Team:TUDelft/References

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[1]. Weber W, Kramer B and Fussenegger M, 2007, A genetic time-delay circuit in mammalian cells, Biotech. and Bioeng., 98-4:894-902.
[1]. Weber W, Kramer B and Fussenegger M, 2007, A genetic time-delay circuit in mammalian cells, Biotech. and Bioeng., 98-4:894-902.
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2. Smolke C, 2009, It’s the DNA That Counts, Science, 324:1156-1157.
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[2]. Smolke C, 2009, It’s the DNA That Counts, Science, 324:1156-1157.
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3. Sprinzak D and Elowitz M, 2005, Reconstruction of genetic circuits, Nature, 438-24:443-448.
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[3]. Sprinzak D and Elowitz M, 2005, Reconstruction of genetic circuits, Nature, 438-24:443-448.
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4. Hooshangi S, Thiberge S, Weiss R, 2005, Ultrasensitivity and noise propagation in a synthetic transcriptional cascade, PNAS, 102,10 :3581–3586.
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[4]. Hooshangi S, Thiberge S, Weiss R, 2005, Ultrasensitivity and noise propagation in a synthetic transcriptional cascade, PNAS, 102,10 :3581–3586.
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5. An introduction to systems biology: design principles of biological circuits, Uri Alon, Publisher CRC Press, 2006, pp 41-69.
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[5]. An introduction to systems biology: design principles of biological circuits, Uri Alon, Publisher CRC Press, 2006, pp 41-69.
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6. Isaacs F, Dwyer d and Collins J, 2006, RNA synthetic biology, Nature Biotech., 24:545-554.
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[6]. Isaacs F, Dwyer d and Collins J, 2006, RNA synthetic biology, Nature Biotech., 24:545-554.
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7. Anderson C, Voigt C and Arkin A, 2007, Environmental signal integration by a modular AND gate, Molecular systems biology, 3-133:1-8.
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[7]. Anderson C, Voigt C and Arkin A, 2007, Environmental signal integration by a modular AND gate, Molecular systems biology, 3-133:1-8.
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8. Isaacs F, Dwyer d and Collins J, 2004, Engineered riboregulators enable post-trascriptional control of gene expression, Nature Biotechnology, 22-7:841-847.
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[8]. Isaacs F, Dwyer d and Collins J, 2004, Engineered riboregulators enable post-trascriptional control of gene expression, Nature Biotechnology, 22-7:841-847.
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9. Elbashir SM, Harborth J, Lendeckel W, Yalcin A, Weber K, Tuschl T., “Duplexes of 21-nucleotide RNAs mediate RNA interference in cultured mammalian cells”, Nature, 2001, 411(6836):494-498
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[9]. Elbashir SM, Harborth J, Lendeckel W, Yalcin A, Weber K, Tuschl T., “Duplexes of 21-nucleotide RNAs mediate RNA interference in cultured mammalian cells”, Nature, 2001, 411(6836):494-498
[https://2009.igem.org/Team:TUDelft Home]
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Revision as of 19:20, 21 September 2009

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References

[1]. Weber W, Kramer B and Fussenegger M, 2007, A genetic time-delay circuit in mammalian cells, Biotech. and Bioeng., 98-4:894-902.

[2]. Smolke C, 2009, It’s the DNA That Counts, Science, 324:1156-1157.

[3]. Sprinzak D and Elowitz M, 2005, Reconstruction of genetic circuits, Nature, 438-24:443-448.

[4]. Hooshangi S, Thiberge S, Weiss R, 2005, Ultrasensitivity and noise propagation in a synthetic transcriptional cascade, PNAS, 102,10 :3581–3586.

[5]. An introduction to systems biology: design principles of biological circuits, Uri Alon, Publisher CRC Press, 2006, pp 41-69.

[6]. Isaacs F, Dwyer d and Collins J, 2006, RNA synthetic biology, Nature Biotech., 24:545-554.

[7]. Anderson C, Voigt C and Arkin A, 2007, Environmental signal integration by a modular AND gate, Molecular systems biology, 3-133:1-8.

[8]. Isaacs F, Dwyer d and Collins J, 2004, Engineered riboregulators enable post-trascriptional control of gene expression, Nature Biotechnology, 22-7:841-847.

[9]. Elbashir SM, Harborth J, Lendeckel W, Yalcin A, Weber K, Tuschl T., “Duplexes of 21-nucleotide RNAs mediate RNA interference in cultured mammalian cells”, Nature, 2001, 411(6836):494-498

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