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Σάββατο 16 Ιουνίου 2018

Scholar : intitle:Bioprinting - νέα αποτελέσματα

Engineering innervated secretory epithelial organoids by magnetic three-dimensional bioprinting for stimulating epithelial growth in salivary glands

C Adine, KK Ng, S Rungarunlert, GR Souza… - Biomaterials, 2018
Current saliva-based stimulation therapies for radiotherapy-induced xerostomia are
not fully effective due to the presence of damaged secretory epithelia and nerves in
the salivary gland (SG). Hence, three-dimensional bio-engineered organoids are …
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[HTML] A Novel Microplate 3D Bioprinting Platform for the Engineering of Muscle and Tendon Tissues

S Laternser, H Keller, O Leupin, M Rausch… - … : Translating Life Sciences …, 2018
Two-dimensional (2D) cell cultures do not reflect the in vivo situation, and thus it is
important to develop predictive three-dimensional (3D) in vitro models with
enhanced reliability and robustness for drug screening applications. Treatments …
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Innovation and Commercialization Strategies for Three-Dimensional-Bioprinting Technology: a Lean Business Model Perspective

PC Thakur, DD Cabrera, N DeCarolis, AA Boni - Journal of Commercial …, 2018
We examine and analyze the elements important for developing a commercialization
strategy for an emerging technology of great relevance to biopharma: three-
dimensional bio-printing (3DBP). We begin with a technology overview, identification …
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Regenerative medicine and 3D bioprinting for human space exploration and planet colonisation

T Ghidini - Journal of Thoracic Disease, 2018
Abstract 3D printing also known as additive manufacturing (AM) is seen as one of the
key enabling technologies for a large number of high-end industrial sectors including
the automotive, aerospace and medical industry. Recent advances and …
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