Bruker Cellular Analysis


Developer of benchtop optofluidic and proteomic-barcoding platforms for high-throughput, live single-cell functional analysis and automated bulk proteomics. Offers microfluidic instruments and consumables, multi-omic single-cell workflows, and software for high-dimensional proteomic data visualization and interpretation to support antibody discovery, cell therapy profiling, cell line development, and related research.

Industries

analytics
biotechnology
health-care

Nr. of Employees

medium (51-250)

Bruker Cellular Analysis

Emeryville, California, United States, North America


Patents

Laser-assisted repositioning of a micro-object and culturing of an attachment-dependent cell in a microfluidic environment

US-12467031-B2

View Details

Systems and methods for identification of optimized protein production and kits therefor

US-12385038-B2

View Details

Methods for assaying biological cells in a microfluidic device

US-12345701-B2

View Details

Covalently modified surfaces, kits, and methods of preparation and use

US-12280370-B2

View Details

Automated detection and repositioning of micro-objects in microfluidic devices

US-12272048-B2

View Details

Microfluidic device with programmable switching elements

US-12220697-B2

View Details
View All Patents

Products

Benchtop optofluidic single-cell analysis system

Compact benchtop instrument enabling live single-cell manipulation, isolation, co-culture assays, automated screening and recovery of single cells for downstream expansion or multi-omic profiling.

Proteomic barcoding platform for single-cell and bulk analysis

Platform combining microfluidic consumable chips and informatics to perform multiplexed proteomic assays at single-cell and bulk scale, supporting cytokine, chemokine and phosphoprotein panels.

High-throughput microfluidic bulk proteomics chips

Microfluidic 'Meteor' chips and associated calibration files for automated, quantitative, multiplexed bulk proteomics with low sample volume and triplicate standards per run.

Multi-dimensional proteomic informatics software

Software suite for experiment setup, data processing, visualization and export of single-cell and bulk proteomic assays, designed to reveal polyfunctional cellular profiles.


Services

Preconfigured experimental workflows and technical resources to implement single-cell functional assays, including T cell profiling, B cell antibody discovery, and miniaturized clone selection for cell line development.

Expertise Areas

  • Single-cell functional proteomics
  • Optofluidic single-cell manipulation and screening
  • Antibody discovery workflows
  • T cell and cell therapy functional profiling
  • Show More (5)

Key Technologies

  • Optofluidics (opto-electropositioning)
  • Microfluidic NanoPen chambers
  • Single-cell secretome assays (multiplexed cytokine detection)
  • Proteomic barcoding
  • Show More (5)

News & Updates

Blog summary of a Science Immunology study using single-cell secretome and bulk proteomics platforms to investigate how gut microbiota influence immune responses and checkpoint inhibitor efficacy in preclinical melanoma models.

Blog summary of a Blood publication where single-cell secretome and bulk secretome assays were used to characterize CAR-T cell function and demonstrate a CD200R–CD28 switch improves CAR-T polyfunctionality and performance.

Blog summary of a Science Translational Medicine paper using single-cell secretome assays to profile hypofunctional CD8+ T cell states in glioblastoma and distinguish tolerized versus exhausted phenotypes.

Announcement describing Meteor microfluidic chips for automated quantitative bulk proteomics with high throughput and integrated calibrants, and adoption by a core facility for reduced hands-on time.

The benchtop optofluidic single-cell discovery platform won The Scientist Top Innovations award for 2025.


Similar organizations

Browse all ORGANIZATIONS

JOIN OUR MAILING LIST

Stay Connected with MTEC

Keep up with active and upcoming solicitations, MTEC news and other valuable information.