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Bioactive and mechanically stable hydroxyapatite patterning for rapid endothelialization of artificial vascular graft

机译:具有生物活性和机械稳定性的羟基磷灰石图案,可用于人工血管移植物的快速内皮化

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摘要

Polymeric vascular grafts have been widely used in the vascular regeneration field because of their ease of application. However, synthetic polymer grafts have the severe problem of low biocompatibility, which may cause delayed endothelialization and hyperplasia. In this study, we fabricated a linear hydroxyapatite (HA) pattern on a silicon wafer and then transferred the pattern to a poly(L-lactic)-acid (PLLA) film for use as a tubular vascular graft. The HA pattern with its characteristic needle-like shape was successfully embedded into the PLLA. The HA-patterned PLLA film exhibited superior mechanical stability compared with that of a HA-coated PLLA film under bending, elongation, and in vitro circulation conditions, suggesting its suitability for use as a tubular vascular graft. In addition, the HA pattern guided rapid endothelialization by promoting proliferation of endothelial cells and their migration along the pattern. The hemocompatibility of the HA-patterned PLLA was also confirmed, with substantially fewer platelets adhered on its surface. Overall, in addition to good mechanical stability, the HA-patterned PLLA exhibited enhanced biocompatibility and hemocompatibility compared with pure PLLA.
机译:高分子血管移植物因其易于使用而被广泛用于血管再生领域。然而,合成聚合物移植物具有严重的低生物相容性问题,这可能引起延迟的内皮化和增生。在这项研究中,我们在硅片上制作了线性羟基磷灰石(HA)图案,然后将其转移到聚(L-乳酸)-酸(PLLA)膜上,用作管状血管移植物。具有特征性针状形状的HA模式已成功嵌入PLLA中。与HA涂层的PLLA膜相比,在弯曲,伸长和体外循环条件下,与HA涂层的PLLA膜相比,具有HA图案的膜具有更好的机械稳定性,这表明它适合用作管状血管移植物。此外,HA模式通过促进内皮细胞的增殖及其沿模式的迁移来指导快速内皮化。还证实了HA模式的PLLA的血液相容性,其表面粘附的血小板明显减少。总体而言,除具有良好的机械稳定性外,与纯PLLA相比,具有HA模式的PLLA还具有增强的生物相容性和血液相容性。

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