Combined introduction of Bmi-1 and hTERT immortalizes human adipose tissue-derived stromal cells with low risk of transformation

被引:52
作者
Tatrai, Peter [1 ,2 ]
Szepesi, Aron [3 ]
Matula, Zsolt [3 ]
Szigeti, Anna [3 ]
Buchan, Gyoengyi [2 ]
Madi, Andras [2 ,4 ]
Uher, Ferenc [5 ]
Nemet, Katalin [3 ,6 ]
机构
[1] Hungarian Acad Sci, Inst Enzymol, Res Ctr Nat Sci, H-1113 Budapest, Hungary
[2] Univ Debrecen, Dept Biochem & Mol Biol, Med & Hlth Sci Ctr, H-4032 Debrecen, Hungary
[3] Creat Cell Ltd, H-1119 Budapest, Hungary
[4] Univ Debrecen, Stem Cell Apoptosis & Genom Res Grp, Hungarian Acad Sci, H-4032 Debrecen, Hungary
[5] Hungarian Natl Blood Transfus Serv, Stem Cell Lab, H-1113 Budapest, Hungary
[6] Hungarian Natl Blood Transfus Serv, Lab Expt Gene Therapy, H-1113 Budapest, Hungary
关键词
Adipose tissue-derived stromal cells; hTERT; Immortalization; MESENCHYMAL STEM-CELLS; REVERSE-TRANSCRIPTASE GENE; BONE-MARROW; LIFE-SPAN; NEOPLASTIC TRANSFORMATION; PROGENITOR CELLS; DONOR VARIATION; TELOMERASE; TRANSFECTION;
D O I
10.1016/j.bbrc.2012.04.088
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Adipose tissue-derived stromal cells (ASCs) are increasingly being studied for their usefulness in regenerative medicine. However, limited life span and donor-dependent variation of primary cells such as ASCs present major hurdles to controlled and reproducible experiments. We therefore aimed to establish immortalized ASC cell lines that provide steady supply of homogeneous cells for in vitro work while retain essential features of primary cells. To this end, combinations of human telomerase reverse transcriptase (hTERT), murine Bmi-1, and SV40 large T antigen (SV40T) were introduced by lentiviral transduction into ASCs. The resulting cell lines ASC(hTERT), Asc(Bmi-1), ASC(Bmi-1+hTERT) and ASC(SV40T+hTERT) were tested for transgene expression, telomerase activity, surface immunomarkers, proliferation, osteogenic and adipogenic differentiation, karyotype, tumorigenicity, and cellular senescence. All cell lines have maintained expression of characteristic surface immunomarkers, and none was tumorigenic. However. ASC(Bmi-1) had limited replicative potential, while the rapidly proliferating ASC(SV04T+hTERT) acquired chromosomal aberrations, departed from MSC phenotype, and lost differentiation capacity. ASC(hTERT) and ASC(hTERT+Bmi-1), on the other hand, preserved all essential MSC features and did not senesce after 100 population doublings. Notably, a subpopulation of ASC(hTERT) also acquired aberrant karyotype and showed signs of transformation after long-term culture. In conclusion, hTERT alone was sufficient to extend the life span of human ASC, but ASCh(TERT) are prone to transformation during extensive subculturing. The combination of Bmi-1 and hTERT successfully immortalized human ASCs without significantly perturbing their phenotype or biological behavior. (C) 2012 Elsevier Inc. All rights reserved.
引用
收藏
页码:28 / 35
页数:8
相关论文
共 25 条
[1]   Regeneration of cartilage and bone by defined subsets of mesenchymal stromal cells-Potential and pitfalls [J].
Aicher, Wilhelm K. ;
Buehring, Hans-Joerg ;
Hart, Melanie ;
Rolauffs, Bernd ;
Badke, Andreas ;
Klein, Gerd .
ADVANCED DRUG DELIVERY REVIEWS, 2011, 63 (4-5) :342-351
[2]   Bone Marrow Mesenchymal Stem Cells: Historical Overview and Concepts [J].
Charbord, Pierre .
HUMAN GENE THERAPY, 2010, 21 (09) :1045-1056
[3]   Enabling a robust scalable manufacturing process for therapeutic exosomes through oncogenic immortalization of human ESC-derived MSCs [J].
Chen, Tian Sheng ;
Arslan, Fatih ;
Yin, Yijun ;
Tan, Soon Sim ;
Lai, Ruenn Chai ;
Choo, Andre Boon Hwa ;
Padmanabhan, Jayanthi ;
Lee, Chuen Neng ;
de Kleijn, Dominique P. V. ;
Lim, Sai Kiang .
JOURNAL OF TRANSLATIONAL MEDICINE, 2011, 9
[4]   Lentivector-mediated transfer of Bmi-1 and telomerase in muscle satellite cells yields a Duchenne myoblast cell line with long-term genotypic and phenotypic stability [J].
Cudré-Mauroux, C ;
Occhiodoro, T ;
König, S ;
Salmon, P ;
Bernheim, L ;
Trono, D .
HUMAN GENE THERAPY, 2003, 14 (16) :1525-1533
[5]  
Dimri GP, 2002, CANCER RES, V62, P4736
[6]   Immortalization of mesenchymal stem cell from bone marrow of rhesus monkey by transfection with human telomerase reverse transcriptase gene [J].
Gao, K. ;
Lu, Y. R. ;
Wei, L. L. ;
Lu, X. F. ;
Li, S. F. ;
Wan, L. ;
Li, Y. P. ;
Cheng, J. Q. .
TRANSPLANTATION PROCEEDINGS, 2008, 40 (02) :634-637
[7]   Efficient immortalization of primary human cells by p16INK4a-specific short hairpin RNA or Bmi-1, combined with introduction of hTERT [J].
Haga, Kei ;
Ohno, Shin-ichi ;
Yugawa, Takashi ;
Narisawa-Saito, Mako ;
Fujita, Masatoshi ;
Sakamoto, Michiie ;
Galloway, Denise A. ;
Kiyono, Tohru .
CANCER SCIENCE, 2007, 98 (02) :147-154
[8]   Proteomic analysis of human bone marrow mesenchymal stem cells transduced with human telomerase reverse transcriptase gene during proliferation [J].
Huang, G. P. ;
Pan, Z. J. ;
Huang, J. P. ;
Yang, J. F. ;
Guo, C. J. ;
Wang, Y. G. ;
Zheng, Q. ;
Chen, R. ;
Xu, Y. L. ;
Wang, G. Z. ;
Xi, Y. M. ;
Shen, D. ;
Jin, J. ;
Wang, J. F. .
CELL PROLIFERATION, 2008, 41 (04) :625-644
[9]   Immortalization without neoplastic transformation of human mesenchymal stem cells by transduction with HPV16 E6/E7 genes [J].
Hung, SC ;
Yang, DM ;
Chang, CF ;
Lin, RJ ;
Wang, JS ;
Ho, LLT ;
Yang, WK .
INTERNATIONAL JOURNAL OF CANCER, 2004, 110 (03) :313-319
[10]   SV40-mediated immortalization [J].
Jha, KK ;
Banga, S ;
Palejwala, V ;
Ozer, HL .
EXPERIMENTAL CELL RESEARCH, 1998, 245 (01) :1-7