A 100 micrometer porous collagen fiber scaffold produced using automated manufacturing from GMP-grade bovine type I collagen. Supplied as 12-well plate inserts with high batch-to-batch consistency and compatibility with standard microscopy techniques.
Manufactured by
3DBioFibR Inc.
Halifax, NS, Canada
3DBioFibR is a biomaterial manufacturing company pioneering the future of regenerative medicine with the world s first commercially scalable collagen fibers and other high-value biopolymers such as chitosan and spider silk . Using our patent-issued dry-spinning technology , we can produce fibers that faithfully recapitulate the natural biomechanical strength and biochemical complexity of native structures—at 3,600x the scale of traditional methods . Our fully automated, high-throughput manufacturing system ensures consistency and scalability, enabling us to transform how collagen and other biopolymers are used across industries. We deliver these materials through two central form factors : Non-woven scaffolds with proven applications in tissue engineering and 3D cell culture . Multifilament yarns , which have garnered significant traction in sutures, hernia meshes, and other surgical materials . Both form factors can be further tuned to incorporate active pharmaceutical ingredients (APIs) , allowing for timed drug release as fibers degrade. This versatility expands their impact across the biomedical landscape, including 3D bioprinting additives, hydrogel reinforcement, wound care, orthopedics, and regenerative medicine . By bridging nature s blueprint with industrial scalability , 3DBioFibR is not simply supplying biomaterials—we are enabling the next generation of medical and biotechnological innovations , already validated through partnerships with major players in the field.
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Gellycle Co., Ltd. · Japan
TetraGel is a hydrogel-based cell culture scaffold designed to support three-dimensional cell growth and tissue engineering applications. The scaffold provides a biomimetic microenvironment for in vitro cell culture, enabling research in regenerative medicine, drug development, and tissue model development.
Seikoh Giken Co., Ltd. · Japan
Cell culture container featuring integrated micro structures designed to support three-dimensional cell growth and tissue engineering applications. The structured surface promotes cellular organization and differentiation, enabling advanced in vitro research for drug testing, regenerative medicine, and cell biology studies.
Nest Scientific Inc. · United States
Specialized plate with permeable membranes designed for three-dimensional cell culture applications.
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