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tissue engineering

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Cells aren’t enough: A materials-centric approach to tissue engineering

Dimension Inx’s Caralynn Nowinski Collens will be speaking at 3DPrint.com’s upcoming AMS online industry summit (Feb 9-10, 2021). Register here. Even with the clinical success seen with cell therapies, they are not sufficient…

Three Key Hurdles Restraining the Growth of the Tissue Engineering Field

The interdisciplinary field of regenerative medicine – comprised of tissue engineering (TE), cell therapy (CT), and gene therapy (GT) – is growing rapidly, characterized by groundbreaking therapeutic advances that have…

Visible Light 3D Printing for Tissue Engineering & Soft Robotics

As researchers from the Department of Chemistry at the University of Texas at Austin began to expand their work in applications such as tissue engineering and soft robotics, they realized…

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AI Driven Bioprinting Speeds up Tissue Engineering

Researchers at Rice University used artificial intelligence (AI) to speed up the development of 3D printed bioscaffolds that help injuries heal. A team led by computer scientist Lydia Kavraki of…

Cell Culture Bioreactor for Tissue Engineering

Researchers from the US and Portugal are refining tissue engineering applications further, releasing the findings of their study in the recently published ‘A Multimodal Stimulation Cell Culture Bioreactor for Tissue…

Tissue Engineering for Bone Regeneration: 3D Printing of Piezoelectric Barium Titanate-Hydroxyapatite Scaffolds

German researchers continue in the quest to improve processes in bioprinting and bone regeneration, sharing their recent study in ‘3D Printing of Piezoelectric Barium Titanate-Hydroxyapatite Scaffolds with Interconnected Porosity for…

Germany: Innovative 3D Printed Scaffold Design for Osteoconductive Bone Tissue Engineering

German researchers take on further challenges and complexities in tissue engineering, releasing their findings in the recently published ‘3D-Printing of Hierarchically Designed and Osteoconductive Bone Tissue Engineering Scaffolds.’ Bioprinting and…

Cartilage Tissue Engineering via Characterization and Application of Carboxymethyl Chitosan-Based Bioink

International researchers continue the trend in exploring natural biomaterials for bioprinting, detailing their findings in the recently published ‘Characterization and Application of Carboxymethyl Chitosan-Based Bioink in Cartilage Tissue Engineering.’ Examining…

Studying 3D Printed PCL Structures in Tissue Engineering

Researchers from Sweden and Norway are making further strides in tissue engineering, with their recent findings published in ‘Computational and experimental characterization of 3D-printed PCL structures toward the design of…

Tissue Engineering: 3D Printed PLA Scaffolds for Seeding Human Dermal Fibroblasts

Researchers in Turkey are 3D printing with PLA in a new study regarding human dermal fibroblasts and tissue engineering of skin cells. Their new findings are outlined in ‘3D Printed…

Italy: Studying Properties & Geometry of Scaffold-Like Structures for Tissue Engineering

Italian authors Claudia Pagano, Lara Rebaioli, Francesco Baldi, and Irene Fassi explore the unique details of creating scaffold-like structures in the recently published ‘Mechanical behavior of scaffold-like structures: Research of…

Tissue Engineering in Turkey: Focus Turns to Melt Electrospinning & Hybrid Manufacturing

Turkish researchers from Sabanci University are taking tissue engineering a step further with new techniques for creating scaffolds, outlining their work in the recently published ‘Biomimicry in Bio-Manufacturing: Developments in…

Tissue Engineering & Bioprinting for Success in Hydrogel Microenvironments Today

In the recently published ‘Engineered 3D Polymer and Hydrogel Microenvironments for Cell Culture Applications,’ authors Daniel Fan, Urs Staufer, and Angelo Accardo explore the world of bioengineering and microenvironments, reviewing…

Beijing University of Chemical Technology: 3D Printed HA/PCL Tissue Engineering Scaffolds

3D printed bone scaffolds used for tissue engineering purposes need to have a good amount of mechanical strength, since the scaffold needs to be able to provide support for the…

Singapore: UV-Assisted Extrusion-Based Bioprinting to Make GelMA Hydrogels for Soft Tissue Engineering

It’s difficult to manufacture complex tissue constructs with the necessary mechanical properties and structure integrity when you’re with bioprinting in soft tissue engineering. Typically, scientists will use materials, like PCL,…

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