Home Products Optoelectronic Tweezer System OptoBot® Single-Cell Optoelectronic Microfluidic Series
OptoBot® Single-Cell Optoelectronic  Microfluidic Series

OptoBot® Single-Cell Optoelectronic Microfluidic Series

Optoelectronic Tweezer System
This system utilizes optoelectronic tweezers and automated microfluidic chips to perform high-throughput cell screening, lowering labor and material costs and reducing experiment times from months to weeks. It features fully automated workflows, real-time cell monitoring, and high data reproducibility without compromising cell viability. With an intuitive interface, built-in imaging, and a GMP and FDA 21 CFR Part 11 -compliant design, its flexible configurations meet ISO Class 5 or BSC Class II standards for a range of lab environments.
Product Features
  • Full-process automation
  • Intuitive user interface
  • AI-powered analysis software
  • Smart system monitoring
  • Biosafety protection
  • On-chip cell culture
OptoBot® Single-Cell Optoelectronic  Microfluidic Series


Areas of Interest
Cell and Gene Therapy (CGT)
Cell Line Development
Antibody Discovery
Cell and Gene Therapy (CGT)
A high-throughput, automated workflow isolates target single cells from transient co-cultures for downstream analysis, enabling multidimensional characterization of T cell potency at single-cell resolution. Images captured during isolation allow for the tracking of specific cells or cell types.
Cell Line Development
By culturing and isolating monoclonal cells, we conduct functional validation and expression profiling to screen for cell lines with high expression and stability. Our integrated workflow enables high-yield cell line screening within five days using precision single-cell manipulation.
Antibody Discovery
The process isolates single B cells and validates the function of their secreted antibodies to screen for high-specificity candidates. Subsequent sequencing and bioinformatics analysis align sequencing data with functional data, enabling the identification of specific antibody sequences.