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InnoFluidics

InnoFluidics develops microfluidic devices utilizing 3D printing and electrical impedance cytometry to enable high-sensitivity, label-free multiparameter measurements for clinical and research applications. Their technology addresses the need for efficient fluid manipulation and analysis, reducing labor and costs while enhancing output quality in healthcare settings.

Eindhoven, The NetherlandsFounded 20227100+ followers
Updated 4 months ago

Funding

Funding not disclosed

Funding rounds are not available yet.

Founders

Founder details are not available yet.

Product

Problem

Current methods for cell analysis often require complex sample preparation, fluorescent labels, and expensive equipment, limiting throughput and increasing costs. Traditional flow cytometry techniques can also be cumbersome and require specialized training, hindering accessibility for point-of-care diagnostics and resource-limited settings.

Solution

InnoFluidics is developing a novel label-free flow cytometer based on microfluidic technology and electrical impedance cytometry. Their system enables high-sensitivity, multiparameter measurements of cells and particles without the need for fluorescent labeling or extensive sample preparation. By integrating 3D printing techniques with advanced microfluidic design, InnoFluidics aims to provide a cost-effective and user-friendly solution for cell analysis in clinical and research applications. The technology facilitates efficient fluid manipulation and analysis, reducing labor and costs while enhancing output quality.

Target Audience

The primary target audience includes clinical researchers, diagnostic laboratories, and healthcare providers seeking efficient and cost-effective solutions for cell analysis.

Features

  • Label-free cell analysis using electrical impedance cytometry
  • Proprietary microfluidic device technology for precise fluid control
  • 3D-printed microfluidic chips for rapid prototyping and customization
  • High-sensitivity multiparameter measurements
  • Compact and user-friendly design for point-of-care applications
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