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New Formulations of Polysaccharide-Based Hydrogels for Drug Release and Tissue Engineering

机译:用于药物释放和组织工程的基于多糖的水凝胶新配方

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Polysaccharide-based hydrogels are very promising materials for a wide range of medical applications, ranging from tissue engineering to controlled drug delivery for local therapy. The most interesting property of this class of materials is the ability to be injected without any alteration of their chemical, mechanical and biological properties, by taking advantage of their thixotropic behavior. It is possible to modulate the rheological and chemical-physical properties of polysaccharide hydrogels by varying the cross-linking agents and exploiting their thixotropic behavior. We present here an overview of our synthetic strategies and applications of innovative polysaccharide-based hydrogels: hyaluronan-based hydrogel and new derivatives of carboxymethylcellulose have been used as matrices in the field of tissue engineering; while guar gum-based hydrogel and hybrid magnetic hydrogels, have been used as promising systems for targeted controlled drug release. Moreover, a new class of materials, interpenetrating hydrogels (IPH), have been obtained by mixing various native thixotropic hydrogels.
机译:多糖基水凝胶是非常有前途的材料,可用于广泛的医学应用,从组织工程到控制药物的局部治疗。这类材料最有趣的特性是可以利用其触变特性在不改变其化学,机械和生物学特性的情况下进行注入。通过改变交联剂并利用其触变性,可以调节多糖水凝胶的流变学和化学物理性质。我们在这里概述了我们创新的基于多糖的水凝胶的合成策略和应用:基于透明质酸的水凝胶和羧甲基纤维素的新衍生物已被用作组织工程领域的基质。瓜尔胶基水凝胶和杂化磁性水凝胶已被用作有针对性的靶向药物释放系统。而且,通过混合各种天然的触变水凝胶已经获得了新型材料,互穿水凝胶(IPH)。

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