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Traditional skin models often force researchers to choose between physiological relevance and experimental scalability. What if you could achieve both?
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In our latest technical note, developed in collaboration with Entropic Biosciences, you'll discover an approach to studying:
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- Barrier biology
- Dermatotoxicology
- Environmental insult responses
- UV-induced tissue injury
- Long-term tissue maturation
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Using primary human cells in a scalable 96-well workflow, researchers generated self-organizing 3D skin organoids that demonstrated tissue-like architecture, functional barrier properties, extended viability, and measurable responses to environmental stressors.
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Download the technical note to explore how more physiologically relevant in vitro models may help support translational research and screening applications.
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