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DynaGrow Magnetic Bioreactor

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  • DynaGrow Magnetic Bioreactor

    description: DynaGrow is an innovative magnetic nanoparticle-based cell modulation system that leverages cutting-edge nanotechnology to provide unprecedented precision in controlling cellular behavior. The system enables precise regulation of cell differentiation, ion
    Product Overview
    DynaGrow is an innovative magnetic nanoparticle-based cell modulation system that leverages cutting-edge nanotechnology to provide unprecedented precision in controlling cellular behavior. The system enables precise regulation of cell differentiation, ion channel activation, mechanotransduction, and tissue matrix formation both in vitro and in vivo, unlocking the potential of nanotechnology and stem cell therapies in basic research and clinical applications.
    Fully compatible with standard cell culture workflows, DynaGrow™ allows direct magnetic stimulation within conventional culture plates (6, 24, 96 wells) without transferring cells or constructs. Its compact design allows placement on benchtops or inside incubators, integrating high-precision cell manipulation seamlessly into routine laboratory workflows.
    The bioreactor enables new approaches to tissue engineering, regenerative medicine, drug discovery, and therapy via novel magnetic ion channel activation. Using our patented instrumentation, nanotechnology, and magnetic forces provide mechanical stimulation to cell cultures and facilitate 3D structure and organoid cell cultures.
    Product Advantages
    High Precision & Control: Targets individual ion channels or specific receptors to finely tune cell function and signaling pathways.
    Non-Destructive: Magnetic stimulation can be applied without transferring cells or constructs, preserving experimental integrity.
    Multi-functional & Flexible: Suitable for cell mechanics, stem cell differentiation, tissue engineering, drug screening, and therapeutic application development.
    Dynamic Simulation Capability: Enables the creation of organoid-like models and simulates physiological mechanical environments, such as gut peristalsis, enhancing physiological relevance of in vitro studies.
    Easy Integration: Compact design and standardized interfaces allow seamless integration into existing laboratory workflows with minimal modifications.
    Clinical & Research Potential: Supports conditioned treatment and targeted activation of specific cell types in stem cell therapy and regenerative medicine research.
    Key Features
    Magnetic nanoparticles bind to ion channels, cell receptors, and mechanosensors
    Configurable mechanical stimulation for 2D and 3D tissue model construction
    Precise control of individual cells or specific cell populations, suppo

    Applications
    Cell mechanics and mechanotransduction studies
    Stem cell differentiation and regenerative medicine research
    Tissue engineering and in vitro tissue modeling
    Drug screening and therapeutic application development
    Organoid modeling and dynamic physiological simulation
    Study of mechanical signaling pathways
    Key Specifications
    Compatible culture plates: 6, 24, 96 wells
    Temperature and environment: 37°C, 5% CO₂, incubator operation
    Control mode: External magnetic field, precise regulation of single cells or cell populations
    System components: Bioreactor main unit, magnetic plate box, nanoparticle vials, connectivity accessories, and power supply

    Detailed Specifications