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09 Sep 2025
These images illustrate the need for multiple z-slices to capture all gH2Ax foci in a given cell and get an accurate count.

Development and Derisking of CRISPR Therapies for Rare Diseases

This on-demand presentation by Dr. Fyodor Urnov and Dr. Sadik Kassim, originally delivered at ASGCT 2025, focused on a critical challenge in genetic medicine: how to scale CRISPR therapies from…
Developing embryos of different species at different stages during the elongation of their posterior body axis, from left to right in developmental time. The labelled regions in red depict a region of undifferentiated cells called the tailbud, with the corresponding region generated from that tissue shaded in grey. Upper row: lamprey; middle row: catshark; bottom row, zebrafish. This figure has been adapted from the following publication: Steventon, B., Duarte, F., Lagadec, R., Mazan, S., Nicolas, J.-F., & Hirsinger, E. (2016). Species tailoured contribution of volumetric growth and tissue convergence to posterior body elongation in vertebrates. Development, 2016. 143(10):1732-41

如何研究胚胎发育中的基因调控网络

欢迎参加由 Ben Steventon 博士与 Andrea Boni 博士主讲的点播网络研讨会,探索光片显微镜如何革新发育生物学研究。这项先进成像技术能对三维样本进行高速、大体积的活体成像,且光毒性低。通过用户案例了解光片显微镜如何深化我们对肠道类器官与脑类器官发育的认知,并深入解析徕卡显微系统 Viventis Deep 显微镜的技术原理及其在长时间成像中的应用。
GLP-1 and PYY localized to distinct secretory pools in L-cells.

前沿成像技术用于 GPCR 信号传导

通过这个按需网络研讨会,提升您的药理研究,了解 GPCR 信号传导,并探索旨在理解 GPCR 信号如何转化为细胞和生理反应的尖端成像技术。发现领先的研究,扩展我们对这些关键通路的认识,以寻找新的药物发现途径。

加速不同组织多重成像的发现

组织的多重成像对于肿瘤-免疫相互作用的研究以及人类细胞图谱等发现工作越来越重要。 欢迎加入我们的演讲,Andrea J. Radtke 博士解释了如何使用迭代漂白扩展多重性 (IBEX) 绘制组织图谱,并讨论了用于多重成像的广泛社区资源。
Spheroid stained with Cyan: Dapi nuclear countertain; Green AF488 Involucrin; Orange AF55 Phalloidin Actin; Magenta AF647 CK14.

基于人工智能的表型药物筛查解决方案

本次网络研讨会将全面介绍使用三维细胞培养进行表型药物筛选所遇到的问题、可能的解决方案及规划与执行策略。
Hepatocellular Carcinoma with 13 biomarkers shown – Beta-Catenin, CD3D, CD4, CD8a, CD31, CD44, CD163, DAPI, PanCK, PCK26, PD1, SMA, and Vimentin.

利用蛋白质标记成像了解肿瘤异质性

Alison Cheung博士展示了如何利用蛋白质多重成像技术为癌症研究提供定量见解,与她一起探索肿瘤异质性和免疫细胞动态。
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