高内涵分析

横河电机的高内涵分析系统凭借高质量的成像和高通量处理能力,加速了从生命现象解析到化合物发现与筛选的研究活动。
它们是进行高级分析任务的理想之选,包括球状体和类器官的3D活细胞成像。
这些高内涵显微镜,从易于使用的独立型号到完全集成的机器人自动化系统,均可定制,以满足不同需求和工作流程,从而实现更准确、更广泛的数据收集。

  • CV8000高内涵筛选系统

    CellVoyager CV8000是先进的高内涵筛选系统。改进的内置培养箱可以让客户分析长期的活细胞反应。凭借其可扩展性、4个摄像头、5个激光器和可选的内置移液器,该系统允许日益复杂的分析开发和高内涵筛选。

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配备强大分析软件的共聚焦成像仪

我们的高内涵分析 (HCA) 系统是从基础科学到药物发现筛选等一系列研究应用的理想解决方案。

高内涵分析(HCA)

高内涵分析是药物发现和开发过程中进行所谓表型筛选的主要方法。评估大量化合物非常耗时,因此,以较快扫描速度获取大量高分辨率细胞图像对于药物筛选至关重要。横河电机的高内涵分析成像仪在高性能水平上平衡了这些通常相互矛盾的需求。其核心技术——横河电机共聚焦扫描仪或共聚焦转盘单元(CSU)中的微透镜增强型双尼普科夫盘(Nipkow disk),使得在很短的采集时间内捕获高质量图像成为可能。
除了图像采集单元,准确控制、快速移动的自动化载物台也是我们成像系统的重要组成部分。单层固定细胞样本过去常用于药物筛选。然而,此类固定2D样本中的细胞环境与实际活体系统存在很大差异,这种差异常常导致实验结果与在真实生物体中观察到的现象之间存在显著差异。

如今,得益于细胞培养技术的发展,使用球状体、类器官等3D样本以及活细胞样本来模拟真实的细胞环境正变得越来越流行。横河电机的CSU在显微领域享有盛誉,不仅因其高图像质量和快速捕获速度,还因其对活细胞的友好性。我们基于CSU的高内涵共聚焦成像系统是使用精密的3D和活细胞检测系统以及2D固定样本进行药物筛选的理想解决方案。用户友好的高内涵分析软件CellPathfinder凭借其多功能性,有力地支持对各种表型变化和靶点反应的分析。它还拥有用于复杂样本分析的先进的机器学习和深度学习功能。所有这些技术都集成在横河电机的高内涵分析系统中!

 

传统方法 高内涵分析(HCA)
高通量筛选(HTS) 流式细胞仪(FCM) 显微镜

优点:

  • 高速处理大量样品

缺点:

  • 仅计算平均值

优点:

  • 获取单个细胞的数值数据

缺点:

  • 必须去除贴壁细胞

优点:

  • 细胞的详细观察

缺点:

  • 速度慢

优点:

  • 快速分析大量样本
  • 细胞活动的详细观察
  • 活细胞的时序分析
  • 获取单个细胞的数值数据
  • 自动高速成像和分析
  • 可直接观察贴壁细胞

参考

概述:

Cell stage categorized using FucciTime lapse imaging of Fucci-added Hela cells was conducted over 48 hrs at 1 hr intervals. Gating was performed based on the mean intensities of 488 nm and 561 nm for each cell. They were categorized into four stages, and the cell count for each was calculated.

行业:
概述:

The CV8000 nuclear translocation analysis software enables the analysis of changes in the localization of signal molecules that transfer between cytoplasm and nuclei, such as proteins. The following is an example of the translocation analysis of NFκB, a transcription factor.

概述:

The CQ1 confocal image acquisition mechanism with the distinctive CSU® unit has a function to sequentially acquire fine cell images along the Z-axis and capture information from the entire thickness of
cells which include heterogenic populations of various cell cycle stages. In addition, saved digital images can be useful for precise observation and analysis of spatial distribution of intracellular molecules.
The CQ1 capability to seamlessly analyze images and obtain data for things such as cell population statistics to individual cell morphology will provide benefits for both basic research and drug discovery
targetingM-cell cycle phase.

概述:
  • Colony Formation
  • Scratch Wound
  • Cytotoxicity
  • Neurite Outgrowth
  • Co-culture Analysis
  • Cell Tracking
行业:
概述:

Cell clusters are directly measured with high-throughput 3D imaging Confocal Quantitative Image Cytometer

概述:

List of Selected Publications : CQ1

概述:

List of Selected Publications : CV8000, CV7000, CV6000

概述:

In this tutorial, we will learn how to perform cell tracking with CellPathfinder through the analysis of test images.

概述:

In this tutorial, using images of zebrafish whose blood vessels are labeled with EGFP, tiling of the images and recognition of blood vessels within an arbitrary region will be explained.

概述:

In this tutorial, a method for analyzing ramified structure, using CellPathfinder, for the analysis of the vascular endothelial cell angiogenesis function will be explained.

概述:

In this tutorial, we will learn how to perform time-lapse analysis of objects with little movement using CellPathfinder, through calcium imaging of iPS cell-derived cardiomyocytes.

概述:

In this tutorial, we will observe the change in number and length of neurites due to nerve growth factor (NGF) stimulation in PC12 cells.

概述:

In this tutorial, image analysis of collapsing stress fibers will be performed, and concentration-dependence curves will be drawn for quantitative evaluation.

概述:

In this tutorial, we will identify the cell cycles G1-phase, G2/M-phase, etc. using the intranuclear DNA content.

概述:

In this tutorial, intranuclear and intracytoplasmic NFκB will be measured and their ratios calculated, and a dose-response curve will be created.

概述:

In this tutorial, spheroid diameter and cell (nuclei) count within the spheroid will be analyzed.

概述:

In this tutorial, a method for analyzing ramified structure, using CellPathfinder, for the analysis of the vascular endothelial cell angiogenesis function will be explained.

视频

产品概述
概述:

The CV8000 features a cell incubator with an improved airtight design that facilitates the observation of cell behavior over long periods of time. In addition, the CV8000 comes with CellPathfinder, a new program that can analyze images of unlabeled cells and 3D images of samples. With these features, the CV8000 improves the efficiency of drug discovery research and biomedical research on leading-edge subjects such as iPS and ES cells.

概述:

YOKOGAWA will contribute to technology evolution particularly in measurement and analytical tools to help build a world where researchers will increasingly focus on insightful interpretation of data, and advancing Life Science to benefit humanity.

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