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首页> 外文期刊>Biomacromolecules >Innovative Approach for Producing Injectable,Biodegradable Materials Using Chitooligosaccharides and Green Chemistry
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Innovative Approach for Producing Injectable,Biodegradable Materials Using Chitooligosaccharides and Green Chemistry

机译:利用壳寡糖和绿色化学生产可注射,可生物降解材料的创新方法

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Although there are a number of injectable biomaterials currently under development,they present some drawbacks such as being based on synthetic polymers,needing toxic or aggressive synthesis procedures or using raw materials with low availability and/or high production costs.Having this in mind,a novel injectable biomaterial using chitooligosaccharides as starting materials was developed.This system uses a widely available and cheap polymer from marine biomass(chitosan),which can be turned into an injectable material by water-based and ecologically friendly reactions.Chitooligosaccharides were functionalized with methacrylic groups,to allow in situ cross-linking.The degree of substitution,as determined by ~1H NMR,varied between 5 and 50%.The system was characterized in terms of kinetics of gel formation,rheology,degradation behavior and in vitro cytotoxicity.The gelation time could be easily tailored between 1.5 and 60 min by changing the conditions of the methacrylation reaction,and the final gel presented rheological properties typical of strong gels,that is,shear stresses in the kPa range.The cross-linked gel was degradable and nontoxic,presenting indeed an interesting cytokinetic effect.Injectable materials based on chitooligosaccharides are,therefore,an innovative system combining adequate biological performance,ease of preparation,and an ecologically friendly concept of production.
机译:尽管目前正在开发许多可注射的生物材料,但它们也存在一些缺点,例如基于合成聚合物,需要有毒或侵蚀性的合成程序或使用原料利用率低和/或生产成本高的原料。开发了一种以壳寡糖为原料的新型可注射生物材料。该系统使用了一种广泛使用的廉价海洋生物质聚合物(壳聚糖),可以通过水基和生态友好的反应转变为可注射材料。通过〜1H NMR确定的取代度在5%至50%之间。该体系通过凝胶形成动力学,流变学,降解行为和体外细胞毒性进行了表征。通过改变甲基丙烯酸化反应的条件,可以很容易地将胶凝时间调整为1.5至60分钟,最终的凝胶具有典型的强凝胶流变特性,即在kPa范围内的剪切应力。交联的凝胶可降解且无毒,确实具有令人感兴趣的细胞动力学作用。因此,基于壳寡糖的可注射材料是一种创新的系统兼具充分的生物学性能,易于制备和生态友好的生产理念。

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