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采用新型车轮纺丝技术制备高强度、高拉伸率的海藻酸盐纤维,用于编织具有弹性和生物相容性的伤口护理材料。

High strength and strain alginate fibers by a novel wheel spinning technique for knitting stretchable and biocompatible wound-care materials.

机构信息

Department of Materials, The University of Manchester, Manchester M13 9PL, UK.

Division of Evolution and Genomic Sciences, The University of Manchester, Manchester M13 9PL, UK.

出版信息

Mater Sci Eng C Mater Biol Appl. 2021 Aug;127:112204. doi: 10.1016/j.msec.2021.112204. Epub 2021 May 25.

DOI:10.1016/j.msec.2021.112204
PMID:34225856
Abstract

Alginate fibrous materials have been applied as wound dressing to enhance wound healing due to its nontoxic, biodegradable, and hemostatic nature. Conventional nonwoven fabrication tactics, however, showed weakness in inflammation, degradation stability and mechanical properties. Herein, the wet-spun alginate fibers were prepared by a novel wheel spinning technique, then knitted into wound dressing. Benefiting from optimized wet spinning parameters and the agglomeration of alginate multimers, the fibers were endowed with elevated mechanical performances and biodegradability, which allowed for the feasibility of knitting wound-care materials. Using the new wheel spinning technique, high strength alginate fibers with 173 MPa were produced with breaking strain up to 18% and toughness of 16.16 MJm. Meanwhile, alginate fibers with high breaking strain reaching 35% were produced with tensile strength of 135 MPa and toughness of 37.47 MJm. The overall mechanical performances of these alginate fibers with high breaking strain are significantly higher (up to 2 times) than those published in the literature in term of toughness. In vitro degradation evaluation revealed that this wet spun fibrous dressing had good aqueous absorbency (50%) and sustained biodegradation properties. Furthermore, the consequent cell viability study also proved that this alginate knitted fabric is biocompatible for being applied as wound dressing.

摘要

海藻酸盐纤维材料因其无毒、可生物降解和止血的特性而被用作伤口敷料来促进伤口愈合。然而,传统的非织造布制造策略在炎症、降解稳定性和机械性能方面表现出弱点。在此,通过一种新颖的车轮纺丝技术制备了海藻酸盐纤维,然后将其编织成伤口敷料。得益于优化的湿法纺丝参数和海藻酸盐多聚体的团聚,纤维具有更高的机械性能和可生物降解性,这使得编织伤口护理材料成为可能。使用新的车轮纺丝技术,可以生产出强度为 173 MPa 的高强度海藻酸盐纤维,其断裂伸长率高达 18%,韧性为 16.16 MJm。同时,还可以生产出具有 35%断裂伸长率的海藻酸盐纤维,其拉伸强度为 135 MPa,韧性为 37.47 MJm。这些高强度海藻酸盐纤维的整体机械性能(尤其是韧性)明显高于文献中报道的同类纤维。体外降解评估表明,这种湿法纺制的纤维敷料具有良好的吸水性(50%)和持续的生物降解性能。此外,随后的细胞活力研究也证明了这种海藻酸盐编织物作为伤口敷料是具有生物相容性的。

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