In vivo genetic selection of renal proximal tubules

被引:47
作者
Held, PK
Al-Dhalimy, M
Willenbring, H
Akkari, Y
Jiang, SG
Torimaru, Y
Olson, S
Fleming, WH
Finegold, M
Grompe, M
机构
[1] Oregon Hlth & Sci Univ, Dept Mol & Med Genet, Portland, OR 97239 USA
[2] Oregon Hlth & Sci Univ, Div Hematol & Med Oncol, Ctr Hematol Malignancies, Portland, OR 97239 USA
[3] Texas Childrens Hosp, Dept Pathol, Houston, TX 77030 USA
关键词
D O I
10.1016/j.ymthe.2005.09.004
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
Repopulation by transplanted cells can result in effective therapy for several regenerative organs including blood, liver, and skin. In contrast, cell therapies for renal diseases are not currently available. Here we developed an animal model in which cells genetically resistant to a toxic intermediate of tyrosine metabolism, homogentisic acid (HGA), were able to repopulate the damaged proximal tubule epithelium of mice with fumarylacetoacetate hydrolase (Fah) deficiency. HGA resistance was achieved by two independent mechanisms. First, Fah(+) transplanted bone marrow cells produced significant replacement of damaged proximal tubular epithelium (up to 50%). The majority of bone marrow-derived epithelial cells were generated by cell fusion, not transclifferentiation. In addition to regeneration by fusion-derived epithelial cells, proximal tubular repopulation was also observed by host epithelial cells, which had lost the homogentisic acid dioxygenase gene. These data demonstrate that extensive regeneration of the renal proximal tubule compartment can be achieved through genetic selection of functional cells.
引用
收藏
页码:49 / 58
页数:10
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[31]   ADENOVIRAL-MEDIATED GENE-TRANSFER TO RENAL TUBULAR CELLS IN-VIVO [J].
MOULLIER, P ;
FRIEDLANDER, G ;
CALISE, D ;
RONCO, P ;
PERRICAUDET, M ;
FERRY, N .
KIDNEY INTERNATIONAL, 1994, 45 (04) :1220-1225
[32]   The renal papilla is a niche for adult kidney stem cells [J].
Oliver, JA ;
Maarouf, O ;
Cheema, FH ;
Martens, TF ;
Al-Awqati, Q .
JOURNAL OF CLINICAL INVESTIGATION, 2004, 114 (06) :795-804
[33]   Bone marrow cells regenerate infarcted myocardium [J].
Orlic, D ;
Kajstura, J ;
Chimenti, S ;
Jakoniuk, I ;
Anderson, SM ;
Li, BS ;
Pickel, J ;
McKay, R ;
Nadal-Ginard, B ;
Bodine, DM ;
Leri, A ;
Anversa, P .
NATURE, 2001, 410 (6829) :701-705
[34]   Stable nonviral genetic correction of inherited human skin disease [J].
Ortiz-Urda, S ;
Thyagarajan, B ;
Keene, DR ;
Lin, Q ;
Fang, M ;
Calos, MP ;
Khavari, PA .
NATURE MEDICINE, 2002, 8 (10) :1166-1170
[35]   φC31 integrase-mediated nonviral genetic correction of junctional epidermolysis bullosa [J].
Ortiz-Urda, S ;
Thyagarajan, B ;
Keene, DR ;
Lin, Q ;
Calos, MP ;
Khavari, PA .
HUMAN GENE THERAPY, 2003, 14 (09) :923-928
[36]   Adenovirus-mediated gene therapy in a mouse model of hereditary tyrosinemia type I [J].
Overturf, K ;
AlDhalimy, M ;
Ou, CN ;
Finegold, M ;
Tanguay, R ;
Lieber, A ;
Kay, M ;
Grompe, M .
HUMAN GENE THERAPY, 1997, 8 (05) :513-521
[37]   Ex vivo hepatic gene therapy of a mouse model of Hereditary Tyrosinemia Type I [J].
Overturf, K ;
Al-Dhalimy, M ;
Manning, K ;
Ou, CN ;
Finegold, M ;
Grompe, M .
HUMAN GENE THERAPY, 1998, 9 (03) :295-304
[38]   Hepatocytes corrected by gene therapy are selected in vivo in a murine model of hereditary tyrosinaemia type I [J].
Overturf, K ;
AlDhalimy, M ;
Tanguay, R ;
Brantly, M ;
Ou, CN ;
Finegold, M ;
Grompe, M .
NATURE GENETICS, 1996, 12 (03) :266-273
[39]   Bone marrow contributes to renal parenchymal turnover and regeneration [J].
Poulsom, R ;
Forbes, SJ ;
Hodivala-Dilke, K ;
Ryan, E ;
Wyles, S ;
Navaratnarasah, S ;
Jeffery, R ;
Hunt, T ;
Alison, M ;
Cook, T ;
Pusey, C ;
Wright, NA .
JOURNAL OF PATHOLOGY, 2001, 195 (02) :229-235
[40]   PURIFICATION AND CHARACTERIZATION OF MOUSE HEMATOPOIETIC STEM-CELLS [J].
SPANGRUDE, GJ ;
HEIMFELD, S ;
WEISSMAN, IL .
SCIENCE, 1988, 241 (4861) :58-62