COMMiT | Cancer Organoids Multiplexed Screening in Microfluidic Textile chips

Summary
The development of precision and personalized medicine, notably in cancer, leads to an explosion in the cost of research, clinical trials, diagnosis and treatment. It calls for a change of paradigm in cell-based personalized models, allowing-high throughput screening of large panels of drugs at low cost and on minute samples. We invented in ERCadg CellO a new technology “Free-Flow Textile Chips” (FFTC) proving a solution to the above problem. It allows the production of high-resolution complex microfluidic devices at very low cost using the power of the textile industry. Using this technology we developed an automated platform able to generate, from a single micro-biopsy, a large number of 3D tumor cell spheroids encapsulated within individual nanoliter droplets, and to screen them against tens of drug combinations. This platform will reduce the time, sample size, cost of screening and drugs consumption per assay by factors ranging from 10 to 1000. This will in turn replace animal testing, and allow low-cost high-content drug screening and affordable precision medicine. This new platform will be tested versus conventional techniques in a real world context, and steps towards industrialization will be taken. We shall first target the market of research laboratories and drug development in the pharmaceutical industry, but also prepare clinical applications to the personalization of anticancer treatments. Beyond this, FFTC represents a major breakthrough in microfluidics, a technological field that is currently revolutionizing biology and medicine. Currently its democratization and societal impact are limited by fabrication costs. FFTC will overcome this barrier. COMMiT will thus pave the route to a wide range of other applications, such as “point-of-care” devices or “organs-on-chip” to replace animal testing.
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More information & hyperlinks
Web resources: https://cordis.europa.eu/project/id/899537
Start date: 01-11-2020
End date: 31-10-2022
Total budget - Public funding: - 150 000,00 Euro
Cordis data

Original description

The development of precision and personalized medicine, notably in cancer, leads to an explosion in the cost of research, clinical trials, diagnosis and treatment. It calls for a change of paradigm in cell-based personalized models, allowing-high throughput screening of large panels of drugs at low cost and on minute samples. We invented in ERCadg CellO a new technology “Free-Flow Textile Chips” (FFTC) proving a solution to the above problem. It allows the production of high-resolution complex microfluidic devices at very low cost using the power of the textile industry. Using this technology we developed an automated platform able to generate, from a single micro-biopsy, a large number of 3D tumor cell spheroids encapsulated within individual nanoliter droplets, and to screen them against tens of drug combinations. This platform will reduce the time, sample size, cost of screening and drugs consumption per assay by factors ranging from 10 to 1000. This will in turn replace animal testing, and allow low-cost high-content drug screening and affordable precision medicine. This new platform will be tested versus conventional techniques in a real world context, and steps towards industrialization will be taken. We shall first target the market of research laboratories and drug development in the pharmaceutical industry, but also prepare clinical applications to the personalization of anticancer treatments. Beyond this, FFTC represents a major breakthrough in microfluidics, a technological field that is currently revolutionizing biology and medicine. Currently its democratization and societal impact are limited by fabrication costs. FFTC will overcome this barrier. COMMiT will thus pave the route to a wide range of other applications, such as “point-of-care” devices or “organs-on-chip” to replace animal testing.

Status

CLOSED

Call topic

ERC-2019-POC

Update Date

27-04-2024
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EU-Programme-Call
Horizon 2020
H2020-EU.1. EXCELLENT SCIENCE
H2020-EU.1.1. EXCELLENT SCIENCE - European Research Council (ERC)
ERC-2019
ERC-2019-PoC