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Polysaccharides for the Delivery of Antitumor Drugs

机译:用于抗肿瘤药物的多糖

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摘要

Among the several delivery materials available so far, polysaccharides represent very attractive molecules as they can undergo a wide range of chemical modifications, are biocompatible, biodegradable, and have low immunogenic properties. Thus, polysaccharides can contribute to significantly overcome the limitation in the use of many types of drugs, including anti-cancer drugs. The use of conventional anti-cancer drugs is hampered by their high toxicity, mostly depending on the indiscriminate targeting of both cancer and normal cells. Additionally, for nucleic acid based drugs (NABDs), an emerging class of drugs with potential anti-cancer value, the practical use is problematic. This mostly depends on their fast degradation in biological fluids and the difficulties to cross cell membranes. Thus, for both classes of drugs, the development of optimal delivery materials is crucial. Here we discuss the possibility of using different kinds of polysaccharides, such as chitosan, hyaluronic acid, dextran, and pullulan, as smart drug delivery materials. We first describe the main features of polysaccharides, then a general overview about the aspects ruling drug release mechanisms and the pharmacokinetic are reported. Finally, notable examples of polysaccharide-based delivery of conventional anti-cancer drugs and NABDs are reported. Whereas additional research is required, the promising results obtained so far, fully justify further efforts, both in terms of economic support and investigations in the field of polysaccharides as drug delivery materials.
机译:迄今为止,在几种可用的输送材料中,多糖代表了非常有吸引力的分子,因为它们可以进行广泛的化学修饰,具有生物相容性,可生物降解性,并且免疫原性低。因此,多糖可有助于显着克服包括抗癌药在内的多种类型药物的使用限制。常规抗癌药的高毒性阻碍了常规抗癌药的使用,这主要取决于对癌症和正常细胞的不加选择的靶向。另外,对于基于核酸的药物(NABD),具有潜在抗癌价值的新兴药物,实际使用是有问题的。这主要取决于它们在生物体液中的快速降解以及跨细胞膜的困难。因此,对于两种药物,开发最佳的递送材料都是至关重要的。在这里,我们讨论了使用不同种类的多糖(例如壳聚糖,透明质酸,葡聚糖和支链淀粉)作为智能药物递送材料的可能性。我们首先描述多糖的主要特征,然后概述了关于药物释放机理和药代动力学方面的综述。最后,报告了常规抗癌药物和NABD基于多糖的递送的显着实例。尽管需要进一步的研究,但迄今为止,在经济上的支持和多糖作为药物递送材料领域的研究方面,迄今获得的有希望的结果充分证明了进一步努力的合理性。

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