...
首页> 外文期刊>Biomacromolecules >Mild and Efficient Strategy for Site-Selective Aldehyde Modification of Glycosaminoglycans: Tailoring Hydrogels with Tunable Release of Growth Factor
【24h】

Mild and Efficient Strategy for Site-Selective Aldehyde Modification of Glycosaminoglycans: Tailoring Hydrogels with Tunable Release of Growth Factor

机译:糖胺聚糖的位点醛修饰的温和有效策略:定制具有可调节释放生长因子的水凝胶

获取原文
获取原文并翻译 | 示例

摘要

Aldehydes have been used as an important bioorthogonal chemical reporter for conjugation of large polymers and bioactive substances. However, generating aldehyde functionality on carbohydrate-based biopolymers without changing its native chemical structure has always persisted as a; challenging task. The common methods employed to achieve this require harsh reaction conditions, which often compromise the structural integrity and biological function of these sensitive molecules. Here we report a mild and simple method to graft aldehydes groups on glycosaminoglycans (GAGs) in a site-selective manner without compromising the structural integrity of the biopolymer. This regio-s elective modification was achieved by conjugating the amino-glycerol moiety on the carboxylate residue of the polymer, which allowed selective cleavage of pendent diol groups without interfering with the C2-C3 diol groups of the native glucopyranose residue. Kinetic evaluation of this reaction demonstrated significant differences in second-order reaction rate for periodate oxidation (by four-orders of magnitude) between the two types of vicinal diols. We employed this chemistry to develop aldehyde modifications of sulfated and nonsulfated GAGs such as hyaluronic acid (HA), heparin (HP), and chondroitin sulfate (CS). We further utilized these aldehyde grafted GAGs to tailor extracellular matrix mimetic injectable hydrogels and evaluated its theological properties. The composition of the hydrogels was also found to modulate release of therapeutic protein such as FGF-2, demonstrating controlled release (60%) for over 14 days. In short, our result clearly demonstrates a versatile strategy to graft aldehyde groups on sensitive biopolymers under mild conditions that could be applied for various bioconjugation and biomedical applications such as drug delivery and regenerative medicine.
机译:醛已被用作重要的生物正交化学报告物,用于偶联大型聚合物和生物活性物质。但是,在不改变其天然化学结构的情况下,在碳水化合物基生物聚合物上产生醛官能度一直存在。具有挑战性的任务。实现此目的的常用方法需要苛刻的反应条件,这通常会损害这些敏感分子的结构完整性和生物学功能。在这里,我们报告了一种温和且简单的方法,可以以位点选择的方式接枝糖胺聚糖(GAG)上的醛基,而不会损害生物聚合物的结构完整性。这种区域选择性的修饰是通过缀合聚合物羧酸酯残基上的氨基甘油部分实现的,这允许侧链二醇基团的选择性裂解而不会干扰天然吡喃葡萄糖残基的C2-C3二醇基团。对该反应的动力学评估表明,两种类型的邻位二醇之间的高碘酸盐氧化反应的二级反应速率存在明显差异(四个数量级)。我们利用这种化学方法开发了硫酸化和非硫酸化GAG(例如透明质酸(HA),肝素(HP)和硫酸软骨素(CS))的醛修饰。我们进一步利用这些醛接枝的GAG来定制细胞外基质模拟可注射水凝胶,并评估其流变特性。还发现水凝胶的组成可调节治疗性蛋白质(例如FGF-2)的释放,在14天内显示出控制释放(60%)。简而言之,我们的结果清楚地表明了在温和条件下将醛基接枝到敏感生物聚合物上的通用策略,该策略可用于各种生物偶联和生物医学应用,例如药物递送和再生医学。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号