Breaking Down Barriers in Disease Research with Advanced Cell Models
Last updated: September 2023
3D cell models are revolutionizing the field of disease research, breaking down barriers that have traditionally limited our understanding and treatment of various conditions. These innovative models, also known as organoids or spheroids, offer a more accurate representation of human tissues compared to traditional 2D cell cultures. They enable researchers to create disease models, test new drugs, and even pave the way for personalized medicine. By replicating the complex structure and function of human tissues, 3D cell models provide invaluable insights into disease mechanisms, progression, and response to treatment.
Learn more about two techniques used to generate insight in biological processes utilizing advanced cell models.
Gently transfer organoids into individual wells without disturbing morphology and maintaining viability
Solutions include:
Analyze cells around the clock within the stable environment of the tissue culture incubator
High-throughput automated transfer of organoids into 96 or 384 well plates with bubble-free Hydrogel deposition
Any plates can be used, from Petri dishes to specially designed 6 well or 24 well round bottom Nanowell plates for Organoid growth and identification
An integrated turnkey solution to automatically monitor and quantify organoid growth and death in real time, from inside an incubator.
There is an unmet need for new drugs that target diseases of the central nervous system. Medicines Discovery Catapult is developing more predictive in vitro models to address this.
Download this technical note to learn about the advantages of CellCelector in organoid and spheroid research.
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