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Bioimprint Replication Of Single Cells On A Biochip

机译:生物芯片上单细胞的生物压印复制

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We are investigating the use of nanoscale imaging technologies that might help in the fundamental understanding of cell function and lead to early diagnosis of diseases at a single cell and molecular level. A new method has been developed that integrates nanoimprint lithography directly with biological materials to create replica cell impressions in robust storage medium to facilitate topographical analysis using Atomic Force Microscopy. Termed Bioimprint~(TM) , soft lithography techniques are used to transfer precise cell topography into polymeric composite for imaging in harsh probing or electron beam environments. By creating a permanent biological print that is captured in a specific moment of time, a recorded response of cellular events can be stored. The high resolution transfer of this process is illustrated by imaging membrane morphological structures consist with exocytosis, in pituitary cells. The integration of soft lithography and biological materials presents a novel method for the study and detection of biological systems at the nano scale. Applications of this technique to cancer cells has also been investigated.
机译:我们正在调查使用可能有助于对细胞功能的根本理解的纳米级成像技术,并导致单细胞和分子水平的早期诊断疾病。已经开发了一种新方法,其直接与生物材料直接集成了纳米压印光刻,以产生鲁棒存储介质中的复制细胞印象,以促进使用原子力显微镜的地形分析。被称为BioImprint〜(TM),软光刻技术用于将精确的细胞形貌转移到用于在苛刻的探测或电子束环境中成像的聚合物复合材料。通过创建在特定时刻捕获的永久生物印刷,可以存储蜂窝事件的记录响应。通过成像膜形态结构来说明该方法的高分辨率转移,在垂体细胞中与外尿胞症组成。软光刻和生物材料的整合提出了一种研究和检测纳米尺度的生物系统的新方法。还研究了该技术对癌细胞的应用。

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