Wang Zixu, Yu Fangying, Hu Fuqiang
College of Pharmaceutical Science, Zhejiang University, Hangzhou 310058, China.
National Key Laboratory of Advanced Drug Delivery and Release Systems, Zhejiang University, Hangzhou 310058, China.
Pharmaceutics. 2024 Feb 28;16(3):337. doi: 10.3390/pharmaceutics16030337.
In the struggle against diseases, the development of nano-therapy has certainly been a tremendous progression owing to the various superiority, and chitosan is no doubt a kind of prominent biopolymer material with versatility for applications in disease treatments. For the rational construction of chitosan-related nano-biodevices, it is necessary to pay full attention to the material itself, where it is the material properties that guide the design criteria. Additionally, the well-matched preparation methods between material carriers and therapeutic agents draw much attention to the final construction since they seem to be more realistic. In detail, we present a comprehensive overview of recent advances in rational construction of chitosan-related nano-therapies with respect to material-property-oriented design criteria and preparation methods in the current review article, based on the foundation of continuous investigations. Based on this review, a portion of the various uses of chitosan-related nano-biodevices for biomedical applications are specifically discussed. Here, the strategies demonstrate the versatility of chitosan well, and the concept of being simple yet effective is well illustrated and vividly communicated. Altogether, a fresh concept concerning multi-functional chitosan and its derivative-related drug delivery systems for nano-therapy is proposed in this review, and this could be applied to other materials, which seems to be a novel angle.
在与疾病的斗争中,由于具有多种优势,纳米疗法的发展无疑是一个巨大的进步,而壳聚糖无疑是一种在疾病治疗应用中具有多功能性的杰出生物聚合物材料。为了合理构建与壳聚糖相关的纳米生物器件,有必要充分关注材料本身,因为正是材料特性指导着设计标准。此外,材料载体与治疗剂之间匹配良好的制备方法对最终构建也备受关注,因为它们似乎更具现实意义。详细地说,在本综述文章中,基于持续研究的基础,我们针对基于材料特性的设计标准和制备方法,对与壳聚糖相关的纳米疗法的合理构建方面的最新进展进行了全面概述。基于此综述,特别讨论了与壳聚糖相关的纳米生物器件在生物医学应用中的部分不同用途。在这里,这些策略很好地展示了壳聚糖的多功能性,并且清晰地阐述并生动地传达了简单而有效的概念。总之,本综述提出了一个关于用于纳米疗法的多功能壳聚糖及其衍生物相关药物递送系统的全新概念,这可能适用于其他材料,这似乎是一个新颖的角度。