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Hetero-Coated Magnetic Microcarriers for Point-Of-Care Diagnostics

机译:用于现场诊断的异质涂层磁性微载体

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SU8 microcarriers containing magnetic thin film (40 nm cobalt) elements were fabricated by photolithography and thermal evaporation, and included a gold coating on the base. The microcarriers, which can be encoded with a magnetic barcode for later identification in a multiplexed suspension assay, now possess two distinct surfaces for further chemical derivitization. This allows us to attach different bio-molecules to each side, which we suggest, could be used to add a positive control to typical hybridization assays as a test for binding conditions, thus giving confidence against false negative events. As a proof-of-concept we developed a chemical pathway to attach $5^{prime},6^{prime}$-tetramethyl rhodamine onto the gold coated side via the growth of a mixed self-assembled monolayer (characterized by Electrochemical Quartz Crystal Microbalance measurements), while also attaching fluorescein to the SU8 side after first adding a homo-bifunctional spacer to the native surface epoxide groups. Fluorescence microscopy was used to verify the success of this strategy and the feasibility of using PicoGreen as a post-hybridization reporter was studied.
机译:包含磁性薄膜(40 nm钴)元素的SU8微载体通过光刻和热蒸发法制备,并在基底上包括金涂层。可以用磁性条形码编码以在以后的多重悬浮测定中鉴定的微载体,现在具有两个不同的表面,可以进一步化学衍生。这使我们可以将不同的生物分子附着到每一侧,我们建议将其用于在典型的杂交实验中添加阳性对照,以测试结合条件,从而增强对假阴性事件的信心。作为概念验证,我们开发了一种化学途径来连接 $ 5 ^ {prime},6 ^ {prime} $ -四甲基若丹明通过混合自组装单层的生长(通过电化学石英晶体微天平测量而表征)到涂金面上,同时在首先将同双功能间隔基添加到天然表面环氧基上之后还将荧光素附着到SU8面上。荧光显微镜用于验证该策略的成功,并研究了使用PicoGreen作为杂交后报告基因的可行性。

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