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Development and evaluation of elastomeric hollow fiber membranes as small diameter vascular graft substitutes

机译:弹性体中空纤维膜作为小直径血管移植物替代品的开发和评估

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摘要

Engineering of small diameter (<6 mm) vascular grafts (SDVGs) for clinical use remains a significant challenge. Here, elastomeric polyester urethane (PEU)-based hollow fiber membranes (HFMs) are presented as an SDVG candidate to target the limitations of current technologies and improve tissue engineering designs. HFMs are fabricated by a simple phase inversion method. HFM dimensions are tailored through adjustments to fabrication parameters. The walls of HFMs are highly porous. The HFMs are very elastic with moduli ranging from 1-4 MPa, strengths from 1-5 MPa, and max strains from 300-500%. Permeability of the HFMs varies from 0.5-3.5 × 10~(-6) cm/s, while burst pressure varies from 25 to 35 psi. The suture retention forces of HFMs are in the range of 0.8 to 1.2 N. These properties match those of blood vessels. A slow degradation profile is observed for all HFMs, with 71 to 78% of the original mass remaining after 8 weeks, providing a suitable profile for potential cellular incorporation and tissue replacement. Both human endothelial cells and human mesenchymal stem cells proliferate well in the presence of HFMs up to 7 days. These results demonstrate a promising customizable PEU HFMs for small diameter vascular repair and tissue engineering applications.
机译:工程设计用于临床的小直径(<6 mm)血管移植物(SDVG)仍然是一项重大挑战。在这里,基于弹性聚酯氨酯(PEU)的中空纤维膜(HFM)作为SDVG候选产品被提出,旨在解决当前技术的局限性并改善组织工程设计。通过简单的相位反转方法制造HFM。通过调整制造参数来调整HFM尺寸。 HFM的壁是高度多孔的。 HFM具有很高的弹性,模量范围为1-4 MPa,强度为1-5 MPa,最大应变为300-500%。 HFM的渗透率范围为0.5-3.5×10〜(-6)cm / s,而破裂压力范围为25至35 psi。 HFM的缝合线保持力在0.8到1.2 N的范围内。这些特性与血管的特性相匹配。对于所有HFM观察到缓慢的降解过程,8周后仍保留原始质量的71%至78%,为潜在的细胞整合和组织置换提供了合适的过程。在存在HFM的情况下,人内皮细胞和人间充质干细胞均可在长达7天的时间内良好增殖。这些结果证明了用于小直径血管修复和组织工程应用的有前途的可定制PEU HFM。

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