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Synthesis and biophysical study of disassembling nanohybrid bioconjugates with a cubic octasilsesquioxane core

机译:具有立方八倍半硅氧烷倍半氧烷核心的纳米杂化生物共轭物的合成及生物物理研究

摘要

Polyhedral oligosilsesquioxanes (POSS) have recently attracted attention as scaffolds for the synthesis of multivalent bioconjugates. The synthesis of glycosyl-octasilsesquioxanes (glyco-POSS) using a copper(I)-catalyzed azide-alkyne 1,3-dipolar cycloaddition approach is reported. The problems associated with the use of bases or aqueous media in their preparation are investigated and a comprehensive study of the multivalent interaction between the mannosyl-octasilsesquioxanes and a model lectin, concanavalin A (Con A), using an array of complementary biophysical techniques is presented. The possibility to modulate the half-life of POSS conjugates in aqueous solution and the low toxicity of their constituent monomeric organosilanes offers an advantage over other scaffolds in vivo, preventing bioaccumulation and saturation of complementary receptors (lectins). Despite the hydrolysis in water, the octamannosyl-POSS studied shows a 50-fold higher binding affinity to Con A than methyl α-D-mannopyranoside. These experiments suggest that the novel glyco-POSS are attractive compounds for in vivo applications that require multivalent display of glycans.
机译:多面体低聚倍半硅氧烷(POSS)最近作为合成多价生物共轭物的支架而受到关注。报道了使用铜(I)催化的叠氮化物-炔烃1,3-偶极环加成方法合成糖基-八聚倍半硅氧烷(glyco-POSS)。研究了与碱或水性介质在制备中的使用有关的问题,并使用一系列互补的生物物理技术对甘露糖基-八倍半倍半硅氧烷与模型凝集素伴刀豆球蛋白A(Con A)之间的多价相互作用进行了全面研究。 。调节水溶液中POSS共轭物半衰期的可能性以及其组成单体有机硅烷的低毒性,使其在体内优于其他支架,从而防止了生物蓄积和互补受体(凝集素)的饱和。尽管在水中水解,但研究的八甘露糖基-POSS与Con A的结合亲和力比甲基α-D-甘露糖吡喃糖苷高50倍。这些实验表明,对于需要多价显示聚糖的体内应用,新型糖-POSS是有吸引力的化合物。

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