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首页> 外文期刊>BMC Clinical Pathology >A mill based instrument and software system for dissecting slide-mounted tissue that provides digital guidance and documentation
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A mill based instrument and software system for dissecting slide-mounted tissue that provides digital guidance and documentation

机译:基于解剖的仪器和软件系统,用于解剖载玻片,提供数字化指导和文档

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摘要

Background Dissection of specific Areas Of Interest (AOIs) of slide-mounted tumor samples is often used to enrich for cancer cells in order to generate better signal to noise ratios in subsequent biochemical characterization. Most clinical laboratories utilize manual dissection for practical reasons and to avoid the expense and difficulties of laser microdissection systems. Unfortunately, manual methods often lack resolution and process documentation. The goal of this project was to design a dissection system for slide-mounted tissue with better precision than manual methods that also provides digital image guidance and electronic process documentation. Methods An instrument that is essentially a micro tissue mill was developed. It employs a specialized disposable mill bit that simultaneously dispenses liquid, cuts tissue from the slide surface, and aspirates the liquid along with the displaced tissue fragments. A software package was also developed that is capable of transferring digitally annotated AOIs between images of serially cut tissue sections to guide dissection and generate an electronic record of the process. Results The performance of this “meso” dissection system was tested using post dissection visual examination for resolution and accuracy, fluorescence based DNA quantitation for recovery efficiency, and dissection of closely situated mouse-human tissue sections followed by PCR amplification for purity determination. The minimum resolution is a dissected circle smaller than 200 microns in diameter, edge dissection accuracy is tighter than 100 microns, recovery efficiency appears greater than 95%, and recovery purity is greater than 99% relative to a different tissue located 100 microns from the dissection boundary. The system can dissect from both paraffinized and deparaffinized FFPE tissue sections that are mounted on plain glass slides, and it is compatible with DNA, RNA, and protein isolation. Conclusions The mesodissection system is an effective alternative to manual dissection methods and is applicable for biomarker analysis of anatomical pathology samples, where enrichment of AOIs from the tissue section is helpful, but pure cell populations are not required.
机译:载玻片固定的肿瘤样品的特定感兴趣区域(AOI)的背景解剖通常用于富集癌细胞,以便在随后的生化表征中产生更好的信噪比。出于实际原因,大多数临床实验室都采用手动解剖,以避免激光显微解剖系统的费用和困难。不幸的是,手动方法通常缺乏解决方案和过程文档。该项目的目的是设计一种用于幻灯片安装式组织的解剖系统,其精度要比手动方法更高,该手动系统还提供数字图像指导和电子过程文档。方法开发了一种本质上是微型组织磨的仪器。它采用了专用的一次性铣刀,可同时分配液体,从滑动表面切下组织,并与移位的组织碎片一起抽吸液体。还开发了一个软件包,该软件包能够在连续切割的组织切片的图像之间传输数字注释的AOI,以指导解剖并生成过程的电子记录。结果使用解剖后的目测检查分辨率和准确性,基于荧光的DNA定量以提高恢复效率,解剖位置紧密的小鼠-人类组织切片并进行PCR扩增以测定纯度,测试了这种“中观”解剖系统的性能。最小分辨率是直径小于200微米的解剖圆,边缘解剖的精度比100微米更严格,相对于距离解剖100微米的不同组织,恢复效率似乎大于95%,恢复纯度大于99%。边界。该系统可以从固定在普通玻璃载玻片上的石蜡和脱石蜡FFPE组织切片中进行解剖,并且与DNA,RNA和蛋白质分离兼容。结论中层解剖系统是手动解剖方法的有效替代方法,适用于解剖病理学样品的生物标志物分析,从组织切片中富集AOI很有帮助,但不需要纯细胞群。

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