Matsuoka Koji, Terabatake Mikiko, Umino Atsushi, Esumi Yasuaki, Hatano Ken, Terunuma Daiyo, Kuzuhara Hiroyoshi
Department of Functional Materials Science, Faculty of Engineering, Saitama University, Sakura, Saitama 338-8570, Japan.
Biomacromolecules. 2006 Aug;7(8):2274-83. doi: 10.1021/bm060368+.
As an application of a one-pot reaction involving Birch reduction and subsequent S(N)2 reaction in liquid ammonia, synthetic assembly of trisaccharidic moieties of globotriaosyl ceramide onto carbosilane dendrimers was accomplished using tris(3-bromopropyl)phenylsilane and tris[tris(3-bromopropyl)silylpropyl]phenylsilane as the core scaffolds. The common globotriaosyl derivative having benzylsulfide functionality at the terminal of the aglycon was efficiently prepared from d-galactose and d-lactose as starting materials. The glycosyl donor derived from galactose and the glycosyl acceptor derived from lactose were condensed in the presence of silver triflate as the best promoter to provide corresponding trisaccharide with newly formed alpha-1-4 linkages in 90% yield. Fully benzylated protection of the trisaccharide was deprotected under the Birch reduction condition followed by acetylation to give an acetate in which alkene was converted into benzyl sulfide by radical addition of alpha-toluenethiol in high yields. On the other hand, carbosilane dendrimers were prepared from appropriate chlorosilanes as starting materials by a combination of hydrosylation followed by alkenylation. The terminal C=C double bonds of the carbosilanes were converted into corresponding alcohols by means of the usual hydroboration reaction, and the alcohols underwent further chemical manipulation to give carbosilane dendrimers with peripheral bromine atoms.
作为涉及Birch还原和随后在液氨中的S(N)2反应的一锅法反应的应用,使用三(3-溴丙基)苯基硅烷和三[三(3-溴丙基)硅丙基]苯基硅烷作为核心支架,将球三糖神经酰胺的三糖部分合成组装到碳硅烷树枝状大分子上。以d-半乳糖和d-乳糖为起始原料,高效制备了在苷元末端具有苄硫醚官能团的常见球三糖衍生物。在三氟甲磺酸银作为最佳促进剂的存在下,将衍生自半乳糖的糖基供体和衍生自乳糖的糖基受体缩合,以90%的产率提供具有新形成的α-1-4键的相应三糖。在Birch还原条件下对三糖的全苄基化保护进行脱保护,然后乙酰化,得到一种乙酸酯,其中烯烃通过α-甲苯硫醇的自由基加成高产率地转化为苄硫醚。另一方面,以适当的氯硅烷为起始原料,通过羟基化随后烯基化的组合制备碳硅烷树枝状大分子。通过通常的硼氢化反应将碳硅烷的末端C=C双键转化为相应的醇,并且这些醇经过进一步的化学处理,得到具有外围溴原子的碳硅烷树枝状大分子。