Wróbel Paulina, Zwolińska Julia, Szopa Daniel, Witek-Krowiak Anna
Department of Engineering and Technology of Chemical Processes, Faculty of Chemistry, Wroclaw University of Science and Technology, Gdanska 7/9, 50-344 Wroclaw, Poland.
Polymers (Basel). 2025 Aug 20;17(16):2255. doi: 10.3390/polym17162255.
Electrospun alginate nanofibers are emerging as versatile materials for biomedical, environmental, and packaging applications due to their biocompatibility, biodegradability, and functional tunability. However, the direct electrospinning of alginate remains a significant challenge, mainly due to its polyelectrolytic nature, rigid chain structure, and limited chain entanglement. This review provides a comprehensive analysis of recent strategies developed to overcome these limitations, including polymer blending, chemical modification, the addition of surfactants, multi-fluid techniques, and process optimization. We systematically discuss the integration of nanofibers with functional agents such as microorganisms, bioactive compounds, plant extracts, and nanoparticles, highlighting their potential in wound healing, active packaging, bioremediation, and controlled release systems. This review also examines the scalability of alginate electrospinning, summarizing recent patents, industrial solutions, and challenges related to the standardization of the process. Key knowledge gaps are identified, including the need for long-term stability studies, structure-function correlations, green processing approaches, and expansion into novel application domains beyond healthcare. Addressing these research directions will be crucial to unlocking the full potential of alginate nanofibers as sustainable, high-performance materials for industrial use.
由于具有生物相容性、生物可降解性和功能可调性,静电纺丝海藻酸盐纳米纤维正成为用于生物医学、环境和包装应用的多功能材料。然而,海藻酸盐的直接静电纺丝仍然是一个重大挑战,主要是由于其聚电解质性质、刚性链结构和有限的链缠结。本文综述对为克服这些限制而开发的最新策略进行了全面分析,包括聚合物共混、化学改性、添加表面活性剂、多流体技术和工艺优化。我们系统地讨论了纳米纤维与微生物、生物活性化合物、植物提取物和纳米颗粒等功能剂的整合,强调了它们在伤口愈合、活性包装、生物修复和控释系统中的潜力。本文综述还考察了海藻酸盐静电纺丝的可扩展性,总结了近期的专利、工业解决方案以及与该工艺标准化相关的挑战。确定了关键的知识空白,包括需要进行长期稳定性研究、结构-功能相关性研究、绿色加工方法以及拓展到医疗保健以外的新应用领域。解决这些研究方向对于释放海藻酸盐纳米纤维作为可持续、高性能工业用材料的全部潜力至关重要。