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Manufacture of porous polymer nerve conduits by a novel low-pressure injection molding process.

机译:通过新颖的低压注塑工艺制造多孔聚合物神经导管。

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A method to fabricate porous, biodegradable conduits using a combined injection molding, thermally induced phase transition technique was developed which produced conduits with dimensionally toleranced, longitudinally aligned channels. The geometry of the channels was designed to approximate the architecture of peripheral nerves and to support the monolayer adherence of physiologically relevant numbers of Schwann cells. The channel configuration could be varied from a single 1.35 mm diameter channel up to 100 0.08 mm diameter channels. A conduit with 100 channels has approximately 12.5 times the lumenal surface area of a single channel conduit and supports the adherence of five times the number of Schwann cells in the native peripheral nerve. In this study, poly(DL-lactide-co-glycolide) (DL-PLGA) was dissolved in acetic acid and injected into a cold mold which induced solid-liquid phase separation and, ultimately, solidification of the polymer solution. The acetic acid was removed by sublimation and the resulting foam had a macrostructure of high anisotropy. Semi-permeable skins formed on the outer and lumen diameters of the conduit as a consequence of rapid quenching. Macropores were organized into bundles of channels, up to 20 microm wide, in the DL-PLGA matrix and represented remnants of acetic acid that crystallized during solidification.
机译:开发了一种使用组合注射成型,热诱导相变技术制造多孔,可生物降解的导管的方法,该方法生产的导管具有尺寸公差,纵向对齐的通道。通道的几何形状设计成近似于周围神经的结构,并支持生理学相关数量的雪旺氏细胞的单层粘附。通道配置可以从单个1.35 mm直径通道到100个0.08 mm直径通道变化。具有100个通道的导管的表面积约为单通道导管的12.5倍,并支持自然周围神经中5倍于雪旺细胞数量的粘附。在这项研究中,聚(DL-丙交酯-共-乙交酯)(DL-PLGA)溶解在乙酸中,然后注入冷模中,引起固液分离,最终导致聚合物溶液固化。通过升华除去乙酸,并且所得泡沫具有高各向异性的宏观结构。快速淬火的结果是在导管的外径和管腔直径上形成了半透皮。大孔在DL-PLGA基质中被组织成最大20微米宽的通道束,代表了在固化过程中结晶的残留的乙酸。

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