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Lumina MicroDroplet - Single Cell Encapsulation System
The MicroDroplet Single Cell Encapsulation System is designed to encapsulate tens of millions of cells along with barcode hydrogel beads, providing extensive sample volumes suited for sequencing and histological analysis tasks. This advanced system operates continuously, up to 24 hours a day, ensuring comprehensive coverage and aiding in rare cell discovery. A notable feature is its piezoelectric feedback system that maintains a consistent and stable flow of liquid within the microfluidic chip, which is essential for accurate operation. With the ability to generate microdroplets at a rate of 12,000 per minute, the system is adept at handling large-scale samples efficiently. Ideal for researchers requiring robust and high-throughput single-cell analysis, this encapsulation system supports lengthy operations with minimal downtime, fostering significant scientific insights and advancements.
Our customized MicroDroplet Single Cell Encapsulation System can encapsulate tens of millions of cells and barcode hydrogel beads, providing large sample volumes for subsequent sequencing and histological analysis
- Fully automated single-cell wrapping
- Flow rate feedback control
- Rapid generation of droplets (up to 12,000/min)
- Integrated micro-imaging system to monitor droplet generation at all times
- Hydrogel barcode microspheres and microfluidic chips can be customized to specific sizes.
The MicroDroplet Single Cell Encapsulation System can run 24 hours a day to ensure high coverage of sequencing samples and the discovery of rare cells. Our unique piezoelectric feedback system ensures a highly stable flow of liquid in the microfluidic chip. The system can run continuously for hours or even days at a generation rate of 12,000 microdroplets per minute.
- Fully automated single-cell wrapping
- Flow rate feedback control
- Rapid generation of droplets (up to 12,000/min)
- Integrated micro-imaging system to monitor droplet generation at all times
- Hydrogel barcode microspheres and microfluidic chips can be customized to specific sizes.
- Single-cell sequencing: single-cell expression groups, manifestation group analysis, etc.
- Biological drug discovery : Discovery of antibodies or transcription products from initial plasma cells (B cells or hybridoma cells).
- Bioprocessing: rapid identification and isolation of highly expressed clones.
- Diagnostic: Detect and test circulating tumors and other disease-associated cells.
- Drug resistance studies: identification and isolation of rare drug-resistant cells from large clusters of microbes or tumor cells
- Enzyme evolution: screening millions of enzyme structures to select Z-efficient mutants.
- Synthetic biology: the study of the large number of valuable molecules produced in engineered microbial reservoirs.
