SUMITOMO BAKELITE Sbio™ - Multi-Organ Microphysiological System BioStellar™ Plate
Model: BS-29501 / BS-X9607
Category: Cell Therapy and Regenerative Medicine
Exhibitor: LIS TECH CO., LTD.
Booth No: M1231
Characteristic
Multi-Organ Microphysiological System BioStellar™ Platform
The BioStellar™ Plate features an integrated microfluidic design with a built-in stirrer pump, enabling stable perfusion culture without the need for conventional external pumps or complicated tubing systems. This greatly improves operational convenience and experimental reproducibility.
Product Features:
👍 Multi-organ MPS platform capable of co-culturing up to four different organoids or cell models simultaneously
👍 Built-in Stirrer Pump provides stable perfusion circulation
👍 Open culture platform with workflows similar to standard cell culture procedures
👍 Compatible with commercially available culture consumables such as Cell Culture Inserts
👍 PDMS-free design reduces small-molecule drug absorption issues
👍 Transparent polystyrene material allows real-time microscopic observation
👍 Supports spheroid culture microwells and organoid culture applications
👍 ANSI/SBS microplate standard compatible for easy integration into existing laboratory workflows
👍 Enables organ interaction models such as gut–liver systems
👍 Improves the accuracy of drug absorption, metabolism, and toxicity evaluation
Applications:
Drug development and ADME evaluation
Establish co-culture models for simultaneous assessment of drug absorption, metabolism, and bioavailability, improving the accuracy of in vitro drug evaluation
Multi-organ interaction studies
Investigation of inter-organ communication mechanisms, physiological regulation, and signaling pathways between different tissues
Organoid and organ-on-a-chip research, including perfusion culture studies
Alternative platform to animal testing — MPS technology helps reduce animal experimentation while providing models that more closely mimic human physiological responses
Platform Advantages
The BioStellar™ Plate combines “ease of operation,” “high compatibility,” and “physiological relevance,” allowing researchers to adopt multi-organ MPS technology with a lower entry barrier and rapidly establish highly reproducible research platforms.
Compared with conventional microfluidic chips:
👏 No complicated external tubing required
👏 Operation similar to standard cell culture workflows
👏 Easier observation and sample collection
👏 Reduced errors caused by drug absorption
👏 Better suited for long-term co-culture and high-throughput studies
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