Objective:
To design and develop an integrated microfluidic platform for rapid, on-site DNA extraction, amplification, and detection.
Current Focus:
▪Performing isothermal amplification using Recombinase Polymerase Amplification (RPA)
▪ Optimising amplification parameters for maximum yield and sensitivity.
▪Integration of DNA extraction, amplification, and detection on a single microfluidic chip.
Expected Outcome:
A portable, low-cost microfluidic device enabling rapid, efficient, and user-friendly DNA analysis at the point of care.
Next Steps:
•Fabrication of microfluidic channels for controlled reaction flow.
•Embedding amplification zones to function using body temperature as a natural heat source.
•Validation of the integrated chip for real-time DNA amplification and detection.
Microchannel (~500 microns in width)