Refine by
Applications
- Bioprinter for Human Skin Printing
- Bioprinter for Tablet Printing
- Acoustic Bioprinter for Bridging from Bench to Bedside
- Acoustic Bioprinter for In Vitro Vascularization Controlled by Local Cell Density Enhancemen
- The mat (t) isse bioprothesis: a bio-resorbable tec (tissue engineering chamber)
- Liposomes - Hollow Nanospheres for Gene Therapy
- Liposomes - Hollow Nanospheres for Cancer Therapy
- Liposomes - Hollow Nanospheres for Ocular Drug Delivery
- Liposomes - Hollow Nanospheres for Brain Drug Delivery
- Liposomes - Hollow Nanospheres for Vaccines
- Liposomes - Hollow Nanospheres for Immunomodulating Response
- Liposomes - Hollow Nanospheres for Tissue Engineering
- PLGA - Polymeric Nanoparticles Copolymer for Gene Therapy
- Exosomes - Extracellular Vesicles for Validation and Quality Control
- Exosomes - Extracellular Vesicles for Cancer Treatment
- Exosomes - Extracellular Vesicles for Immunomodulating Response
- Exosomes - Extracellular Vesicles for Molecular Therapy
- Exosomes - Extracellular Vesicles for Brain Drug Delivery
- Exosomes - Extracellular Vesicles for Ocular Drug Delivery
Tissue Engineering Equipment & Supplies
134 equipment items found
Manufactured by:The Electrospinning Company Ltd. based inDidcot, UNITED KINGDOM
The goal of this study was to investigate whether a biocomposite electrospun scaffold has the ability to induce differentiation of hMSCs into osteogenic lineage without specific growth factors. This study was conducted by researchers at the University of Malaya. Three scaffolds were generated by The Electrospinning Company for this purpose: PLLA + collagen, PLLA + hydroxyapatite (HA) and PLLA + ...
Manufactured by:KLISBio based inBresso, ITALY
KLISBio is developing SILKBridge: a tissue engineered technology based on pure silk fibroin that has the potential to show an optimized balance between biomechanical and biological properties, complementing the high strength of native silk fibers and the enhanced biomimicry of electrospun silk. ...
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 ...
Manufactured by:Novadip Biosciences based inMont-Saint-Guibert, BELGIUM
3D Tissue Engineered Constructs / AUTOLOGOUS PRODUCTS For critical size tissue reconstruction: Active local delivery – ...
Manufactured by:Alcyomics Ltd. based inNewcastle Upon Tyne, UNITED KINGDOM
Tissue Engineering 3D Platform Building tissue one layer at a time. Our expertise in the additive manufacturing and 3D printing technology combined with our understanding of 3D tissue models allows us to explore the bioprinting of various cell types (Figure 1) to biofabricate tissue for in-vitro applications. ...
Manufactured by:Alcyomics Ltd. based inNewcastle Upon Tyne, UNITED KINGDOM
A new dimension in testing. There is an increasing need to reduce the use of animals for biological testing in both academia and industry. Alcyomics® is at the forefront of 3D model development and validation driving innovation to help meet your research ...
Manufactured by:Alcyomics Ltd. based inNewcastle Upon Tyne, UNITED KINGDOM
Disease specific in vitro models for your research. Skimune AD: Our advanced Skimune® model stimulated to demonstrate an AD phenotype through addition of inflammatory cytokines and autologous immune ...
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 ...
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 ...
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 ...
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 ...
Manufactured by:Creative Bioarray based inShirley, NEW YORK (USA)
The ability to generate protein and cellular patterns on surfaces is important for biosensor technology, tissue engineering, and for basic research in cell biology. Certain bioassays, combinatorial screening, and biosensor fabrication all require the placement of biological ligands at well-defined locations on a substrate. Control over cellular localization is ...
Distributed by:AMC Instruments based inNew Delhi, INDIA
AMC Instruments provides advanced electrospinning machines for applications in cell culture, tissue engineering, material science, and nanotechnology research. These systems are designed to support the development of nanofibers, scaffolds, and innovative biomaterials for cutting-edge scientific and industrial ...
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 ...
Manufactured by:Cure Biotech Co., Ltd. based inCheongju-si, SOUTH KOREA
PLCL is a copolymer of high purity of L-Lactide and ε-caprolactone. It has good processability, is safe for the human body, and is used in medical device fields associated with tissue engineering and scaffolds. It is a good material for heart, skin, and vascular tissue regeneration with slow degradation and high elongation rates. ...
Manufactured by:Creative Bioarray based inShirley, NEW YORK (USA)
Over the past decade, remotely controlling the acoustic manipulation of cells in space within carrier matrices has emerged as a particularly promising approach for a wide range of applications, including chemical reaction control, microrobots, drug delivery, and cell and tissue engineering. Accurate control of cell positioning is a much-needed feature in ...
Manufactured by:BIO INX based inZwijnaarde, BELGIUM
Upon photo-crosslinking, the bioresin achieves a stable physiological form, creating a network that, while non-soluble, remains biodegradable. This product is crucial for developing intricate biological structures, providing an innovative solution for tissue engineering and other bioprinting ...
Manufactured by:CTIBiotech based inMeyzieu, FRANCE
CTISkin® Single Donor Kit provides you with up to 6 different primary cell types from one single donor to reduce biological variations in your in vitro / tissue engineering assays. All kits are provided with defined cell culture media suitable for each specific cell type and recommended protocol as a turnkey solution for your safety or efficacy ...
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 ...
Manufactured by:Poietis based inPessac, FRANCE
Next Generation Bioprinting (NGB) plaform has been developed to overcome current tissue manufacturing methods which are the bottleneck impeding standardisation, scale-up and large-scale market adoption of Tissue-Engineering products. It solves critical limitations of existing 3D bioprinting technologies thanks to single-cell resolution and ...
