Hong Seong-Chul, Yoo Seung-Yup, Kim Hyeongmin, Lee Jaehwi
College of Pharmacy, Chung-Ang University, Seoul 06974, Korea.
Mar Drugs. 2017 Mar 1;15(3):60. doi: 10.3390/md15030060.
Chitosan has been widely used as a key biomaterial for the development of drug delivery systems intended to be administered via oral and parenteral routes. In particular, chitosan-based microparticles are the most frequently employed delivery system, along with specialized systems such as hydrogels, nanoparticles and thin films. Based on the progress made in chitosan-based drug delivery systems, the usefulness of chitosan has further expanded to anti-cancer chemoembolization, tissue engineering, and stem cell research. For instance, chitosan has been used to develop embolic materials designed to efficiently occlude the blood vessels by which the oxygen and nutrients are supplied. Indeed, it has been reported to be a promising embolic material. For better anti-cancer effect, embolic materials that can locally release anti-cancer drugs were proposed. In addition, a complex of radioactive materials and chitosan to be locally injected into the liver has been investigated as an efficient therapeutic tool for hepatocellular carcinoma. In line with this, a number of attempts have been explored to use chitosan-based carriers for the delivery of various agents, especially to the site of interest. Thus, in this work, studies where chitosan-based drug delivery systems have successfully been used for local delivery will be presented along with future perspectives.
壳聚糖作为一种关键生物材料,已被广泛应用于开发旨在通过口服和肠胃外途径给药的药物递送系统。特别是,基于壳聚糖的微粒是最常用的递送系统,此外还有水凝胶、纳米颗粒和薄膜等特殊系统。基于基于壳聚糖的药物递送系统所取得的进展,壳聚糖的用途进一步扩展到抗癌化疗栓塞、组织工程和干细胞研究。例如,壳聚糖已被用于开发栓塞材料,旨在有效阻塞供应氧气和营养物质的血管。事实上,据报道它是一种很有前景的栓塞材料。为了获得更好的抗癌效果,人们提出了能够局部释放抗癌药物的栓塞材料。此外,已研究了将放射性物质与壳聚糖的复合物局部注入肝脏,作为肝细胞癌的一种有效治疗工具。与此一致,人们已进行了许多尝试,探索使用基于壳聚糖的载体来递送各种药剂,尤其是递送至感兴趣的部位。因此,在这项工作中,将介绍基于壳聚糖的药物递送系统已成功用于局部递送的研究以及未来展望。