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一种用于葡萄糖响应性胰岛素释放的准聚轮烷:苯基硼酸基团的结合能力和空间排列的影响。

A Pseudopolyrotaxane for Glucose-Responsive Insulin Release: The Effect of Binding Ability and Spatial Arrangement of Phenylboronic Acid Group.

作者信息

Seki Tomohiro, Abe Keigo, Egawa Yuya, Miki Ryotaro, Juni Kazuhiko, Seki Toshinobu

机构信息

Faculty of Pharmaceutical Sciences, Josai University , Keyakidai, Sakado, Saitama 350-0295, Japan.

出版信息

Mol Pharm. 2016 Nov 7;13(11):3807-3815. doi: 10.1021/acs.molpharmaceut.6b00599. Epub 2016 Oct 17.

DOI:10.1021/acs.molpharmaceut.6b00599
PMID:27715064
Abstract

A pseudopolyrotaxane (PPRX) comprising 3-carboxy-5-nitrophenylboronic acid modified γ-cyclodextrin (NPBA-γ-CyD) and naphthalene modified polyethylene glycol (Naph-PEG) as a sugar-responsive supramolecular structure is prepared. The binding of sugar by the NPBA group induced disintegration of the Naph-PEG/NPBA-γ-CyD PPRX, allowing the components to be dissolved. The Naph-PEG/NPBA-γ-CyD PPRX exhibited better sensitivity compared to that of a PPRX based on 4-carboxyphenylboronic acid modified γ-cyclodextrin (PBA-γ-CyD). We have previously reported the unique structure of Naph-PEG/PBA-γ-CyD PPRX, which formed an inclusion complex with a single-stranded PEG chain being threaded through the γ-CyD rings, with the remaining internal space being occupied by the sugar-sensing PBA moiety from a neighboring ring, thus shielding it from sugar molecules and reducing the sugar sensitivity of the PPRX. In contrast, structural analyses in this study revealed that the sugar-sensing NPBA moiety in the Naph-PEG/NPBA-γ-CyD PPRX is not included in the neighboring NPBA-γ-CyD. This spatial arrangement and the high affinity of NPBA for sugar contributed to the improved sugar responsivity. The enhanced NPBA-γ-CyD was then applied to a PPRX containing Naph-PEG-appended insulin (Naph-PEG-Ins) that showed an improved response for glucose-induced insulin release.

摘要

制备了一种假聚轮烷(PPRX),其由3-羧基-5-硝基苯硼酸修饰的γ-环糊精(NPBA-γ-CyD)和萘修饰的聚乙二醇(Naph-PEG)组成,作为一种糖响应超分子结构。NPBA基团与糖的结合诱导了Naph-PEG/NPBA-γ-CyD PPRX的解体,使各组分得以溶解。与基于4-羧基苯硼酸修饰的γ-环糊精(PBA-γ-CyD)的PPRX相比,Naph-PEG/NPBA-γ-CyD PPRX表现出更好的灵敏度。我们之前报道过Naph-PEG/PBA-γ-CyD PPRX的独特结构:单链PEG链穿过γ-环糊精环形成包合物,其余内部空间被相邻环上的糖传感PBA部分占据,从而使其免受糖分子影响并降低了PPRX的糖敏感性。相比之下,本研究中的结构分析表明,Naph-PEG/NPBA-γ-CyD PPRX中的糖传感NPBA部分不包含在相邻的NPBA-γ-CyD中。这种空间排列以及NPBA对糖的高亲和力有助于提高糖响应性。然后,将增强型NPBA-γ-CyD应用于含有萘修饰的胰岛素(Naph-PEG-Ins)的PPRX,该PPRX对葡萄糖诱导的胰岛素释放表现出更好的响应。

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