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纤维状生物材料:纺织拓扑结构对外来异物反应的影响。

Fibrous biomaterials: Effect of textile topography on foreign body reaction.

机构信息

Université de Haute Alsace, Laboratoire de Physique et Mécanique Textiles (LPMT), Mulhouse, France.

Institut de Recherche en Hématologie et Transplantation (IRHT), Mulhouse, France.

出版信息

J Biomed Mater Res B Appl Biomater. 2021 Oct;109(10):1512-1524. doi: 10.1002/jbm.b.34810. Epub 2021 Feb 1.

Abstract

Foreign Body Reaction (FBR) is a critical issue to be addressed when polyethylene terephthalate (PET) textile implants are considered in the medical field to treat pathologies involving hernia repair, revascularization strategies in arterial disease, and aneurysm or heart valve replacement. The natural porosity of textile materials tends to induce exaggerated tissue ingrowth which may prevent the implants from remaining flexible. The purpose of this study is to assess the influence of the textile topography of various woven substrates on the wetting properties of these substrates and on their in vitro interaction with mesenchymal stem cells (MSC) at 24 and 72 hr. The tests were performed both at yarn and fabric level under forced wetting and ingrowth conditions in order to replicate the mechanisms going on in vivo under blood pressure. Results demonstrate that cell proliferation is influenced by the textile wetting properties, which can be tuned at yarn and fabric level. In particular, it is shown that a satin weave obtained from porous spun yarn limits cell proliferation due to the high porosity of the yarn and the limited saturation index of the weave. Yarn and fabric saturation seems to play a predominant role in cell proliferation on textile substrates.

摘要

异物反应(FBR)是在医学领域中考虑使用聚对苯二甲酸乙二醇酯(PET)纺织植入物来治疗涉及疝修补、动脉疾病血运重建策略以及动脉瘤或心脏瓣膜置换等疾病时需要解决的关键问题。纺织材料的天然多孔性倾向于引起过度的组织内生长,这可能会阻止植入物保持柔韧性。本研究的目的是评估各种机织基材的纺织拓扑结构对这些基材的润湿性以及它们在体外与间充质干细胞(MSC)在 24 小时和 72 小时的相互作用的影响。在强制润湿和内生长条件下,在纱线和织物两个层面进行了测试,以模拟体内在血压下发生的机制。结果表明,细胞增殖受纺织润湿性能的影响,而这些性能可以在纱线和织物层面进行调整。具体而言,结果表明,由多孔纺丝纱线制成的缎纹织物由于纱线的高多孔性和织物的有限饱和指数而限制了细胞增殖。纱线和织物的饱和度似乎在纺织基底上的细胞增殖中起着主导作用。

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