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Low-Cost CNC-Based media dispensing system for biotechnology laboratories
Ping Wu1, Matthew Moore1, Peter Cieszewski1
1Syngenta Crop Protection, LLC, 410 Swing Road Greensboro, NC 27409 United States.
SLAS Technology
|December 7, 2025
Summary
A new Automated Media Dispensing System (AMDS) using Computer Numerical Control (CNC) automation significantly improves media dispensing accuracy in plant biotechnology research. This cost-effective system enhances efficiency and ergonomics compared to manual methods.
Area of Science:
- Plant Biotechnology
- Laboratory Automation
- Biotechnology Research
Background:
- Manual media dispensing in plant biotechnology research is labor-intensive and prone to variability.
- There is a need for automated solutions to improve efficiency, accuracy, and ergonomics in research laboratories.
- Existing automated systems can be prohibitively expensive for many research settings.
Purpose of the Study:
- To develop and implement a cost-effective Computer Numerical Control (CNC) based Automated Media Dispensing System (AMDS).
- To evaluate the performance of the AMDS against manual dispensing methods in a plant biotechnology research laboratory.
- To assess the system's potential for improving accuracy, efficiency, and ergonomics in media preparation.
Main Methods:
- Development of a dual-channel liquid dispensing system controlled by CNC.
- Two-year testing and refinement period for the Automated Media Dispensing System (AMDS).
- Performance evaluation including process capability index (Cpk) and time per tray efficiency.
Main Results:
- The AMDS achieved a process capability index (Cpk) of 2.28, significantly outperforming manual dispensing (Cpk of 1.43).
- The system maintained comparable time per tray efficiency to manual operations.
- Ergonomic benefits were observed, reducing prolonged standing for researchers.
- Estimated material cost is approximately 1/50th of comprehensive market solutions.
Conclusions:
- The developed CNC-based AMDS offers a significant improvement in media dispensing accuracy and consistency for plant biotechnology research.
- The system provides substantial ergonomic advantages and is a cost-effective alternative to existing automated solutions.
- Its modular design allows for future adaptations, promoting wider adoption of automation in research labs.

