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Neurorin

This startup provides 3D bioprinters and bioinks that enable researchers to precisely fabricate tissues and disease models. Their technology accelerates applications in tissue engineering, organ-on-a-chip, and disease modeling by allowing the printing of any cell type or geometry.

Updated 2 months ago

Funding

Funding not disclosed

Funding rounds are not available yet.

Founders

Product

Problem

Creating complex 3D tissue models for drug discovery, tissue engineering, and organ-on-a-chip applications is challenging due to limitations in existing bioprinting technologies. Current bioprinters often lack the precision, versatility, and ease-of-use required to fabricate intricate tissue structures with diverse cell types. This hinders progress in regenerative medicine and personalized healthcare.

Solution

Neurorin offers a suite of 3D bioprinters and bioinks designed to simplify and accelerate the fabrication of tissues and organs. Their bioprinters feature a compact design suitable for any lab bench, along with modular printheads optimized for a wide range of bioinks. The platform supports a broad temperature range, precise movement resolution, integrated LED photocuring, a heated print bed, and adjustable pressure controls, enabling the creation of vascularized tissues and organ-on-chip models. Neurorin's customizable bioprinting systems can be configured to meet the specific needs of various tissue engineering applications.

Target Audience

Neurorin's primary customers are researchers and scientists in the fields of tissue engineering, regenerative medicine, drug discovery, and organ-on-a-chip development.

Features

  • Compact bioprinter design for easy integration into any laboratory environment
  • Modular Optimized Versatile Extruders (MOVE) printheads compatible with diverse bioinks
  • Wide temperature range (4-160°C) for accommodating various biomaterials
  • High-precision movement resolution (7.5 μm) for accurate tissue fabrication
  • Integrated LED photocuring for crosslinking bioinks
  • Heated print bed for maintaining optimal cell viability
  • Adjustable pressure controls for fine-tuning material deposition
  • Cloud software integration for seamless user experience and smart calibration
This profile is AI-generated and may contain inaccuracies.