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用于韧带假体的聚酯纤维织物的上浆剂对其降解、功能化和长期储存的影响。

Influence of spin finish on degradation, functionalization and long-term storage of polyethylene terephthalate fabrics dedicated to ligament prostheses.

机构信息

Chemistry, Structures and Properties of Biomaterials and Therapeutic Agents Laboratory, LBPS-CSPBAT, UMR CNRS 7244, Université Sorbonne Paris Nord, Villetaneuse, France.

Department of Biomedical Engineering, and Department of Pharmaceutics and Pharmaceutical Chemistry, University of Utah, Salt Lake City, UT, USA.

出版信息

Sci Rep. 2021 Feb 19;11(1):4258. doi: 10.1038/s41598-021-83572-8.

Abstract

Polyethylene terephthalate (PET) fibers and fabrics are widely used for medical device applications such as vascular and anterior cruciate ligament prostheses. Several years ago, we began functionalizing PET fabrics using anionic polymers to enhance their biocompatibility, cell adhesion, proliferation and functional performance as PET ligament prostheses. Polymer functionalization followed a grafting-from process from virgin PET surfaces subject to spin-finish oil additive removal under Soxhlet extraction to remove residual fiber manufacturing oil. Nevertheless, with increasing time from manufacture, PET fabrics stored without a spin finish removal step exhibited degradation of spin finish oil, leading to (1) incomplete surface cleaning, and (2) PET surface degradation. Moreover, oxidizing agents present in the residual degraded oil prevented reliable functionalization of the prosthesis fibers in these PET fabrics. This study compares effects of PET fabric/spin finish oil storage on PET fabric anionic polymer functionalization across two PET fabric ligament storage groups: (1) 2- and 10- year old ligaments, and (2) 26-year old ligaments. Strong interactions between degraded spin finish oil and PET fiber surfaces after long storage times were demonstrated via extraction yield; oil chemistry changed assessed by spectral analysis. Polymer grafting/functionalization efficiency on stored PET fabrics was correlated using atomic force microscopy, including fiber surface roughness and relationships between grafting degree and surface Young's modulus. New PET fabric Young's modulus significantly decreased by anionic polymer functionalization (to 96%, grafting degree 1.6 µmol/g) and to reduced modulus and efficiency (29%) for 10 years storage fabric (grafting degree ~ 1 µmol/g). As fiber spin finish is mandatory in biomedically applicable fiber fabrication, assessing effects of spin finish oil on commercial polymer fabrics after longer storage under various conditions (UV light, temperature) is necessary to understand possible impacts on fiber degradation and surface functionalization.

摘要

聚对苯二甲酸乙二醇酯(PET)纤维和织物广泛用于医疗器械应用,如血管和前交叉韧带假体。几年前,我们开始使用阴离子聚合物对 PET 织物进行功能化,以提高其生物相容性、细胞黏附性、增殖性和作为 PET 韧带假体的功能性能。聚合物功能化采用从原始 PET 表面接枝的方法,通过索氏提取去除旋转完成油添加剂,以去除残留的纤维制造油。然而,随着制造时间的增加,没有进行旋转完成油去除步骤的 PET 织物会降解旋转完成油,导致 (1) 表面清洁不彻底,以及 (2) PET 表面降解。此外,残留降解油中的氧化剂阻止了这些 PET 织物中假体纤维的可靠功能化。本研究比较了 PET 织物/旋转完成油储存对两种 PET 织物韧带储存组的 PET 织物阴离子聚合物功能化的影响:(1) 2 年和 10 年的韧带,以及 (2) 26 年的韧带。通过萃取产率证明了长时间储存后降解旋转完成油与 PET 纤维表面之间的强烈相互作用;通过光谱分析评估油化学变化。通过原子力显微镜,包括纤维表面粗糙度和接枝度与表面杨氏模量之间的关系,对储存 PET 织物上的聚合物接枝/功能化效率进行了相关研究。新的 PET 织物杨氏模量由于阴离子聚合物功能化而显著降低(接枝度为 96%,接枝度为 1.6 µmol/g),对于储存 10 年的织物,降低了模量和效率(29%)(接枝度~1 µmol/g)。由于纤维旋转完成是生物医学应用纤维制造中的强制性要求,因此需要评估旋转完成油在各种条件(UV 光、温度)下对商业聚合物织物的影响,以了解对纤维降解和表面功能化的可能影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3ec3/7895958/fb9e18b4bf54/41598_2021_83572_Fig1_HTML.jpg

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