Versatile synthesis and biological evaluation of novel 3'-fluorinated purine nucleosides

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Abstract

A unified synthetic strategy accessing novel 3'-fluorinated purine nucleoside derivatives and their biological evaluation were achieved. Novel 3'-fluorinated analogues were constructed from a common 3'-deoxy-3'-fluororibofuranose intermediate. Employing Suzuki and Stille cross-coupling reactions, fifteen 3'-fluororibose purine nucleosides 1-15 and eight 3'-fluororibose 2-chloro/2-aminopurine nucleosides 16-23 with various substituents at position 6 of the purine ring were efficiently synthesized. Furthermore, 3'-fluorine analogs of natural products nebularine and 6-methylpurine riboside were constructed via our convergent synthetic strategy. Synthesized nucleosides were tested against HT116 (colon cancer) and 143B (osteosarcoma cancer) tumor cell lines. We have demonstrated 3'-fluorine purine nucleoside analogues display potent tumor cell growth inhibition activity at sub- or low micromolar concentration.

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Ren, H., An, H., Hatala, P. J., Stevens, W. C., Tao, J., & He, B. (2015). Versatile synthesis and biological evaluation of novel 3’-fluorinated purine nucleosides. Beilstein Journal of Organic Chemistry, 11, 2509–2520. https://doi.org/10.3762/bjoc.11.272

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