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Biocompatibility of a-C:H film coating for synthetic vascular graft

机译:a-C:H薄膜涂层在人工血管移植中的生物相容性

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Amorphous hydrogenated carbon (a-C:H) films have many excellent properties such as biocompatibility, anti-corrosion, and chemical stability. Therefore, there are many reports on application of a-C:H film as surface modification technique for biomaterials. However, it is difficult to deposit a-C:H film on complex structures such as artificial heart blood pump and synthetic vascular grafts. In our previous work, we have developed an electrode which is adapted to such irregular structures for plasma CVD technique. In this study, a-C:H film was deposited on a synthetic vascular graft inner-wall by r.f. plasma CVD technique with cylindrical electrode. The purpose of such coating is improvement of biocompatibility of the vascular graft. The biocompatibility of the a-C:H film was evaluated by cytocompatibility and plasma protein adhesion. For the a-C:H film deposition, cytocompatibility and protein adsorbent of the vascular grafts were improved for biological response under cell culture with mouth fibroblasts and plasma proteins (albumin, fibrinogen, and globulin), respectively. This study indicates that the a-C:H films coatings is expected to surface modification for medical appliances.
机译:非晶态氢化碳(a-C:H)膜具有许多出色的性能,例如生物相容性,抗腐蚀和化学稳定性。因此,有许多关于α-C:H膜作为生物材料表面改性技术的报道。但是,很难在复杂的结构上沉积a-C:H膜,例如人造心脏血液泵和人造血管。在我们以前的工作中,我们开发了一种电极,该电极适用于等离子CVD技术的这种不规则结构。在这项研究中,r.f。将a-C:H膜沉积在合成的血管移植物内壁上。圆柱电极的等离子CVD技术。这种涂层的目的是改善血管移植物的生物相容性。 a-C:H膜的生物相容性通过细胞相容性和血浆蛋白粘附性进行评估。对于a-C:H膜沉积,分别用口成纤维细胞和血浆蛋白(白蛋白,纤维蛋白原和球蛋白)在细胞培养下,改善了血管移植物的细胞相容性和蛋白质吸附剂的生物学响应。这项研究表明,a-C:H薄膜涂料有望用于医疗器械的表面改性。

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