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Slump Molding of Microchannel Arrays in Soda-Lime Glass for Bioanalytical Device Development

机译:用于生物分析设备开发的钠钙玻璃中微通道阵列的微通道阵列的坍落度

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A slump molding process was developed to place microchannel geometries in a soda-lime glass substrate for a lab-on-chip bioanalytical device. The process was developed to overcome the biological and chemical reactivity associated with current polymer lab-on-a-chip substrates, and as an alternative to using more expensive glass material. A high speed micro mill and UV laser micromachining center were used to fabricate the negative geometries in the graphite mold material that was used. The slumping process of the soda-lime glass was done using a glass kiln. Microchannel dimensions were in the mesa scale range of 50 μm width × 10 μm depth. The heating schedule for slump molding of the soda-lime glass to take its final shape to these dimensions was determined and documented. The functionality of the slumping process and resultant soda-lime glass device was validated through murine nerve tissue experiments conducted through the bioanalytical device that was developed. The research represented a novel use of slump molding, a process traditionally known for producing artistic works for: (a) embossing engineered microchannels and (b) reliably processing a soda-lime glass substrate, a material known to be difficult to work with due to its poor physical properties.
机译:开发了一种坍落的成型过程,以将微通道几何形状放置在钠钙玻璃基板中,用于芯片上的生物分析装置。开发该方法以克服与电流聚合物实验室衬里基底相关的生物和化学反应性,以及使用更昂贵的玻璃材料的替代方案。高速微型轧机和UV激光微机械中心用于制造所用石墨模具材料中的负几何形状。使用玻璃窑完成钠钙玻璃的坍塌过程。微通道尺寸在MESA尺度范围为50μm宽度×10μm深度。确定并记录了钠钙玻璃的坍落度成型的加热时间表,以将其最终形状置于这些尺寸。通过通过开发的生物分析装置进行的小鼠神经组织实验验证了坍塌过程和所得到的钠钙玻璃装置的功能。该研究代表了一种新颖的使用坍落度模制,传统上已知用于生产艺术作品的过程:(a)压花工程微通道和(b)可靠地加工苏打水玻璃基板,该材料已知难以通过它的物理性质差。

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