Title of article :
A High-Titer Lentiviral Production System Mediates Efficient Transduction of Differentiated Cells Including Beating Cardiac Myocytes
Author/Authors :
Tsuyoshi Sakoda، نويسنده , , Nori Kasahara، نويسنده , , Yasuo Hamamori، نويسنده , , Larry Kedes، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 1999
Pages :
11
From page :
2037
To page :
2047
Abstract :
Human immunodeficiency virus (HIV, lentivirus) type-1 based vectors have a number of attractive features for gene therapy, including the ability to transduce non-dividing cells and long term transgene expression. We used a three-plasmid expression system to generate pseudotyped lentivirus-based vectors by transient transfection of human embryonic kidney 293T cells in the presence of sodium butyrate, which is known to activate the long terminal repeat-directed expression of HIV. Using this system we successfully generated versatile high titer lentivirus at titers of up to 2×108transducing units/ml (TU/ml), and improved transduction efficiency in various cell types from seven to over twenty fold. We demonstrate its applicability of these vectors for the efficient transduction of non-dividing cells, including post mitotic beating rat cardiac myocytes and well-differentiated rat L6 myofibers. While both lentivirus-based and murine retrovirus-based vectors effectively transduced dividing cardiac fibroblasts and L6 muscle myoblasts in culture, lentivirus-based vectors also efficiently transduced cardiac myocytes and yielded titers of (6.3±1.2)×105TU/ml; however murine retrovirus-based vectors showed low transduction efficiency with titers reaching only (8.9±2.1)×102TU/ml. Furthermore, even 12 days after induction of differentiation of L6 myofibers, lentivirus-mediated transduction of β-galactosidase ( β-Gal) at approximately 30–40% of the maximum expression levels achieved in replicating myoblasts. In contrast, the expression ofβ-Gal following transduction of the myofibers by murine retrovirus-based vectors fell to less than 1% of an already reduced level of transduction in undifferentiated confluent myoblasts. These results demonstrate that lentivirus-based vectors can efficiently transduce both well-differentiated cardiac myocytes and differentiated myofibers. This appears to be an efficient method and provides a new tool for research and therapy for cardiovascular diseases.
Keywords :
lentivirus , Sodium butyrate , Cardiac myocyte , L6 cell , retrovirus , gene therapy. , vesicular stomatitis virus
Journal title :
Journal of Molecular and Cellular Cardiology
Serial Year :
1999
Journal title :
Journal of Molecular and Cellular Cardiology
Record number :
526324
Link To Document :
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