Biosurfaces
BioSurfaces is dedicated to improving lives worldwide through proprietary Bio-Spun™ nanofiber technology, creating superior medical devices, tissue engineering scaffolds, and personal care products. They collaborate with leading organizations such as Takeda, NIH, and Corning, and focus on innovation in life science tools, medical devices, and consumer products.
Industries
Nr. of Employees
small (1-50)
Biosurfaces
200 Homer Avenue, Unit 1P, Ashland, MA 01721
Patents
Electrospinning process for making a textile suitable for use as a medical article
US-8771582-B2
View Details
Electrospinning process for making a textile suitable for use as a medical article
US-8771582-B2
View DetailsProducts
Electrospun cell encapsulation chamber for cell therapy delivery
Macro-scale electrospun chamber designed to encapsulate therapeutic cells, provide immunoprotection by limiting cellular migration, minimize fibrosis, and enable sustained secretion or elution of therapeutic agents in vivo.
Electrospun scaffolds mounted on multi‑well/transwell inserts
Pre-fabricated electrospun scaffold sheets mounted on standard 6‑, 12‑, 24‑, or 96‑well inserts and transwell plates for in vitro assays.
Prototype synthetic vascular grafts and implantable device concepts
Development-stage synthetic grafts and implantable device concepts produced using automated electrospun manufacturing aimed at rapid tissue integration and early access for vascular applications.
Electrospun cell encapsulation chamber for cell therapy delivery
Macro-scale electrospun chamber designed to encapsulate therapeutic cells, provide immunoprotection by limiting cellular migration, minimize fibrosis, and enable sustained secretion or elution of therapeutic agents in vivo.
Electrospun scaffolds mounted on multi‑well/transwell inserts
Pre-fabricated electrospun scaffold sheets mounted on standard 6‑, 12‑, 24‑, or 96‑well inserts and transwell plates for in vitro assays.
Prototype synthetic vascular grafts and implantable device concepts
Development-stage synthetic grafts and implantable device concepts produced using automated electrospun manufacturing aimed at rapid tissue integration and early access for vascular applications.
Services
Design and manufacture of custom electrospun scaffolds and coatings with specified materials, thicknesses, geometries, and payload incorporation.
Collaborative projects to integrate electrospun materials into partner devices or to develop new device concepts, including technology transfer support.
Commercial supply of electrospun scaffolds mounted on individual multi-well and transwell insert plates for in vitro research workflows.
Design and manufacture of custom electrospun scaffolds and coatings with specified materials, thicknesses, geometries, and payload incorporation.
Collaborative projects to integrate electrospun materials into partner devices or to develop new device concepts, including technology transfer support.
Commercial supply of electrospun scaffolds mounted on individual multi-well and transwell insert plates for in vitro research workflows.
Expertise Areas
- Electrospinning and nanofiber fabrication
- Tissue engineering scaffold development
- Drug-eluting implantable devices
- Cell encapsulation and cell therapy delivery devices
Key Technologies
- Room-temperature electrospinning
- Nanofibrous 3D scaffold fabrication
- Drug‑eluting fiber systems
- Macro-scale cell encapsulation devices
News & Updates
Research presentation on human alveolar tissue models using Bio-Spun™ scaffolds at the Society of Toxicology 2021 Annual Meeting.
Presentation of an innovative electrospun macrodevice for durable encapsulation of human cells for therapeutic use.
Development of in vitro full-thickness human skin models using 3D electrospun scaffolds.
An article discussing how diversity fosters innovation within the company.
A company update on progress and milestones.
Research presentation on human alveolar tissue models using Bio-Spun™ scaffolds at the Society of Toxicology 2021 Annual Meeting.
Presentation of an innovative electrospun macrodevice for durable encapsulation of human cells for therapeutic use.
Development of in vitro full-thickness human skin models using 3D electrospun scaffolds.
An article discussing how diversity fosters innovation within the company.
A company update on progress and milestones.