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水不溶性纤维素基材料在药物和生物医学应用中的研究进展

A Review of Water-Resistant Cellulose-Based Materials in Pharmaceutical and Biomedical Application.

机构信息

State Key Laboratory of Pulp and Paper Engineering, School of Light Industry and Engineering, South China University of Technology, Guangzhou 510640,China.

出版信息

Curr Med Chem. 2021;28(40):8296-8318. doi: 10.2174/0929867328666210208113354.

Abstract

BACKGROUND

Cellulose, having huge reserves of natural polymers, has been widely applied in pharmaceutical and biomedicine fields due to its good biocompatibility, biodegradability, non-toxicity and excellent mechanical properties. At present, water- resistant metal-based and petroleum-based materials applied in the medical field have obvious problems of poor biocompatibility and high cost. Therefore, water-resistant cellulose- based materials with good biocompatibility and low price have become an attractive alternative. This review aims to summarize the preparation of water-resistant cellulose- based materials and their potential application in pharmaceutical and biomedical in recent years.

METHODS

Common hydrophobic treatments of cellulose fibers or paper were overviewed. The preparation, properties and applications of water-resistant cellulose- based materials in the pharmaceutical and biomedical fields were summarized.

RESULTS

Common hydrophobic treatments of cellulose fibers or paper were divided into chemical modification (graft polymerization, crosslinking, solution casting or dip-coating), physico-chemical surface modifications (plasma treatments, surface patterning, electrostatic spraying and electrowetting) and physical processing (electrostatic spinning, SAS process and 3D EHD printing). These hydrophobically processed cellulose fibers or paper could be prepared into various water-resistant cellulose-based materials and applied in pharmaceutical excipients, drug-loaded amphiphilic micelles, drug-loaded composite fibers, hydrophobic biocomposite film/coatings and paper-based detectors. They presented excellent water resistance and biocompatibility, low cytotoxicity and high drug loading ability, and stable drug release rate, etc., which could be used for water-insoluble drugs carriers, wound dressings, and medical testing equipment.

CONCLUSION

Currently, water-resistant cellulose-based materials were mainly applied in water-insoluble drugs delivery carriers, wound dressing and medical diagnosis and presented great application prospects. However, the contradiction between hydrophobicity and mechanical properties of these reported water-resistant cellulose-based materials limited their wider application in biomedicine such as tissue engineering. In the future, attention will be focused on the higher hydrophobicity of water-resistant cellulose-based materials with excellent mechanical properties. In addition, clinical medical research of water-resistant cellulose-based materials should be strengthened.

摘要

背景

纤维素作为天然高分子聚合物的巨大储备库,由于其良好的生物相容性、可生物降解性、无毒和优异的机械性能,已广泛应用于制药和生物医学领域。目前,应用于医学领域的耐水金属基和石油基材料存在明显的生物相容性差和成本高的问题。因此,具有良好生物相容性和低价格的耐水纤维素基材料已成为一种有吸引力的替代品。本综述旨在总结近年来耐水纤维素基材料的制备及其在制药和生物医学领域的潜在应用。

方法

综述了纤维素纤维或纸的常见疏水化处理方法。总结了耐水纤维素基材料在制药和生物医学领域的制备、性能和应用。

结果

纤维素纤维或纸的常见疏水化处理方法分为化学改性(接枝聚合、交联、溶液浇铸或浸涂)、物理化学表面改性(等离子体处理、表面图案化、静电喷涂和电润湿)和物理处理(静电纺丝、SAS 工艺和 3D EHD 打印)。这些疏水化处理的纤维素纤维或纸可制备成各种耐水纤维素基材料,并应用于药物赋形剂、载药两亲性胶束、载药复合纤维、疏水生物复合材料膜/涂层和基于纸张的探测器。它们表现出优异的耐水性和生物相容性、低细胞毒性和高载药能力以及稳定的药物释放率等,可用于水不溶性药物载体、伤口敷料和医疗检测设备。

结论

目前,耐水纤维素基材料主要应用于水不溶性药物传递载体、伤口敷料和医学诊断中,具有广阔的应用前景。然而,这些报道的耐水纤维素基材料的疏水性和机械性能之间的矛盾限制了它们在组织工程等生物医学领域的更广泛应用。未来,将关注具有优异机械性能的更高疏水性的耐水纤维素基材料。此外,应加强耐水纤维素基材料的临床医学研究。

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