原子力显微镜

细胞融合300

自动,定量的单细胞和组织力学

强调

CellHesion® 300

自动化Cellhesion®300是测量具有单分子灵敏度的细胞细胞,细胞 - 组织和细胞基底相互作用的理想工具。它可以快速,轻松地测量活生物系统的结构,形态和纳米力学特性,从而对它们在各种病理疾病中所起的作用产生关键见解。这种创新的系统为生物物理学,生物化学,植入物研究,伤口愈合,发育生物学,干细胞研究,感染生物学和免疫反应研究创造了新的可能性。

更高的吞吐量
Improved Productivity
Automated processes and increased sample size deliver the statistical significance necessary in biomedical and pre-clinical research.
Biomechanics
智能映射功能
Fast and easy selection of multiple regions of interest over large sample areas. Flexible, user-defined 2D shaped force maps.
无标签测量
Tissue Biopsies
Multiparametric, nanomechanical characterization of living samples in near-physiological conditions. Ideal for multi-layered cell structures and soft, highly topographic tissue samples.

特征

特征

Understanding Biomechanics Made Easy

细胞融合300provides reproducible, quantitative data of unprecedented quality. Its high degree of automation increases throughput and delivers the productivity, performance, and statistical significance required for biomedical and clinical research environments. Important parameters, such as maximum adhesion force, individual unbinding events, and tether characteristics are automatically determined from each dataset by innovative software solutions.

Only CellHesion 300 delivers:

  • Maximized throughput for higher productivity by automating measurements
  • 在近生物生理条件下,活样品的相关和无标签的多参数测量
  • Fast and simple selection of regions of interest over large sample areas, ideal for tissue biopsies
  • 具有视觉支持的系统工作流程

左:带有单个3T3成纤维细胞(绿色,FDA染色)的探测器,该探针连接在基板或靶细胞上的细胞粘附测量。右:在单细胞力光谱(SCFS)实验中,单个活细胞在生化上与探针结合(例如,通过功能化)。将细胞与结合靶标接触,并施加到细胞的定义力(1)。在用户定义的结合周期后,通过缩回探针(2)将单元格与目标分开。通过定量探针挠度来测量对分离的抗性。
Violin plots showing the distribution of Detachment Energy (W), Force (F), and Distance (D), determined by Single Cell Force Spectroscopy detachment measurements between a single 3T3 mouse fibroblast and a polyacrylamide hydrogel (50kPa) with different coatings. Sample courtesy of Dr. Stephanie Wedepohl, Freie Universität Berlin, Germany.

"Automatic mechanical screening of highly topographic samples with the CellHesion 300 is of great advantage for tissue characterization in the clinical context."


Prof. Dr. Ansgar Petersen
BIH, Center for Regenerative Therapies
德国柏林Charité医科大学

Performing Automated Multi-Parametric Nanomechanical Mapping

最先进的软件,直观的用户指导和检测系统的自动对齐为自动操作和快速结果的关键。
新的Cell Hishion 300用户界面可快速简便地控制系统及其操作参数。

The software offers an easy-to-use scripting tool for user-defined experiments. Powerful batch data processing capabilities enable the analysis and quantification of large datasets at the touch of a button.


Discover the Possibilities

具有较大地形范围的样品的粘弹性特性的映射,具有可选的Z-Scanner和NestedScanner功能的扩展频率尺度

在近生物生理条件下研究活细胞,并具有广泛的配件,以控制环境条件,例如温度和CO2levels

Automate Investigation of Large Samples

新的SmartMapping功能可以选择灵活的,用户定义的2D形力图。通过新的大型Z-MOTOR进行连续评估并自动调整力的最佳力量采集范围。使用光学瓷砖,可以提前选择多个感兴趣的领域并自动检查,从而可以轻松有效地研究大型样品领域。改进的电动阶段精度可授予一定程度的精度和速度。

Integrate Seamlessly with Optical Microscopes

细胞融合300can be seamlessly integrated into the latest research grade optical microscopes with advanced and super-resolution capabilities, to deliver real-time, correlative data sets for the comprehensive characterization of living biological samples. Versatile experimental setups and automated adjustment
系统参数为长期自我调节实验系列开辟了新的可能性。细胞融合300是研究粗糙表面,密集堆积的细胞层和高度波纹组织样品的理想解决方案。

用光荧光瓷砖图像(Scalebar 100 µm)覆盖的绵羊肌肉组织的用户定义形状的力图。富含肌动蛋白丝的肌肉纤维用鬼笔环肽-TRITC(红色)和DAPI(蓝色)染色。内部黑暗区域描绘了未标记的结缔组织。在智能图表模式下获取了力图,并说明了具有大型地形的样品的合并高度测量。上部插图:杨氏模量值的分布。下部插图:在组织样品(蓝色圆形和橙色正方形)上2个不同位置处的存储模量和损耗模量的图。绵羊肌肉样品也用于盖子图像。样本由德国柏林Charité医科大学的再生疗法中心安斯加·彼得森教授(Ansgar Petersen)教授提供。
细胞融合300setup on Zeiss Axio Observer inverted microscope with intuitive software interface.

使用细胞融合技术选择科学出版物

  • Abuhattum et al., Adipose cells and tissues soften with lipid accumulation while in diabetes adipose tissue stiffens. Sci Rep 12, 10325 (2022).
  • Michael et al., Measuring the elastic modulus of soft culture surfaces and three-dimensional hydrogels using atomic force microscopy. Nat Protoc 16, 2418–2449 (2021).
  • Liebsch et al., Quantification of heparin’s antimetastatic effect by single-cell force spectroscopy. J Mol Recognit. 34, e2854 (2021).
  • Möllmert et al., Zebrafish Spinal Cord Repair Is Accompanied by Transient Tissue Stiffening. Biophys J. 118(2), 448-463 (2020).
  • Shen et al., Reduction of Liver Metastasis Stiffness Improves Response to Bevacizumab in Metastatic Colorectal Cancer. Cancer Cell 37(6), 800-817 (2020).
  • Rheinlaender等人,皮质细胞刚度与底物力学无关,NAT。母校。19,1019-1025(2020)。
  • 亚伦at al., Quantification of heparin's antimetastatic effect by single-cell force spectroscopy, J Mol Recognit., 1–11 (2020).
  • Krieg et al., Atomic force microscopy- based Mechanobiology, Nature Reviews Physics 1, 41–57 (2019)
  • Stylianou et al., Review Article: Atomic Force Microscopy on Biological Materials Related to Pathological Conditions, Andreas, Scanning, 8452851 (2019)
  • Thompson等人,组织力学的快速变化调节发育中的胚胎大脑中的细胞行为。Elife 8:E39356(2019)
  • Miroshnikova et al., Adhesion forces and cortical tension couple cell proliferation and differentiation to drive epidermal stratification, Nat Cell Biol 20, 69–80 (2018)
  • Elias et al., Tissue stiffening coordinates morphogenesis by triggering collective cell migration体内,Nature 554,523-527(2018)
  • Bharadwaj et al., aV-class integrins exert dual roles on a5b1 integrins to strengthen adhesion to fibronectin, Nature Communications 8, 14348, 1-10 (2017)
  • Friedrichs et al., A practical guide to quantify cell adhesion using single-cell force spectroscopy. Methods (2013)

Applications

Applications

CellHesion Data Gallery

Bruker的Bioafms允许生命科学和生物物理学研究人员在细胞力学和粘附,机械生物学,细胞细胞和细胞表面相互作用,细胞动力学和细胞形态中进一步研究。我们收集了一个图像的画廊,展示了其中一些应用程序。

Specifications

配件

配件

The Widest Range of Accessories in the Market

Optical systems/accessories, electrochemistry solutions, electrical sample characterization, environmental control options, software modules, temperature control, acoustic and vibration isolation solutions and more. Bruker provides you with the right accessories to control your sample conditions and to perform successful experiments.

网络研讨会

网络研讨会

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