Microfluidics is a disruptive technology for manipulation of fluids at microscale. Operating at this scale offers several advantages that can be leveraged in medical devices and as such, microfluidic tools can be envisioned as integrated laboratories. They contain channels with dimensions ranging from single to hundreds of microns that facilitate fluid sensing and reaction, whether it is biofluids (blood, urine, etc..) in a diagnostic device, flue gas for carbon capture, water for micropollutant removal. The gains from such confinement are immense: optimized reagent volumes, boosted reaction rates and higher sensitivity. Microfluidics can also operate from extreme low volume quantities (nanolitre and below) up to several hundred thousand when massively parallelized.
Microfluidics are integral to many of the breakthrough technologies in the last decade and a half (liquid biopsy 2015 ; neurochips 2014 ; personalized medicine 2007)1. The overall market value of microfluidics for life sciences was $2.5B in 2017 and is forecasted to reach $5.8B by 2022 (compound annual growth rate (CAGR)2017-2022 :18%). Even more interesting, this multi-sectional technology can still be imported to other fluid-based segments (chemical synthesis, water depollution, fuel cells, …), meaning its ascension is expected to accelerate.
To become the leader in microfluidic systems, Eden Microfluidics envisions a « factory of the future », with proprietary advanced materials for microfluidics, microfabrication machines and design services for its end-users. To enter the market, Eden benefits from an unique material, the first polymer specifically formulated for microfluidics: Flexdym.
Eden Microfluidics has already established production and commercialisation of advanced polymers and microfabrication solutions for microfluidics, and now develops the first microfluidic water treatment solution. This solution removes or degrades micropollutants (pesticides, antibiotics, heavy metals, ..) from water in a compact, low-energy device, called AKVO. With AKVO, access to clean water can be achieved at all scale, without excessive energy use. The objective of this proposal is to establish the potential of this technology with technical feasibility studies and business market analysis.