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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Supramolecular and biomimetic polypseudorotaxane/glycopolymer biohybrids: Synthesis, glucose-surfaced nanoparticles, and recognition with lectin
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Supramolecular and biomimetic polypseudorotaxane/glycopolymer biohybrids: Synthesis, glucose-surfaced nanoparticles, and recognition with lectin

机译:超分子和仿生的聚假轮烷/糖聚合物生物杂化物:合成,葡萄糖表面的纳米颗粒和凝集素识别

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摘要

A new class of supramolecular and biomimetic glycopolymer/poly(E-caprolactone)-based polypseudorotaxane/ glycopolymer triblock copolymers (poly(D-gluconamidoethyl methacrylate)-PPR-poly(D-gluconamidoethyl methacrylate), PGAMA-PPR-PGAMA), exhibiting controlled molecular weights and low polydispersities, was synthesized by the combination of ring-opening polymerization of E-caprolactone, supramolecular inclusion reaction, and direct atom transfer radical polymerization (ATRP) of unprotected D-gluconamidoethyl methacrylate (GAMA) glycomonomer. The PPR macroinitiator for ATRP was prepared by the inclusion complexation of biodegradable poly(epsilon-caprolactone) (PCL) with a-cyclodextrin alpha-CD), in which the crystalline PCL segments were included into the hydrophobic alpha-CD cavities and their crystallization was completely suppressed. Moreover, the self-assembled aggregates from these triblock copolymers have a hydrophilic glycopolymer shell and an oligosaccharide threaded polypseudorotaxane core, which changed from spherical micelles to vesicles with the decreasing weight fraction of glycopolymer segments. Furthermore, it was demonstrated that these triblock copolymers had specific biomolecular recognition with concanavalin A (Con A) in comparison with bovine serum albumin (BSA). To the best of our knowledge, this is the first report that describes the synthesis of supramolecular and biomimetic polypseudorotaxane/glycopolymer biohybrids and the fabrication of glucose-shelled and oligosaccharide-threaded polypseudorotaxane-cored aggregates. This hopefully provides a platform for targeted drug delivery and for studying the biomolecular recognition between sugar and lectin.
机译:新型的超分子和仿生糖聚合物/聚(E-己内酯)基聚伪轮烷/糖聚合物三嵌段共聚物(聚(D-甲基丙烯酸氨基葡萄糖基甲基丙烯酸酯)-PPR-聚(D-甲基氨基葡萄糖酸甲基丙烯酸乙酯),PGAMA-PPR-PGAMA)表现出可控性通过E-己内酯的开环聚合,超分子包合反应和未保护的D-甲基氨基葡糖基甲基丙烯酸酯(GAMA)糖单体的直接原子转移自由基聚合(ATRP)的组合,合成了具有低分子量和低多分散性的化合物。通过将可生物降解的聚(ε-己内酯)(PCL)与α-环糊精α-CD包合络合制备ATRP的PPR大分子引发剂,其中结晶PCL链段包含在疏水性α-CD腔中,且其结晶为完全被压制。此外,这些三嵌段共聚物的自组装聚集体具有亲水性糖聚合物壳和低聚糖带螺纹的聚假轮烷核,其从球形胶束变为囊泡,且糖聚合物链段的重量分数降低。此外,已证明与牛血清白蛋白(BSA)相比,这些三嵌段共聚物对伴刀豆球蛋白A(Con A)具有特定的生物分子识别。据我们所知,这是第一份描述超分子和仿生聚假轮烷/糖聚合物生物杂化物的合成以及葡萄糖壳和寡糖螺纹化聚假轮烷为核心的聚集体的报告。这有望为靶向药物递送和研究糖与凝集素之间的生物分子识别提供一个平台。

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