首页> 外文会议>MED-vol.16-1; American Society of Mechanical Engineers(ASME) International Mechanical Engineering Congress and Exposition; 20051105-11; Orlando,FL(US) >MICRO-PARTICLE FABRICATION FOR TISSUE ENGINEERING APPLICATIONS USING RAPID PROTOTYPING AND SOFT LITHOGRAPHY PRINCIPLES
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MICRO-PARTICLE FABRICATION FOR TISSUE ENGINEERING APPLICATIONS USING RAPID PROTOTYPING AND SOFT LITHOGRAPHY PRINCIPLES

机译:快速原型和软光刻原理在组织工程应用中的微颗粒制造

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The goal of this study was to develop an efficient and repeatable process for fabrication of micro-particles from multiple materials using rapid prototyping and soft lithography. Phase change three-dimensional printing was used to create masters for PDMS molds. A photocrosslinkable polymer was then delivered into these molds to fabricate geometrically complex three-dimensional micro-particles. This repeatable process has demonstrated the ability to generate micro-particles with greater than 95% repeatability with complete pattern transfer. This process was illustrated for three shapes based on the extrusion of two-dimensional shapes. These particles will allow for tailoring of the pore shapes within a porous scaffold utilized in tissue engineering applications. In addition, the different shapes may allow control of drug release by varying the surface to volume ratio, which could modulate drug delivery. While soft lithography is currently used with photolithography, its high precision is offset by high cost of production. The employment of rapid prototyping to a specific resolution offers a much less expensive alternative with increased throughput due to the speed of current rapid prototyping systems.
机译:这项研究的目的是开发一种有效且可重复的工艺,以使用快速原型制作和软光刻技术从多种材料中制造微粒。相变三维打印用于创建PDMS模具的母版。然后将可光交联的聚合物输送到这些模具中,以制造几何形状复杂的三维微粒。这种可重复的过程已证明具有在完全图案转移的情况下产生具有大于95%重复性的微粒的能力。基于二维形状的拉伸,针对三种形状说明了此过程。这些颗粒将允许在组织工程应用中使用的多孔支架内定制孔的形状。另外,不同的形状可以通过改变表面体积比来控制药物释放,这可以调节药物的输送。虽然软光刻当前与光刻一起使用,但是其高精度被高生产成本所抵消。由于当前快速原型制作系统的速度,采用快速原型制作到特定的分辨率提供了一种便宜得多的替代方案,并且吞吐量提高了。

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