Transition-Metal-Free Synthesis of C‑Glycosylated Phenanthridines via K2S2O8‑Mediated Oxidative Radical Decarboxylation of Uronic Acids
收藏figshare.com2023-05-31 更新2025-01-21 收录
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https://figshare.com/articles/dataset/Transition-Metal-Free_Synthesis_of_C_Glycosylated_Phenanthridines_via_K_sub_2_sub_S_sub_2_sub_O_sub_8_sub_Mediated_Oxidative_Radical_Decarboxylation_of_Uronic_Acids/5747184/1
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We
have developed an efficient protocol for the synthesis of C-glycosylated
phenanthridines. Tetrafuranos-4-yl and pentapyranos-5-yl radicals,
generated from K2S2O8-mediated oxidative
decarboxylation of furan- and pyranuronic acids, undergo attack to
2-isocyanodiphenyls and ensuing homolytic aromatic substitution to
provide diverse C-glycosylated phenanthridines in satisfactory yields
without resort to transition metals. This reaction tolerates various
functional groups, and enables ready synthesis of complex oligosaccharide-based
phenanthridines. The C-glycosylated phenanthridine derived from β-cyclodextrin
has been prepared, which might be potential in medicinal and biological
chemistry due to its flexible conformation.
本研究团队成功研发了一种合成C-糖苷化菲类化合物的有效方法。通过使用K2S2O8介导的氧化脱羧反应,从糠酸和吡喃酸中生成四呋喃糖-4-基和五吡喃糖-5-基自由基,这些自由基对2-异氰基二苯基进行攻击,并随后发生均裂芳香取代反应,从而在不使用过渡金属的情况下,以令人满意的产率提供多种C-糖苷化菲类化合物。该反应对多种官能团具有耐受性,并能够迅速合成基于复杂寡糖的菲类化合物。由β-环糊精衍生出的C-糖苷化菲类化合物已被制备,由于其灵活的构象,其在医药和生物化学领域具有潜在的应用价值。
提供机构:
ACS Publications



