Embryonic stem cell-derived astrocytes expressing drug-inducible transgenes: differentiation and transplantion into the mouse brain

被引:16
作者
Benveniste, RJ
Keller, G
Germano, I
机构
[1] Mt Sinai Sch Med, Dept Neurosurg, New York, NY 10029 USA
[2] Mt Sinai Sch Med, Dept Gene & Mol Med, New York, NY 10029 USA
关键词
embryonic stem cell; astrocyte; gene therapy; transplantation; teratoma;
D O I
10.3171/jns.2005.103.1.0115
中图分类号
R74 [神经病学与精神病学];
学科分类号
摘要
Object. Embryonic stem cell (ESC)-derived astrocytes have many theoretical and practical advantages as vectors for delivery of gene therapy to the central nervous system (CNS). The aim of this study was to generate highly pure populations of ESC-derived astrocytes expressing drug-inducible transgenes, while minimizing contamination by undifferentiated ESCs Methods. Embryonic stem cells carrying a doxycycline-inducible green fluorescent protein (GFP) transgene were induced to differentiate into astrocytes by using feeder cell-free conditions that are completely defined. More than 95% of these cells expressed the astrocyte markers glial fibrillary acidic protein and GLT-1 glutamate transporter, and the morphological characteristics of these cells were typical of astrocytes. The expression of additional astrocyte markers was detected using reverse transcription-polymerase chain reaction. Undifferentiated ESCs comprised fewer than 0.1% of the cells after 10 days in this culture. Positive and negative selection techniques based on fluorescence-activated cell sorting were successfully used to decrease further the numbers of undifferentiated ESCs. Fully differentiated astrocytes expressed a GFP transgene under the tight control of a doxycycline-responsive promoter, and maintained their astrocytic phenotype 24 hours after transplantation into the mouse brain. Conclusions. This study shows that transgenic ESCs can be induced to differentiate into highly pure populations of astrocytes. The astrocytes continue to express the transgene under the tight control of a drug-inducible promoter and are suitable for transplantation into the mouse brain. The number of potentially hazardous ESCs can be minimized using cell-sorting techniques. This strategy may be used to generate cellular vectors for delivering gene therapy to the CNS.
引用
收藏
页码:115 / 123
页数:9
相关论文
共 44 条
[1]   Engraftment and tumor formation after allogeneic in utero transplantation of primate embryonic stem cells [J].
Asano, T ;
Ageyama, N ;
Takeuchi, K ;
Momoeda, M ;
Kitano, Y ;
Sasaki, K ;
Ueda, Y ;
Suzuki, Y ;
Kondo, Y ;
Torii, R ;
Hasegawa, M ;
Ookawara, S ;
Harii, K ;
Terao, K ;
Ozawa, K ;
Hanazono, Y .
TRANSPLANTATION, 2003, 76 (07) :1061-1067
[2]   Neural subtype specification of fertilization and nuclear transfer embryonic stem cells and application in parkinsonian mice [J].
Barberi, T ;
Klivenyi, P ;
Calingasan, NY ;
Lee, H ;
Kawamata, H ;
Loonam, K ;
Perrier, AL ;
Bruses, J ;
Rubio, ME ;
Topf, N ;
Tabar, V ;
Harrison, NL ;
Beal, MF ;
Moore, MAS ;
Studer, L .
NATURE BIOTECHNOLOGY, 2003, 21 (10) :1200-1207
[3]   Gene therapy of experimental brain tumors using neural progenitor cells [J].
Benedetti, S ;
Pirola, B ;
Pollo, B ;
Magrassi, L ;
Bruzzone, MG ;
Rigamonti, D ;
Galli, R ;
Selleri, S ;
Di Meco, F ;
De Fraja, C ;
Vescovi, A ;
Cattaneo, E ;
Finocchiaro, G .
NATURE MEDICINE, 2000, 6 (04) :447-450
[4]   Future and current surgical therapies in Parkinson's disease [J].
Betchen, SA ;
Kaplitt, M .
CURRENT OPINION IN NEUROLOGY, 2003, 16 (04) :487-493
[5]   Embryonic stem cells develop into functional dopaminergic neurons after transplantation in a Parkinson rat model [J].
Björklund, LM ;
Sánchez-Pernaute, R ;
Chung, SM ;
Andersson, T ;
Chen, IYC ;
McNaught, KS ;
Brownell, AL ;
Jenkins, BG ;
Wahlestedt, C ;
Kim, KS ;
Isacson, O .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2002, 99 (04) :2344-2349
[6]   Mutations in GFAP, encoding glial fibrillary acidic protein, are associated with Alexander disease [J].
Brenner, M ;
Johnson, AB ;
Boespflug-Tanguy, O ;
Rodriguez, D ;
Goldman, JE ;
Messing, A .
NATURE GENETICS, 2001, 27 (01) :117-120
[7]   Embryonic stem cell-derived glial precursors:: A source of myelinating transplants [J].
Brüstle, O ;
Jones, KN ;
Learish, RD ;
Karram, K ;
Choudhary, K ;
Wiestler, OD ;
Duncan, ID ;
McKay, RDG .
SCIENCE, 1999, 285 (5428) :754-756
[8]   Properties of four human embryonic stem cell lines maintained in a feeder-free culture system [J].
Carpenter, MK ;
Rosler, ES ;
Fisk, GJ ;
Brandenberger, R ;
Ares, X ;
Miura, T ;
Lucero, M ;
Rao, MS .
DEVELOPMENTAL DYNAMICS, 2004, 229 (02) :243-258
[9]   Astrocytes and brain injury [J].
Chen, YM ;
Swanson, RA .
JOURNAL OF CEREBRAL BLOOD FLOW AND METABOLISM, 2003, 23 (02) :137-149
[10]   Anatomical and functional recovery by embryonic stem cell-derived neural tissue of a mouse model of brain damage [J].
Chiba, S ;
Ikeda, R ;
Kurokawa, MS ;
Yoshikawa, H ;
Takeno, M ;
Nagafuchi, H ;
Tadokoro, M ;
Sekino, H ;
Hashimoto, T ;
Suzuki, N .
JOURNAL OF THE NEUROLOGICAL SCIENCES, 2004, 219 (1-2) :107-117