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SUN bioscience

SUN bioscience develops the Gri3D® platform, a high-throughput 3D microwell technology that standardizes and automates organoid culture from various stem cell sources. This platform addresses the challenges of scalability, robustness, and reproducibility in drug development, enabling researchers to efficiently generate organoids for personalized medicine applications.

Lausanne, SwitzerlandFounded 2015133K+ followers
Updated 20 months ago

Funding

$553.1K raised to dateRaised to date based on public sources. This may differ from the amount the company actually raised and is based only on what is publicly available on the internet.

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Funding rounds are not available yet.

Founders

Product

Problem

Generating organoids for drug development and personalized medicine is challenging due to issues with scalability, robustness, reproducibility, and imaging. Traditional methods often lack the standardization needed for reliable high-throughput screening and analysis.

Solution

SUN bioscience's Gri3D® platform is a high-throughput 3D microwell technology that automates and standardizes organoid culture from various stem cell sources. The platform enables researchers to efficiently generate organoids with improved scalability, robustness, and reproducibility. Gri3D® facilitates easy imaging of organoids, addressing key challenges in drug development and personalized medicine. The technology supports a variety of organoid types, including retinal, gut, brain, pancreas, inner ear, and liver microtissues.

Target Audience

The primary audience includes researchers in drug development and personalized medicine, as well as academic collaborators and global corporations seeking to standardize their organoid cultures.

Features

  • High-throughput 3D microwell technology for standardized organoid culture
  • Automation of organoid generation, improving scalability and reproducibility
  • Compatibility with various stem cell sources, including pluripotent and adult stem cells
  • Facilitates easy imaging of organoids for detailed analysis
  • Supports the generation of diverse organoid types, such as retinal, gut, brain, pancreas, inner ear, and liver
  • Enables the study of interactions between progenitor cells at near-clonal densities
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