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具有可调糖胺聚糖密度的蛋白聚糖模拟接枝共聚物的合成与表征。

Synthesis and characterization of proteoglycan-mimetic graft copolymers with tunable glycosaminoglycan density.

作者信息

Place Laura W, Kelly Sean M, Kipper Matt J

机构信息

School of Biomedical Engineering and ‡Department of Chemical and Biological Engineering, Colorado State University , 1370 Campus Delivery, Fort Collins, Colorado 80523, United States.

出版信息

Biomacromolecules. 2014 Oct 13;15(10):3772-80. doi: 10.1021/bm501045k. Epub 2014 Sep 15.

Abstract

Proteoglycans (PGs) are important glycosylated proteins found on the cell surface and in the extracellular matrix. They are made up of a core protein with glycosaminoglycan (GAG) side chains. Variations in composition and number of GAG side chains lead to a vast array of PG sizes and functions. Here we present a method for the synthesis of proteoglycan-mimetic graft copolymers (or neoproteoglycans) with tunable GAG side-chain composition. This is done using three different GAGs: hyaluronan, chondroitin sulfate, and heparin. Hyaluronan is functionalized with a hydrazide-presenting linker. Either chondroitin sulfate or heparin is grafted by the reducing end on to the hyaluronan backbone through reductive amination. PG mimics with heparin or chondroitin sulfate side chains and four different ratios of GAG side chain result in graft copolymers with a wide range of sizes. The chemistry is confirmed through attentuated total reflectance Fourier transform infrared spectroscopy (ATR-FTIR) and (1)H NMR. Effective hydrodynamic diameter and zeta potential are determined using dynamic light scattering and electrophoretic mobility measurements. Graft copolymers were tested for their ability to bind and deliver basic fibroblast growth factor (FGF-2) to mesenchymal stem cells (MSCs). The chondroitin sulfate-containing graft copolymers successfully deliver FGF-2 to cells from surfaces. The lowest graft density of heparin-containing PG mimic also performs well with respect to growth factor delivery from a surface. This new method for preparation of GAG-based graft copolymers enables a wide range of graft density, and can be used to explore applications of PG mimics as new biomaterials with tunable biochemical and biomechanical functions.

摘要

蛋白聚糖(PGs)是在细胞表面和细胞外基质中发现的重要糖基化蛋白。它们由带有糖胺聚糖(GAG)侧链的核心蛋白组成。GAG侧链组成和数量的变化导致了大量不同大小和功能的PG。在这里,我们提出了一种合成具有可调GAG侧链组成的蛋白聚糖模拟接枝共聚物(或新蛋白聚糖)的方法。这是通过使用三种不同的GAG来完成的:透明质酸、硫酸软骨素和肝素。透明质酸用带有酰肼的连接子进行功能化。硫酸软骨素或肝素通过还原胺化反应在还原端接枝到透明质酸主链上。带有肝素或硫酸软骨素侧链以及四种不同GAG侧链比例的PG模拟物会产生一系列不同大小的接枝共聚物。通过衰减全反射傅里叶变换红外光谱(ATR-FTIR)和¹H NMR对该化学过程进行了确认。使用动态光散射和电泳迁移率测量来确定有效流体动力学直径和zeta电位。对接枝共聚物结合并向间充质干细胞(MSCs)递送碱性成纤维细胞生长因子(FGF-2)的能力进行了测试。含硫酸软骨素的接枝共聚物成功地将FGF-2从表面递送至细胞。含肝素的PG模拟物的最低接枝密度在从表面递送生长因子方面也表现良好。这种制备基于GAG的接枝共聚物的新方法能够实现广泛的接枝密度,并且可用于探索PG模拟物作为具有可调生化和生物力学功能的新型生物材料的应用。

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