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基于藻酸盐的生物复合材料及其潜在应用。

Alginate-Based Bio-Composites and Their Potential Applications.

作者信息

Zdiri Khmais, Cayla Aurélie, Elamri Adel, Erard Annaëlle, Salaun Fabien

机构信息

Laboratoire de Génie et Matériaux Textiles, École Nationale Supérieure des Arts et Industries Textiles, Université de Lille, 59000 Lille, France.

Laboratoire de Physique et Mécanique Textiles, École Nationale Supérieure d'Ingénieurs Sud-Alsace, Université de Haute Alsace, EA 4365, 68100 Mulhouse, France.

出版信息

J Funct Biomater. 2022 Aug 10;13(3):117. doi: 10.3390/jfb13030117.

Abstract

Over the last two decades, bio-polymer fibers have attracted attention for their uses in gene therapy, tissue engineering, wound-healing, and controlled drug delivery. The most commonly used bio-polymers are bio-sourced synthetic polymers such as poly (glycolic acid), poly (lactic acid), poly (e-caprolactone), copolymers of polyglycolide and poly (3-hydroxybutyrate), and natural polymers such as chitosan, soy protein, and alginate. Among all of the bio-polymer fibers, alginate is endowed with its ease of sol-gel transformation, remarkable ion exchange properties, and acid stability. Blending alginate fibers with a wide range of other materials has certainly opened many new opportunities for applications. This paper presents an overview on the modification of alginate fibers with nano-particles, adhesive peptides, and natural or synthetic polymers, in order to enhance their properties. The application of alginate fibers in several areas such as cosmetics, sensors, drug delivery, tissue engineering, and water treatment are investigated. The first section is a brief theoretical background regarding the definition, the source, and the structure of alginate. The second part deals with the physico-chemical, structural, and biological properties of alginate bio-polymers. The third part presents the spinning techniques and the effects of the process and solution parameters on the thermo-mechanical and physico-chemical properties of alginate fibers. Then, the fourth part presents the additives used as fillers in order to improve the properties of alginate fibers. Finally, the last section covers the practical applications of alginate composite fibers.

摘要

在过去二十年中,生物聚合物纤维因其在基因治疗、组织工程、伤口愈合和药物控释方面的应用而受到关注。最常用的生物聚合物是生物来源的合成聚合物,如聚乙醇酸、聚乳酸、聚己内酯、聚乙醇酸和聚(3-羟基丁酸酯)的共聚物,以及天然聚合物,如壳聚糖、大豆蛋白和藻酸盐。在所有生物聚合物纤维中,藻酸盐具有易于溶胶-凝胶转变、显著的离子交换性能和酸稳定性。将藻酸盐纤维与多种其他材料混合无疑为应用开辟了许多新机会。本文概述了用纳米颗粒、粘附肽以及天然或合成聚合物对藻酸盐纤维进行改性,以提高其性能。研究了藻酸盐纤维在化妆品、传感器、药物递送、组织工程和水处理等多个领域的应用。第一部分是关于藻酸盐的定义、来源和结构的简要理论背景。第二部分讨论了藻酸盐生物聚合物的物理化学、结构和生物学性质。第三部分介绍了纺丝技术以及工艺和溶液参数对藻酸盐纤维热机械和物理化学性质的影响。然后,第四部分介绍了用作填料以改善藻酸盐纤维性能的添加剂。最后,最后一部分涵盖了藻酸盐复合纤维的实际应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a3cd/9397003/68d755e2dffa/jfb-13-00117-g001.jpg

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