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  • Bioprinter for Human Skin Printing
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Tissue Engineered Equipment Supplied In North America

51 equipment items found
In North AmericaAvailable In North AmericaNear North America

Acellular Tissue Engineered Vessels (ATEV)

Acellular Tissue Engineered Vessels (ATEV)

Manufactured by:ONY Biotech   based inAmherst, NEW YORK (USA)
ONY Biotech is partnering with a start-up company formed by faculty in Chemical and Bioengineering at the University at Buffalo to develop acellular tissue engineered vessels (ATEV). Once implanted, the ATEV evolves over a few weeks into an anatomically and physiologically normal blood vessel populated by the recipient’s own cells. This technology may offer ...
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Precise Bio - Bio-Printing Transplantable Organs and Tissues

Precise Bio - Bio-Printing Transplantable Organs and Tissues

Manufactured by:Precise Bio   based inWinston-Salem, NORTH CAROLINA (USA)
It comprises cell expansion, biomaterials, processes, printing technology and other required critical technologies. Key advantages over other biofabrication approaches are the ability to generate complex tissues in a highly reproducible manner and to apply lessons learned from the fabrication of one tissue to the next. This allows for rapid innovation and product ...
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SpongeCol® - Model 5135 - Collagen Sponges with Columnar Pore Architecture

SpongeCol® - Model 5135 - Collagen Sponges with Columnar Pore Architecture

Manufactured by:Advanced BioMatrix, Inc.   based inCarlsbad, CALIFORNIA (USA)
SpongeCol® is a type I collagen sponge with an interpenetrating, columnar pore architecture. SpongeCol® provides an increased surface area for cell attachment, growth and migration for tissue engineering ...
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TephaFLEX - Absorbable Nonwoven Textiles

TephaFLEX - Absorbable Nonwoven Textiles

Manufactured by:Becton Dickinson and Company (BD)   based inFranklin Lakes, NEW JERSEY (USA)
Nonwoven textile products made from TephaFLEX® material are being developed with a highly porous structure to promote cellular ingrowth and allow tissue remodeling for tissue engineering and regenerative medicine ...
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Regenhu - Model R-GEN 200 - Bioprinting Station

Regenhu - Model R-GEN 200 - Bioprinting Station

Manufactured by:Regenhu   based inVillaz-St-Pierre, SWITZERLAND
The 3d bioprinting station in a biosafety enclosure: bringing the future of tissue engineering and regenerative medicine closer by revolutionizing medicine ...
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BioAssemblyBot - Model 500 - 3D Bioprinter

BioAssemblyBot - Model 500 - 3D Bioprinter

Manufactured by:Advanced Solutions Life Sciences   based inLouisville, KENTUCKY (USA)
BioAssemblyBot 500 provides the next level of environmental control over the biofabrication process. The six-axis robotic arm and the collection of tools make BAB500 a unique offering for tissue engineering. With it being housed in a biosafety cabinet to ensure a sterile environment, life scientists will have further control over all parameters in their ...
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AvantBio - Model HKSdaFREE + HKGE - Animal Origin-Free Cell Culture Supplement System for Reconstructed Human Epidermis

AvantBio - Model HKSdaFREE + HKGE - Animal Origin-Free Cell Culture Supplement System for Reconstructed Human Epidermis

Manufactured by:AvantBio Corporation    based inLynnwood, WASHINGTON (USA)
HKSdaFREE + HKGE: AvantBio introduces an improved, 2-component, defined animal origin-free cell culture supplement system for primary human epidermal keratinocytes and other epithelial cells, including human corneal epithelial cells and human oral epithelial cells. Cell culture and tissue engineering in the complete absence of animal- and human-derived ...
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Cor TRICUSPID - ECM Valve

Cor TRICUSPID - ECM Valve

Manufactured by:CorMatrix, Inc.   based inRoswell, GEORGIA (US) (USA)
CorTM TRICUSPID ECM valve is an investigational device and not commercially available. The CorTM TRICUSPID ECM valve is a cell free, extracellular matrix, tissue engineered valve for the tricuspid valve position. Unlike any other valve the CorTM TRICUSPID valve is a stentless cylindrical seamless valve that provides ventricular continuity and normal motion of the ...
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Model ALPHA-BP11 - Multi-Nozzle Low-Temperature Deposition Manufacturing Printer

Model ALPHA-BP11 - Multi-Nozzle Low-Temperature Deposition Manufacturing Printer

Manufactured by:SunP Biotech   based inCherry Hill, NEW JERSEY (USA)
ALPHA-BP ™ 11 is a multi-nozzle 3D bioprinter for tissue engineering scaffolds. Its Low-Temperature Deposition Manufacturing technique allows 3d printing of personalized tissue scaffolds within a subzero environment. This subzero environment is fully controlled to as low as -30 degrees Celsius. ...
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CELLINK - Model BIO X - 3D Bioprinter

CELLINK - Model BIO X - 3D Bioprinter

Manufactured by:CELLINK   based inBoston, MASSACHUSETTS (USA)
The go-to 3D bioprinter for cell biologists, tissue engineers and biomedical researchers. Explore the most user-friendly and flexible bioprinter in the world. BIO X is the first 3D bioprinter in the world with Intelligent Printheads (iPH), ensuring your research is always at the forefront. ...
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MACI - Autologous Cultured Chondrocytes on Porcine Collagen Membrane

MACI - Autologous Cultured Chondrocytes on Porcine Collagen Membrane

Manufactured by:Vericel Corporation   based inCambridge, MASSACHUSETTS (USA)
Food and Drug Administration has approved MACI (autologous cultured chondrocytes on porcine collagen membrane) for the repair of symptomatic, full-thickness cartilage defects of the knee in adult patients. MACI is the first FDA-approved product that applies the process of tissue engineering to grow cells on scaffolds using healthy cartilage ...
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Huma OsteoGelatin - Model ~300g (BGHL) - Human Gelatin, Lyophilized, High Bloom

Huma OsteoGelatin - Model ~300g (BGHL) - Human Gelatin, Lyophilized, High Bloom

Manufactured by:Humabiologics, Inc   based inPhoenix, ARIZONA (USA)
Huma OsteoGelatin, High Bloom is ideal for coating tissue culture surfaces with a thin layer of gelatin to support rapid cell attachment and growth or for hydrogel application. Humabiologics offers the first and only human gelatin in the market derived from bone at Bloom numbers between 90-300 g to meet translation research and regenerative therapies needs. Gelatin has been used ...
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GeSiM BioScaffolder - Customizable Bioprinting Multitool For Regenerative Medicine

GeSiM BioScaffolder - Customizable Bioprinting Multitool For Regenerative Medicine

Manufactured by:Scie-Con Scientific Consulting LLC   based in, USA
The GeSiM BioScaffolder is a customizable bioprinting multitool for regenerative medicine, tissue engineering and biomaterials research and it fits into most biosafety cabinets. It offers a variety of tools used for tissue engineering, scaffolding of bone and cartilage as well as soft tissues, electroactive ...
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Huma OsteoGelatin - Model ~225g (BGML) - Human Gelatin, Lyophilized, Medium Bloom

Huma OsteoGelatin - Model ~225g (BGML) - Human Gelatin, Lyophilized, Medium Bloom

Manufactured by:Humabiologics, Inc   based inPhoenix, ARIZONA (USA)
Huma OsteoGelatin, Medium Bloom is ideal for coating tissue culture surfaces with a thin layer of gelatin to support rapid cell attachment and growth or for hydrogel application. Humabiologics offers the first and only human gelatin in the market derived from bone at Bloom numbers between 90-300 g to meet translation research and regenerative therapies needs. Gelatin has been ...
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EpiBone - Revolutionary Bone Reconstruction Device

EpiBone - Revolutionary Bone Reconstruction Device

Manufactured by:EpiBone, Inc.   based inBrooklyn, NEW YORK (USA)
At EpiBone we are on a mission to use groundbreaking research to transform skeletal repair. Our approach is clear: We practice impeccable science to solve challenging problems, to make leaps in tissue engineering that no one has made before. To achieve that requires more than cutting-edge technology. It means building a diverse team of expert scientists ...
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Huma OsteoGelMA - Model BMHL/BMML - Human Gelatin Methacrylate, Lyophilized

Huma OsteoGelMA - Model BMHL/BMML - Human Gelatin Methacrylate, Lyophilized

Manufactured by:Humabiologics, Inc   based inPhoenix, ARIZONA (USA)
Its ability to be photocrosslinked allows for a tunable 3D gel with a wide range of applications including 3D bioprinting, 3D culturing, and many other tissue engineering and regenerative medicine research ...
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Confluent Medical - Biomedical Textiles

Confluent Medical - Biomedical Textiles

Manufactured by:Confluent Medical Technologies   based inScottsdale, ARIZONA (USA)
Confluent’s Biomedical Textiles service the Cardiovascular, Orthopedic, and Tissue Engineering markets. Woven, Knits, Braided, and Non-Woven implantable medical textiles are building blocks for medical devices. Trust our proven textiles expertise to assist you from initial concept development through large-scale ...
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MedChemExpress - Model KLD-12 - 800379-47-9

MedChemExpress - Model KLD-12 - 800379-47-9

Manufactured by:MedChemExpress LLC (MCE)   based inMonmouth Junction, NEW JERSEY (USA)
KLD-12 is a 12-residue self-assembling peptide that is used in tissue-engineering. KLD-12 combined with SDF-1 self-assembled polypeptide enhances chondrogenic differentiation of bone marrow stromal cells (BMSCs). KLD-12 hydrogel can fill full-thickness osteochondral defects in situ and improve cartilage ...
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Model dOCTor - Optical Coherence Tomography (OCT) systems

Model dOCTor - Optical Coherence Tomography (OCT) systems

Manufactured by:Novacam Technologies   based inDollard-Des-Ormeaux, QUEBEC (CANADA)
NOVACAMTM dOCTor systems offer very high quality non-invasive tissue imaging in 2D and 3D. They are ideal for: In-vivo imaging, Small animal imaging, Tissue engineering and visualization, Developmental biology. The dOCTor systems are available in swept-source (SS) OCT and time-domain (TD) OCT configurations to satisfy different application ...
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Cells Using 3D Bioprinting Traps

Cells Using 3D Bioprinting Traps

Manufactured by:Creative Bioarray   based inShirley, NEW YORK (USA)
Most tissues are composed of multiple cell types organized in the three-dimensional (3D) arrangement required for intercellular communication and function. In vitro fabrication of living tissue involves recapitulating this complex cellular structure, which is difficult to do in a controlled manner. To fully realize artificial, cell-laden biological models in ...
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