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I Förtsch

Showing results (1-10 of 5) with videos related to

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Anti-Cancer Drug Design|August 14, 1998
Structure-dependent effects of minor groove binders on the DNA triple helix motif poly(dA).2poly(dT): influence of antitumoractive nonintercalative bisquaternary ammonium heterocyclesI Förtsch, B Baguley, C Zimmer
Journal of Biomolecular Structure & Dynamics|December 1, 1996
Different effects of nonintercalative antitumor drugs on DNA triple helix stability: SN-18071 promotes triple helix formationI Förtsch, E Birch-Hirschfeld, H Schütz, et al.
Biopolymers|February 1, 1996
Parallel-stranded duplex DNA containing dA.dU base pairsI Förtsch, H Fritzsche, E Birch-Hirschfeld, et al.
Antisense & Nucleic Acid Drug Development|January 25, 2000
Triple helix formation inhibits DNA gyrase activityH Simon, I Förtsch, G Burckhardt, et al.
Journal of Biomolecular Structure & Dynamics|May 22, 2012
DNA Sequence Recognition of a Cross-Linked Polyamide: CD Studies, Footprinting and Effects on the Activity of DNA GyraseG Burckhardt, I Förtsch, H Simon, et al.
Pageof 1

Showing results (1-10 of 5) with videos related to

Sort By:
Pageof 1
Anti-Cancer Drug Design|August 14, 1998
Structure-dependent effects of minor groove binders on the DNA triple helix motif poly(dA).2poly(dT): influence of antitumoractive nonintercalative bisquaternary ammonium heterocyclesI Förtsch, B Baguley, C Zimmer
Journal of Biomolecular Structure & Dynamics|December 1, 1996
Different effects of nonintercalative antitumor drugs on DNA triple helix stability: SN-18071 promotes triple helix formationI Förtsch, E Birch-Hirschfeld, H Schütz, et al.
Biopolymers|February 1, 1996
Parallel-stranded duplex DNA containing dA.dU base pairsI Förtsch, H Fritzsche, E Birch-Hirschfeld, et al.
Antisense & Nucleic Acid Drug Development|January 25, 2000
Triple helix formation inhibits DNA gyrase activityH Simon, I Förtsch, G Burckhardt, et al.
Journal of Biomolecular Structure & Dynamics|May 22, 2012
DNA Sequence Recognition of a Cross-Linked Polyamide: CD Studies, Footprinting and Effects on the Activity of DNA GyraseG Burckhardt, I Förtsch, H Simon, et al.
Pageof 1