Lu Xuechu, Jiao Haixin, Shi Yifei, Li Yan, Zhang Hongxing, Fu Yinyi, Guo Jiaqi, Wang Qianqian, Liu Xiang, Zhou Mengbo, Ullah Muhammad Wajid, Sun Jianzhong, Liu Jun
Biofuels Institute, School of the Environment and Safety Engineering, Jiangsu University, 301 Xuefu Road, Zhenjiang 212013, China.
Jiangsu Co-Innovation Center for Efficient Processing and Utilization of Forest Resources, International Innovation Center for Forest Chemicals and Materials, Nanjing Forestry University, Nanjing 210037, China.
Carbohydr Polym. 2023 May 15;308:120669. doi: 10.1016/j.carbpol.2023.120669. Epub 2023 Feb 4.
The anisotropic features play indispensable roles in regulating various life activities in different organisms. Increasing efforts have been made to learn and mimic various tissues' intrinsic anisotropic structure or functionality for broad applications in different areas, especially in biomedicine and pharmacy. This paper discusses the strategies for fabricating biomaterials using biopolymers for biomedical applications with the case study analysis. Biopolymers, including different polysaccharides, proteins, and their derivates, that have been confirmed with sound biocompatibility for different biomedical applications are summarized, with a special focus on nanocellulose. Advanced analytical techniques for understanding and characterizing the biopolymer-based anisotropic structures for various biomedical applications are also summarized. Challenges still exist in precisely constructing biopolymers-based biomaterials with anisotropic structures from molecular to macroscopic levels and fitting the dynamic processes in native tissue. It is foreseeable that with the advancement of biopolymers' molecular functionalization, biopolymer building block orientation manipulation strategies, and structural characterization techniques, developing anisotropic biopolymer-based biomaterials for different biomedical applications would significantly contribute to a friendly disease-curing and healthcare experience.
各向异性特征在调节不同生物体的各种生命活动中发挥着不可或缺的作用。人们已付出越来越多的努力来了解和模仿各种组织的固有各向异性结构或功能,以便在不同领域广泛应用,尤其是在生物医学和制药领域。本文通过案例分析讨论了使用生物聚合物制造用于生物医学应用的生物材料的策略。总结了生物聚合物,包括不同的多糖、蛋白质及其衍生物,这些生物聚合物已被证实对不同的生物医学应用具有良好的生物相容性,特别关注了纳米纤维素。还总结了用于理解和表征各种生物医学应用中基于生物聚合物的各向异性结构的先进分析技术。在从分子到宏观层面精确构建具有各向异性结构的基于生物聚合物的生物材料以及适应天然组织中的动态过程方面,仍然存在挑战。可以预见,随着生物聚合物分子功能化、生物聚合物构建块取向操纵策略和结构表征技术的进步,开发用于不同生物医学应用的基于各向异性生物聚合物的生物材料将显著有助于提供友好的疾病治疗和医疗保健体验。