Human Progenitor Cells with High Aldehyde Dehydrogenase Activity Efficiently Engraft into Damaged Liver in a Novel Model

被引:64
作者
Zhou, Ping [2 ]
Hohm, Sara [2 ]
Olusanya, Yetunde
Hess, David A. [2 ,3 ]
Nolta, Jan [1 ,2 ]
机构
[1] Univ Calif Davis, Dept Internal Med, Stem Cell Program, Med Ctr, Sacramento, CA 95817 USA
[2] Washington Univ, Sch Med, Div Oncol, St Louis, MO USA
[3] Robarts Res Inst, Krembil Ctr Stem Cell Biol, London, ON N6A 5C1, Canada
关键词
MARROW-DERIVED HEPATOCYTES; HEMATOPOIETIC STEM-CELLS; LYSOSOMAL STORAGE DISEASE; IN-VIVO; XENOTRANSPLANTATION MODEL; MYELOMONOCYTIC CELLS; PURKINJE NEURONS; FUSION; MICE; TRANSPLANTATION;
D O I
10.1002/hep.22862
中图分类号
R57 [消化系及腹部疾病];
学科分类号
100201 [内科学];
摘要
Human cord blood stem cells (hCBSCs) have been reported to generate hepatocyte-like cells and thus hold promise for repairing damaged liver. However, the frequency of hCBSC-derived hepatocytes varies tremendously between different studies, and it is still controversial as to whether hCBSC-derived cells can transdifferentiate into hepatocytes or simply fuse to recipient hepatocytes. We used the beta-glucuronidase-deficient nonobese diabetic/severe combined immunodeficient/mucopolysaccharidosis type VII (NOD/SCID/MPSVII) mouse model for better identification of engrafted cells. We transplanted lineage-depleted human umbilical cord blood-derived cells with high aldehyde dehydrogenase activity (ALDH(hi)Lin(-)) into irradiated NOD/SCID/MPSVII mice followed by carbon tetrachloride administration to induced liver damage. ALDH(hi)Lin(-) cells were efficiently engrafted in the recipient mouse livers and improved recovery of the mice from toxic insult. The percentage of human cells in these livers ranged between 3% and 14.2% using quantitative real-time polymerase chain reaction. Furthermore, human-originated cells expressing liver-specific alpha 1-antitrypsin messenger RNA, albumin and hepatocyte nuclear factor 1 protein were detected in the recipient livers. Interestingly, human versus murine centromeric fluorescent in situ hybridization analysis on the liver sections demonstrated that most human cells were not fused to mouse cells. However, the majority of the human originated albumin-expressing cells also carried mouse genetic material, hence were the product of cell fusion. Conclusion: hCBSCs or their progeny may home to the injured liver and release trophic factors that hasten tissue repair, whereas fusion of these cells with hepatocytes may occur rarely and contribute to a lesser extent to liver repair. (HEPATOLOGY 2009;49:1992-2000.)
引用
收藏
页码:1992 / 2000
页数:9
相关论文
共 36 条
[1]
Fusion of bone-marrow-derived cells with Purkinje neurons, cardiomyocytes and hepatocytes [J].
Alvarez-Dolado, M ;
Pardal, R ;
Garcia-Vardugo, JM ;
Fike, JR ;
Lee, HO ;
Pfeffer, K ;
Lois, C ;
Morrison, SJ ;
Alvarez-Buylla, A .
NATURE, 2003, 425 (6961) :968-973
[2]
Adipose tissue-derived mesenchymal stem cells as a source of human hepatocytes [J].
Banas, Agnieszka ;
Teratani, Takumi ;
Yamamoto, Yusuke ;
Tokuhara, Makoto ;
Takeshita, Fumitaka ;
Quinn, Gary ;
Okochi, Hitoshi ;
Ochiya, Takahiro .
HEPATOLOGY, 2007, 46 (01) :219-228
[3]
Hematopoietic myelomonocytic cells are the major source of hepatocyte fusion partners [J].
Camargo, FD ;
Finegold, M ;
Goodell, MA .
JOURNAL OF CLINICAL INVESTIGATION, 2004, 113 (09) :1266-1270
[4]
Liver regeneration [J].
Fausto, N ;
Campbell, JS ;
Riehle, KJ .
HEPATOLOGY, 2006, 43 (02) :S45-S53
[5]
Human cord blood CD34+ cells develop into hepatocytes in the livers of NOD/SCID/γcnull mice through cell fusion [J].
Fujino, Hisanori ;
Hiramatsu, Hidefumi ;
Tsuchiya, Atsunori ;
Niwa, Akira ;
Noma, Haruyoshi ;
Shiota, Mitsutaka ;
Umeda, Katsutsugu ;
Yoshimoto, Momoko ;
Ito, Mamoru ;
Heike, Toshio ;
Nakahata, Tatsutoshi .
FASEB JOURNAL, 2007, 21 (13) :3499-3510
[6]
Human acute myeloblastic leukemia-ascites model using the human GM-CSF- and IL-3-releasing transgenic SCID mice [J].
Fukuchi, Y ;
Miyakawa, Y ;
Kizaki, M ;
Umezawa, A ;
Shimamura, K ;
Kobayashi, K ;
Kuramochi, T ;
Hata, J ;
Ikeda, Y ;
Tamaoki, N ;
Nomura, T ;
Ueyama, Y ;
Ito, M .
ANNALS OF HEMATOLOGY, 1999, 78 (05) :223-231
[7]
Lack of a fusion requirement for development of bone marrow-derived epithelia [J].
Harris, RG ;
Herzog, EL ;
Bruscia, EM ;
Grove, JE ;
Van Arnam, JS ;
Krause, DS .
SCIENCE, 2004, 305 (5680) :90-93
[8]
Functional characterization of highly purified human hematopoietic repopulating cells isolated according to aldehyde dehydrogenase activity [J].
Hess, DA ;
Meyerrose, TE ;
Wirthlin, L ;
Craft, TP ;
Herrbrich, PE ;
Creer, MH ;
Nolta, JA .
BLOOD, 2004, 104 (06) :1648-1655
[9]
Widespread nonhematopoietic tissue distribution by transplanted human progenitor cells with high aldehyde dehydrogenase activity [J].
Hess, David A. ;
Craft, Timothy P. ;
Wirthlin, Louisa ;
Hohm, Sarah ;
Zhou, Ping ;
Eades, William C. ;
Creer, Michael H. ;
Sands, Mark S. ;
Nolta, Jan A. .
STEM CELLS, 2008, 26 (03) :611-620
[10]
Human CD34+ hematopoietic progenitor cell-directed lentiviral-mediated gene therapy in a xenotransplantation model of lysosomal storage disease [J].
Hofling, AA ;
Devine, S ;
Vogler, C ;
Sands, MS .
MOLECULAR THERAPY, 2004, 9 (06) :856-865