Imec's European collaborative research to develop lab-on-chip system for cheap and fast cancer diagnosis
Leuven, Belgium – September 2, 2010 – Today, at the Engineering in Medicine and Biology Conference (EMBC) in Buenos Aires (Argentina), imec and its project partners have announced the launch of the European Seventh Framework Project MIRACLE. The MIRACLE project aims to develop an operational lab-on-chip for the isolation and detection of circulating and disseminated tumor cells (CTCs and DTCs) in blood. The new lab-on-chip is an essential step towards faster and cost-efficient diagnosis of cancer.
Detection of circulating and disseminated tumor cells in blood is a promising methodology to diagnose cancer dissemination or to follow up cancer patients during therapy. Today, the detection analyses of these cells are performed in medical laboratories requiring labor intensive, expensive and time-consuming sample processing and cell isolation steps. A full tumor cell detection analysis can take more than a day. A lab-on-chip, integrating the many processing steps, would enable a faster, easy-to-use, cost-effective detection of tumor cells in blood. They are therefore labor-saving and minimally invasive, increasing the patient’s comfort and the efficiency of today’s healthcare.
In a preceding joint project by some of the partners (MASCOT FP6-027652), individual microfluidic modules for cell isolation, cell counting, DNA amplification and detection have been developed. Based on this expertise and strengthened by additional partners, the development of a fully automated, lab-on-chip platform to isolate, count and genotype CTCs is envisaged within the framework of the MIRACLE project. For genotyping, genetic material (i.e. the mRNA) will be extracted from the cells and multiple cancer related markers will be amplified based on multiplex ligation dependent probe amplification (MLPA) followed by their detection using an array of electrochemical sensors. Full integration of all steps requires innovative research and processing steps that need a combination of the multidisciplinary and unique expertise of the different project partners (ranging from microfluidics to interfacing, miniaturization, and integration skills). The resulting lab-on-chip tumor detection system will be well ahead of the current state-of-the-art, revolutionizing cancer diagnostics and individualized theranostics.
Within the framework of the MIRACLE project, imec as project coordinator, collaborates with the Universitat Rovira I Virgili (Spain), the Institut für Mikrotechnik Mainz, AdnaGen, ThinXXs and Consultech (Germany), MRC Holland (The Netherlands), the Oslo University Hospital (Norway), the KTH Royal Institute of Technology, Multi-D and Fujirebio Diagnostics (Sweden), ECCO - the European CanCer Organisation and ICsense (Belgium) and Labman (UK). The project aims at developing a fully automated and integrated microsystem providing the genotype (gene expression profile) of CTCs and DTCs starting from clinical samples. MIRACLE is partly funded by the European Commission (FP7-ICT-2009.3.9). More information on the project is available on the web: www.miracle-fp7.eu
About imec
Imec performs world-leading research in nanoelectronics. Imec leverages its scientific knowledge with the innovative power of its global partnerships in ICT, healthcare and energy. Imec delivers industry-relevant technology solutions. In a unique high-tech environment, its international top talent is committed to providing the building blocks for a better life in a sustainable society. Imec is headquartered in Leuven, Belgium, and has offices in Belgium, the Netherlands, Taiwan, US, China and Japan. Its staff of more than 1,750 people includes over 550 industrial residents and guest researchers. In 2009, imec's revenue (P&L) was 275 million euro. Further information on imec can be found at www.imec.be.
Related Semiconductor IP
- Specialized Video Processing NPU IP for SR, NR, Demosaic, AI ISP, Object Detection, Semantic Segmentation
- Ultra-Low-Power Temperature/Voltage Monitor
- Multi-channel Ultra Ethernet TSS Transform Engine
- Configurable CPU tailored precisely to your needs
- Ultra high-performance low-power ADC
Related News
- Genesys Testware introduces built-in diagnosis and repair solution for embedded memories with repair circuitry
- Genesys Testware Adds Automated Batch-Mode Diagnosis and Characterization of Embedded Memories
- LogicVision's Memory BIST & Automated Diagnosis Solutions Included by TSMC in Its Advanced Embedded Memory Development Program and QA Flow
- DIAMOND Project to Provide Integrated Diagnosis and Correction for Spec, Design and Soft Errors
Latest News
- Siemens accelerates integrated circuit design and verification with agentic AI in Questa One
- Weebit Nano achieves record half-year revenue; licenses ReRAM to Tier-1 Texas Instruments
- IObundle Releases Open-Source UART16550 Core for FPGA SoC Design
- Rapidus Secures 267.6 Billion Yen in Funding from Japan Government and Private Sector Companies
- DNP Invests in Rapidus to Support the Establishment of Mass Production for Next-Generation Semiconductors