College of Chemistry, The Key Lab of Chemical Biology and Organic Chemistry, Zhengzhou University, Zhengzhou, Henan 450052, China.
Org Biomol Chem. 2020 Mar 4;18(9):1800-1805. doi: 10.1039/c9ob02717c.
The synthesis of thiophene C-nucleoside analogues bearing sugar residues (mono- and disaccharides) and aromatic residues has been achieved by symmetric dimerization of terminal sugar alkynes or unsymmetric dimerization of terminal sugar alkynes and substituted iodoethynylbenzene followed by sulfur heterocyclization in one pot. Homocoupling of terminal sugar alkynes and subsequent sulfur heterocyclization produce thiophene C-nucleoside analogues bearing disaccharides. Unsymmetric dimerization of terminal sugar alkynes and substituted iodoethynylbenzene followed by sulfur heterocyclization give thiophene C-nucleoside analogues bearing monosaccharide and aromatic residues. This approach is concise, general and mild, and is suitable for structurally diverse pyranosides, furanosides, and acyclic sugars. Thirty-two examples have been given and the corresponding products are obtained in moderate to excellent yields.
通过末端糖炔烃的对称二聚或末端糖炔烃和取代碘代乙炔基苯的不对称二聚,以及一锅硫杂环化反应,合成了带有糖残基(单糖和二糖)和芳基残基的噻吩 C-核苷类似物。末端糖炔烃的同偶联和随后的硫杂环化反应产生带有二糖的噻吩 C-核苷类似物。末端糖炔烃和取代碘代乙炔基苯的不对称二聚以及随后的硫杂环化反应得到带有单糖和芳基残基的噻吩 C-核苷类似物。该方法简洁、通用且温和,适用于结构多样的吡喃糖苷、呋喃糖苷和无环糖。已经给出了 32 个实例,并且以中等至优异的产率得到了相应的产物。