Oxaphosphinanes: New Therapeutic Perspectives for Glioblastoma

Journal of Medicinal Chemistry
2012.0

Abstract

This paper reports the design and the synthesis of a new family of compounds, the phostines, belonging to the [1,2]oxaphosphinane family. Twenty-six compounds have been screened for their antiproliferative activity against a large panel of NCI cancer cell lines. Because of its easy synthesis and low EC(50) value (500 nM against the C6 rat glioma cell line), compound 3.1a was selected for further biological study. Moreover, the specific biological effect of 3.1a on the glioblastoma phylogenetic cluster from the NCI is dependent on its stereochemistry. Within that cluster, 3.1a has a higher antiproliferative activity than Temozolomide and is more potent than paclitaxel for the SF295 and SNB75 cell lines. In constrast with paclitaxel and vincristine, 3.1a is devoid of astrocyte toxicity. The original activity spectrum of 3.1a on the NCI cancer cell line panel allows the development of this family for use in association with existing drugs, opening new therapeutic perspectives.

Knowledge Graph

Similar Paper

Oxaphosphinanes: New Therapeutic Perspectives for Glioblastoma
Journal of Medicinal Chemistry 2012.0
Antitumor activities of some new 1,3,2-oxaza- and 1,3,2-diazaphosphorinanes against K562, MDA-MB-231, and HepG2 cells
Medicinal Chemistry Research 2012.0
New .alpha.-amino phosphonic acid derivatives of vinblastine: chemistry and antitumor activity
Journal of Medicinal Chemistry 1991.0
Towards lead compounds as anti-cancer agents via new phaeosphaeride A derivatives
Bioorganic & Medicinal Chemistry Letters 2019.0
Design, synthesis and pharmacological evaluation of new 2-oxo-quinoline derivatives containing α-aminophosphonates as potential antitumor agents
MedChemComm 2017.0
Structure−Activity Relationships and Cancer-Cell Selective Toxicity of Novel Inhibitors of Glioma-Associated Oncogene Homologue 1 (Gli1) Mediated Transcription
Journal of Medicinal Chemistry 2009.0
Novel N-(phosphonomethyl) glycine derivatives: Design, characterization and biological activity
European Journal of Medicinal Chemistry 2008.0
Design, synthesis and cytotoxicity of the antitumor agent 1-azabicycles for chemoresistant glioblastoma cells
Investigational New Drugs 2020.0
Diversity-oriented synthesis of α-aminophosphonates: A new class of potential anticancer agents
European Journal of Medicinal Chemistry 2013.0
Non-alkylator anti-glioblastoma agents induced cell cycle G2/M arrest and apoptosis: Design, in silico physicochemical and SAR studies of 2-aminoquinoline-3-carboxamides
Bioorganic & Medicinal Chemistry Letters 2021.0