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基于天然聚合物的多孔基质药物释放

Drug Release from Porous Matrixes based on Natural Polymers.

作者信息

Kaczmarek Beata, Sionkowska Alina

机构信息

Department of Chemistry of Biomaterials and Cosmetics, Faculty of Chemistry, Nicolaus Copernicus University in Torun, Torun. Poland.

出版信息

Curr Pharm Biotechnol. 2017;18(9):721-729. doi: 10.2174/1389201018666171103141347.

Abstract

BACKGROUND

This review provides a report on recent advances in the field of drug release from matrixes made of natural polymers. Herein, the properties of natural polymers such as proteins and polysaccharides are discussed in general. Selected detailed examples of drug release profiles from biopolymer matrixes have also been collected from scientific literature and practical work, and commented on. In this review, the most common natural polymers, i.e. collagen, elastin, chitosan, hyaluronic acid and sodium alginate have been discussed as biopolymers that can be potentially applied in drug delivery systems.

METHODOLOGY

The most rapidly developing field of the biomaterials science is the one dealing with their application as matrixes in drug release systems. Such systems show numerous advantages when compared to conventional ones. They improve medical treatment efficiency due to the fact that drugs are placed directly into the infected part. Moreover, the drug release systems reduce toxic reactions because the drug does not pass through the body and, as a result, does not affect the healthy tissues. Such systems also improve the patient's comfort during the treatment.

RESULT

Biocompatibility, bioresorbability and non-toxicity are the significant properties characteristic for natural polymers. Natural polymers can be used to obtain biomaterials which can further find their applications in the production of bones or soft tissues implants as well as dressing materials placed on damaged skin. Nevertheless, the disadvantages of biomaterials made of natural polymers, e.g., high solubility and low thermal stability, limit the range of their potential applications. Therefore, it is necessary to modify material properties by carrying out the cross-linking process.

CONCLUSION

Recently, a rapidly growing interest in the use of porous materials as controlled drug delivery matrixes has been observed since they present several positive features. The drug release from polymeric matrixes is based on the carrier degradation process which depends on dissolving and diffusion processes. The selection of a polymeric matrix depends on its compatibility with the drug as well as the manufacturing process which needs to be considered. The proper adjustment of the drug release rate is necessary to obtain the best results during medical treatment. Numerous classes of hydrophilic as well as hydrophobic drugs can be released from polymeric matrixes which is beneficial to medical treatment. The research of different drug release systems has already been carried out, and the results can be found in scientific literature.

摘要

背景

本综述报告了天然聚合物基质药物释放领域的最新进展。本文总体讨论了蛋白质和多糖等天然聚合物的特性。还从科学文献和实际工作中收集并评论了生物聚合物基质药物释放曲线的选定详细示例。在本综述中,最常见的天然聚合物,即胶原蛋白、弹性蛋白、壳聚糖、透明质酸和海藻酸钠,已作为可潜在应用于药物递送系统的生物聚合物进行了讨论。

方法

生物材料科学中发展最快的领域之一是将其用作药物释放系统中的基质。与传统系统相比,此类系统具有众多优势。由于药物直接放置在感染部位,它们提高了医疗效率。此外,药物释放系统减少了毒性反应,因为药物不经过身体,因此不会影响健康组织。此类系统还提高了患者治疗期间的舒适度。

结果

生物相容性、生物可吸收性和无毒性是天然聚合物的重要特性。天然聚合物可用于获得生物材料,这些生物材料可进一步应用于骨或软组织植入物的生产以及放置在受损皮肤上的敷料材料。然而,由天然聚合物制成的生物材料的缺点,例如高溶解性和低热稳定性,限制了它们潜在应用的范围。因此,有必要通过进行交联过程来改变材料特性。

结论

最近,人们对使用多孔材料作为控释药物递送基质的兴趣迅速增长,因为它们具有几个积极的特性。聚合物基质中的药物释放基于载体降解过程,该过程取决于溶解和扩散过程。聚合物基质的选择取决于其与药物的相容性以及需要考虑的制造过程。适当调整药物释放速率对于在医疗过程中获得最佳结果是必要的。多种亲水性和疏水性药物都可以从聚合物基质中释放出来,这对医疗有益。已经对不同的药物释放系统进行了研究,结果可以在科学文献中找到。

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