S61
[6]   The role of adhesion molecules and T cells in ischemic renal injury [J].
Burne-Taney, MJ ;
Rabb, H .
CURRENT OPINION IN NEPHROLOGY AND HYPERTENSION, 2003, 12 (01) :85-90
[7]   Adult stem cells in the repair of the injured renal tubule [J].
Cantley, LG .
NATURE CLINICAL PRACTICE NEPHROLOGY, 2005, 1 (01) :22-32
[8]   α-melanocyte-stimulating hormone inhibits renal injury in the absence of neutrophils [J].
Chiao, H ;
Kohda, Y ;
McLeroy, P ;
Craig, L ;
Linas, S ;
Star, RA .
KIDNEY INTERNATIONAL, 1998, 54 (03) :765-774
[9]   RECOMBINANT HUMAN INSULIN-LIKE GROWTH FACTOR-I ACCELERATES RECOVERY AND REDUCES CATABOLISM IN RATS WITH ISCHEMIC ACUTE-RENAL-FAILURE [J].
DING, H ;
KOPPLE, JD ;
COHEN, A ;
HIRSCHBERG, R .
JOURNAL OF CLINICAL INVESTIGATION, 1993, 91 (05) :2281-2287
[10]   Kidney tubular epithelium is restored without replacement with bone marrow-derived cells during repair after ischemic injury [J].
Duffield, JS ;
Bonventre, JV .
KIDNEY INTERNATIONAL, 2005, 68 (05) :1956-1961