Automated EV Extraction Platform
Exofaster-500 can quickly and efficiently isolate and purify small extracellular vesicles (sEVs) with diameters ranging from 40-150 nm from biological samples such as cell culture medium and blood. These purified sEVs can be used for subsequent multi-om-ics analysis and other researches. When used with chromatography columns and automated work-flows, it can achieve high-throughput and consistent sample processing, thus improving experimental efficiency and reducing operational errors, and is suitable for a variety of biological samples.
ExoFaster-500
Key Advantages

01
Efficient & Stable
Achieve consistent, high-recovery results across various complex biological matrices with optimized extraction stability.
02
Fast & Convenient
Streamline your laboratory workflow with a standardized protocol that drastically reduces hands-on technical time.
03
Ultra-high Purity
Ensure superior sample quality through the effective removal of co-isolated proteins and non-vesicular contaminants.
04
Overall Intact Morphology
Preserve the biological and structural integrity of isolated sEVs, ensuring reliability and accuracy in downstream analysis.
Technical Parameters
Chromatography & Reagent Features
Main Performance Features
- Advanced chromatography column separation technology.
- Optimized reagent kits designed for diverse specimen types.
- Consistent performance across standard temperature ranges.
- Flexible processing with minimal sample volume requirements.
- Integrated, ready-to-use buffer and washing systems.
- High-stability reagents with extended shelf-life.
- Automated simultaneous processing of up to 9 samples.
- Rapid isolation cycle completed in under 50 minutes.
- Vesicle recovery rates exceeding 80% per cycle.
- Isolation purity levels effectively reaching over 90%.
- Ergonomic touchscreen control for intuitive operation.
- Automatic data logging for clinical traceability and reporting.
Data & Comparison

Comparison with manual SEC and dUC isolation methods

EV yield and purity
Exploring Milk EVs: Isolation and Characterization Technology
Jul 13, 2026
This application note summarizes practical strategies for milk EV raw material selection, isolation workflows and standard characterization approaches, aiming to provide a concise and operable technical reference for relevant vesicle research.
UC vs. SEC+UF for EV Isolation from Conditioned Media
May 14, 2026
This application note compares ultracentrifugation (UC) and ultrafiltration-coupled size-exclusion chromatography (SEC+UF) for EV isolation from three cell conditioned media sample types to clarify their differences in yield, purity, and operating time.

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