Our Technology Platforms

Electrospinning | Core Technology

Elevating Medical Innovation with Electrospun Materials

As a trusted partner in electrospinning technology, we specialise in delivering cutting-edge biomaterials tailored to meet the unique needs of our clients. Designed to replicate the fibrous structure of the extracellular matrix, our electrospun materials create an optimal environment for

tissue integration, regeneration, and long-term device performance. By supporting seamless tissue repair and minimising adverse reactions such as scarring, our materials empower medical device manufacturers and researchers to advance healing and improve patient outcomes.

Transforming Design, Tailored For Your Needs

Electrospinning enables precise fine-tuning of materials to meet clinical requirements, ensuring optimal performance and superior patient outcomes. With micrometre-level engineering, this technology delivers unparalleled versatility.

Precision and versatility – offering unmatched control over:

• Porosity
• Material thickness
• Architecture and dimensions
• Mechanical properties
• Fibre orientation
• Surface texture
• Surface wettability
• Raw materials (polymers, natural substances, and additives)

Benefits

Technology Explained

Electrospinning uses high-voltage electrical forces to transform a viscous liquid solution into ultra-fine fibres. A syringe pump feeds the solution through a small needle, while a high voltage (up to 30,000 volts) creates a charged jet. This jet accelerates toward a collector with an opposite charge, stretching and thinning as it travels through the air. The fibres dry during this journey and are deposited onto the collector, forming a non-woven mat.

Our Technology Platforms

Advanced device coverings with superior adhesion for stents, valves, and occlusion devices

Biosynthetic materials combining natural compounds with synthetic fibres for enhanced biocompatibility

Resorbable materials supporting tissue regeneration with controlled degradation profiles

Permanent, non-woven materials designed for long-term implantation with optimal tissue integration