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首页> 外文期刊>Macromolecular chemistry and physics >Self-aggregate nanoparticles of cholesteryl and galactoside groups-substituted pullulan and their specific binding to galactose specific lectin, RCA_(120)
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Self-aggregate nanoparticles of cholesteryl and galactoside groups-substituted pullulan and their specific binding to galactose specific lectin, RCA_(120)

机译:胆固醇和半乳糖苷基团取代的支链淀粉的自聚集纳米颗粒及其与半乳糖特异性凝集素RCA_(120)的特异性结合

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摘要

The hydrophobized polysaccharide cholesterol-bearing pullulan (CHP) forms hydrogel nanoparticles upon self-aggregation in water. To endow cell specificity to nanoparticles of CHP, galactosides were additionally substituted to CHP with various spacer lengths and degrees of substitution. The resulting CHP derivatives also form monodisperse nanoparticles by self-aggregation in water. All self-aggregate nanoparticles strongly bind to the #beta#-D-galactose-specific lectin, RCA_(120) (Ricinus communis agglutinin). The affinity of substituted galactosides to the lectin was quantitatively studied using a fluorescence polarization technique by competitive binding with 4-methylumbelliferyl #beta#-D-galactopyranoside (MUG). This affinity strongly depends on its chemical structure, degree of substitution, and spacer length. The binding constant per galactose moiety drastically increased by substitution to the polymer backbone.
机译:疏水的多糖胆固醇胆固醇支链淀粉(CHP)在水中自聚集后形成水凝胶纳米颗粒。为了赋予细胞对CHP纳米颗粒的特异性,半乳糖苷还被替换为具有各种间隔长度和取代度的CHP。所得的CHP衍生物还通过在水中自聚集形成单分散的纳米颗粒。所有自聚集的纳米颗粒均与#beta#-D-半乳糖特异性凝集素RCA_(120)(Ricinus communis agglutinin)牢固结合。通过与4-甲基伞形酮#β#-D-吡喃半乳糖苷(MUG)竞争结合,使用荧光偏振技术对取代的半乳糖苷对凝集素的亲和力进行了定量研究。这种亲和力很大程度上取决于其化学结构,取代度和间隔基长度。通过取代至聚合物主链,每个半乳糖部分的结合常数急剧增加。

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