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Published on: December 6, 2013
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A modular microfluidic bioreactor to investigate plant cell-cell interactions
T Finkbeiner1, C Manz2, M L Raorane2,3
1Institute of Microstructure Technology, Karlsruhe Institute of Technology, Hermann-von-Helmholtz-Platz 1, 76344, Eggenstein-Leopoldshafen, Germany.
Protoplasma
|May 2, 2021
Summary
This study introduces a novel microfluidic bioreactor to mimic plant cell interactions for metabolite production. This system enables standardized production of valuable plant compounds, overcoming challenges in conventional cultivation.
Area of Science:
- Plant Biotechnology
- Bioreactor Engineering
- Synthetic Biology
Background:
- Plant secondary metabolites are valuable for pharmaceutical and nutraceutical industries.
- Conventional cultivation faces challenges in standardized production due to environmental factors.
- Plant cell fermentation is complex due to multi-pathway and multi-cell type interactions.
Purpose of the Study:
- To develop a microfluidic bioreactor system that mimics plant tissue cell-cell interactions.
- To enable standardized production of plant-derived compounds.
- To facilitate research in plant cell biology and interorganismal signaling.
Main Methods:
- Fabrication of a modular microfluidic chip using hot embossing and ultrasonic welding.
- Cultivation of different plant cell types in connected modules for signal and metabolite exchange.
- Proof-of-concept applications including quorum sensing, precursor synthesis, and phytotoxin secretion studies.
Main Results:
- Demonstrated biocompatible and transparent microfluidic chips with sufficient nutrient supply.
- Showcased tobacco BY-2 cell division regulated by a quorum-sensing factor.
- Achieved vindoline production by combining Catharanthus roseus cell strains.
- Enabled operationalization of phytotoxin secretion from Neofusicoccum parvum.
Conclusions:
- The microfluidic bioreactor effectively mimics plant cell interactions and facilitates metabolite production.
- This technology offers a standardized platform for plant cell culture and discovery.
- The system has potential for screening interorganismal chemical signaling and developing new biotechnological applications.
Keywords:
Catharanthus roseusCell communicationMicrofluidic bioreactor for plant cellsNicotiana tabacum L. BY-2Plant cell fermentation (PCF)
