| Literature DB >> 19309124 |
Pierre Vekhoff1, Ludovic Halby, Kahina Oussedik, Sabrina Dallavalle, Lucio Merlini, Christine Mahieu, Amélie Lansiaux, Christian Bailly, Alexandre Boutorine, Claudio Pisano, Giuseppe Giannini, Domenico Alloatti, Paola B Arimondo.
Abstract
Sequence-specific camptothecins are useful tools to inhibit specifically gene expression. The camptothecins are attached to the 3' end of triplex-forming oligonucleotides (TFO), sequence-specific DNA ligands that position the camptothecin moiety exclusively in proximity to their binding site. We studied here different gimatecan derivatives or analogues, a potent lipophilic camptothecin compound in clinical trials. We optimized the synthesis procedure in order to increase the yields and the purity and obtain the conjugates on a large scale. The greatly improved synthesis is now based on the conjugation of a bromoalkyl analogue of gimatecan to the 3' phosphorothioate of the TFO. We showed that the most efficient conjugate, both in vitro and in HeLa cells, bears the TFO on position 7 of the gimatecan analogue, and it is more efficient than the previous camptothecin conjugates. In addition, the gimatecan-like moiety at the 3' end of the TFO protects from nuclease degradation.Entities:
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Year: 2009 PMID: 19309124 DOI: 10.1021/bc800494y
Source DB: PubMed Journal: Bioconjug Chem ISSN: 1043-1802 Impact factor: 4.774