| Literature DB >> 28546071 |
Charles Skarbek1, Julia Delahousse2, Catherine Pioche-Durieu3, Sonia Baconnais3, Alain Deroussent1, Patrice Renevret4, Michael Rivard4, Didier Desmaele5, Thierry Martens4, Eric Le Cam3, Patrick Couvreur5, Angelo Paci6.
Abstract
Oxazaphosphorines including cyclophosphamide, trofosfamide and ifosfamide (IFO) belong to the alkylating agent class and are indicated in the treatment of numerous cancers. However, IFO is subject to limiting side-effects in high-dose protocols. To circumvent IFO drawbacks in clinical practices, preactivated IFO analogs were designed to by-pass the toxic metabolic pathway. Among these IFO analogs, some of them showed the ability to self-assemble due to the use of a poly-isoprenyloxy chain as preactivating moiety. We present here, the in vitro activity of the nanoassembly formulations of preactivated IFO derivatives with a C-4 geranyloxy, farnesyloxy and squalenoxy substituent on a large panel of tumor cell lines. The chemical and colloidal stabilities of the geranyloxy-IFO (G-IFO), farnesyloxy-IFO (F-IFO) and squalenoxy-IFO (SQ-IFO) NAs were further evaluated in comparison to their free formulation. Finally, pharmacokinetic parameters and maximal tolerated dose of the most potent preactivated IFO analog (G-IFO) were determined and compared to IFO, paving the way to in vivo studies.Entities:
Keywords: Cancer drug delivery; Ifosfamide; Nanoassemblies; Prodrug
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Year: 2017 PMID: 28546071 DOI: 10.1016/j.ijpharm.2017.05.044
Source DB: PubMed Journal: Int J Pharm ISSN: 0378-5173 Impact factor: 5.875