Webinar: Organoid Culture Essentials: From 3D Model Development to Functional Analysis
Join our supplier MCE's upcoming webinar! Organoids are revolutionizing disease modeling, precision medicine, toxicology, and high-throughput drug screening by mimicking native tissue structure and function like never before. But navigating the workflow-from matrix selection to functional analysis-can be complex.
Online
About this webinar:
Organoids are powerful 3D in vitro models that can mimic aspects of native tissue structure and function, making them valuable for developmental biology, disease modeling, precision medicine, toxicology, and tumor microenvironment studies. This webinar will introduce the fundamentals of organoid culture, recent advances and highlight how organoids are being applied in high-throughput screening, organ-on-chip platforms, and personalized medicine research.
Attendees will also gain an overview of essential tools for organoid and stem cell workflows, including basement membrane matrices, hydrogels, standardized ready-to-use organoid culture media, customized cytokine and small molecule supplements, and cryopreservation/recovery reagents. The webinar will further cover downstream analysis solutions such as antibodies, viability assay kits, apoptosis/cytotoxicity detection, and fluorescent dyes to support researchers from organoid establishment through characterization and functional analysis.
Registration & more information Learn more about MCE
In this webinar, you will learn:
- An introduction to organoid culture, including core principles, model types, and recent advances shaping the organoid research field.
- Essential tools and reagents for successful organoid and stem cell culture, from matrices and ready-to-use media to cytokines, small molecules, and stem cell supplements.
- Practical approaches for organoid characterization and analysis, including biomarker detection, viability assessment, apoptosis/cytotoxicity assays, and fluorescent imaging.
About the speaker:
Yisu Wang is a Senior Product Manager at MedChemExpress, he has a background in biochemistry, pharmacology, and advanced imaging techniques to his role. For his doctoral research, Yisu developed innovative imaging techniques to track nanoparticles across various cell types for drug delivery studies.
Following his PhD, Yisu continued his research as a postdoctoral fellow, where he investigated the physiological and cellular effects of a palmitate-rich diet on mouse oocytes using CARS microscopy. He also worked at the former paterson institute for cancer research and IIT: Istituto Italiano di Tecnologia. His expertise in both experimental and applied research cell culture and cellular imaging brings good insights to our discussion today.