Julia Koenig , Dr.

Julia Koenig

Julia Koenig studied Biology at Dresden University of Technology. After finishing her PhD in 2015, she joined the Electron Microscopy Facility of Lucy Collinson at the Francis Crick Institute in London, working on a wide variety of projects as well as methods and workflow development. In January 2018, she joined Leica Microsystems as a product manager for EM sample preparation for cryo workflows.

如何成功进行活细胞光电关联

Coral Life 提供了简化的活细胞 CLEM 解决方案,用于深入了解细胞成分随时间发生的结构变化。除了工作流程手册中描述的技术处理外,本文还提供了成功进行实验的其他知识。
HeLa Kyoto cells (HKF1, H2B-mCherry, alpha Tubulin, mEGFP). Left image: Maximum projection of a z-stack prior to ICC and LVCC. Right image: Maximum projection of a mosaic z-stack after ICC and LVCC.

如何使用Coral Life(活细胞光电联用)改进活细胞成像

对于活细胞 CLEM 应用而言,光学显微镜成像是在正确的时间以正确的状态识别正确细胞的关键步骤。在本文中,徕卡专家就使用宽场系统的优势以及使用蓝宝石作为细胞培养基底时需要克服的障碍分享了他们的见解。
The EM ICE Nano loading area

如何让样品保持在生理状态

Coral Life工作流将动态数据与最佳的样品固定方式(高压冷冻)相结合。然而,如果您的细胞因为温度下降,或缺氧气、二氧化碳或营养物质缺乏而受到损伤,那么再好的样品保存也没有意义。这些因素将影响一系列的生物过程,甚至破坏原超微结构基础,影响您的分析。
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