We develop new biocompatible polymeric materials for medical devices

 

 

 

We research in three technological fields of design and development of medical devices

MICROFLUIDICS

Injection-compression POC devices
  • Surface modification and new functionalities

  • Process scalability and replication capacity

  • Optical properties improvement

TISSUE ENGINEERING

Biomaterials and cell regeneration processes
  • Scaffolds (PLA, PCL,...)

  • Hydrogels

  • Bioprinting

MEDICAL DEVICES

Needs from doctors and patients, from the idea to the pre-series
  • Medical devices for medical professionals

  • Patient personalisation, image-treatment

  • Sensors integration

  • Silicone & thermoplastic

 

 

 

We understand the idea and we identificate the requirements

We design and develop medical solutions

We validate a pre-clinical product

 

 

 

An special facility that supports our researching activity

ISO7 Clean room for the manufacturing of medical devices
Manufacturing in GMP conditions for clinical trials
ISO13485 for the adequate management of our medical devices' quality

Result oriented R&D+i

From the scientific research to the Health industry
  • Strategic collaborations with hospitals reducing time to market of our medical devices

  • European projects participation and coordination (HORIZON EUROPE,...)

  • 60% PhDs highly qualified team with experience in technology transfer

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PROJECTS
we are working on

BRAV3

BRAV3

Computational biomimetics and bioengineering 3D printing to develop a personalized regenerative biological ventricular assist device to provide lasting functional support to damage hearts.

LAIKA

LAIKA

In vitro development of an articular cartilage based on interpenetrating networks of hyaluronic acid and alginate

BihoBeat

BihoBeat

Development of a new technology for improving the maturation of human scale therapeutic cardiac tissues by means of physiological stimuli

BIL-CHIP

BIL-CHIP

Development of a cholangiocarcinoma-on-chip model to study its biology and test new therapies

imiTEM

imiTEM

Viscoelastic Properties of the Tumor Extracellular Matrix as a Potential Breast Cancer Biomarker

Ingeniaritza Biomediko Laborategia

Ingeniaritza Biomediko Laborategia

Biomedical Engineering Laboratory. Tissue engineering laboratory and organ-on-chip laboratory infrastructure

Ane Miren Zaldua

Ane Miren Zaldua

Health responsible

Any query?

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