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Wall thickness control in biotubes prepared using type-C mold

机译:使用Type-C模具制备生物管中的壁厚控制

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摘要

A type-C mold based on in-body tissue architecture was previously developed for preparing small-diameter biotube vascular grafts with a 2-mm diameter and approximately 1-mm wall thickness. In this study, the type-C mold was modified for preparing large-diameter biotubes with controlled wall thicknesses. Four types of molds were assembled by inserting silicone center rods (outer diameters 11, 13, 15, 17?mm) into stainless steel cages (inner diameter 19?mm) and surgically embedded in the abdominal subcutaneous pouches of Holstein cows. After 8–12?weeks, connective tissues occupied the rod–cage gap in the molds to form biotubes. The wall thickness of the biotubes obtained after removing the molds was approximately 1–3?mm, which corresponded to approximately 80% of each gap distance. The breaking strength almost linearly increased with the wall thickness of the biotubes. The strength of the biotubes with wall thickness over 1.5?mm was higher than that of beagle blood vessels. The thickest biotubes were as strong as bovine pericardium and can be used as an alternative trachea graft because of their adequate lumen-holding force.
机译:以前开发了一种基于体内组织架构的C模具,用于制备具有2mm直径和大约1毫米壁厚的小直径生物管血管移植物。在该研究中,改变了C型模具,用于制备具有受控壁厚的大直径生物管。通过将硅氧烷中心杆(外径11,13,15,17Ω·mm)插入不锈钢笼(内径19≤mm)并手术嵌入Holstein牛的腹部皮下袋中来组装四种模具。 8-12次?周后,连接组织占据模具中的杆笼间隙以形成生物管。除去模具后获得的生物管的壁厚约为1-3Ωmm,其对应于每个间隙距离的大约80%。断裂强度几乎线性地增加了生物管的壁厚。壁厚超过1.5Ωmm的生物管的强度高于比猎犬血管的强度。最厚的生物管与牛心包一样强,并且可以用作替代的气管移植物,因为它们足够的腔保持力。

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