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Δευτέρα 25 Δεκεμβρίου 2017

Scholar : intitle:Bioprinting - νέα αποτελέσματα

A self-assembly based supramolecular bioink with hierarchical control As a new bioprinting tool

CL Hedegaard, E Collin, C Redondo-Gomez… - 2017
Abstract Tissue engineering aims to capture details of the extracellular matrix (ECM) that
stimulate cell growth and tissue regeneration. Molecularly complex materials or advanced
additive fabrication techniques are often used to capture aspects of the ECM. Promising
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Two-step screening process to evaluate printability of inks for extrusion-based bioprinting

T Jüngst, N Paxton, W Smolan, J Groll - 2017
Abstract One of the key bottlenecks of biofabrication are suitable ink materials. These
materials need to meet various requirements and combine good printing properties with
adequate cytocompatibility. Many scientists try to overcome this bottleneck by designing
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Mechanical Behaviour of Alginate-Gelatin Hydrogels for 3D Bioprinting

M Di Guiseppe, N Law, B Webb, R Macrae, LJ Liew… - Journal of the Mechanical …, 2017
Abstract Hydrogels comprised of alginate and gelatin have demonstrated potential as
biomaterials in three dimensional (3D) bioprinting applications. However, as with all
hydrogel-based biomaterials used in extrusion-based bioprinting, many parameters
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[HTML] A Bibliometric Study to Assess Bioprinting Evolution

A Naveau, R Smirani, S Catros, H de Oliveira… - Applied Sciences, 2017
Abstract Bioprinting as a tissue engineering tool is one of the most promising technologies
for overcoming organ shortage. However, the spread of populist articles among on this
technology could potentially lead public opinion to idealize its readiness. This bibliometric
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Reverse Reconstruction and Bioprinting of Bacterial Cellulose‐Based Functional Total Intervertebral Disc for Therapeutic Implantation

J Yang, L Wang, W Zhang, Z Sun, Y Li, M Yang, D Zeng… - Small, 2017
Abstract The degradation of intervertebral discs (IVD), a typical hierarchical structured tissue,
causes serious neck and back pain. The current methods cannot fully reconstitute the
unique structure and function of native IVD. In this study, by reverse reconstruction of the
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Bioprinting of vascularized bone tissue equivalents

PJ Kluger, A Wenz, I Tjoeng, J Rogal, K Borchers - 2017
Abstract Bone tissue is one of the most frequently transplanted tissues. Since procedures
like the transplantation of autologous bone bear risks, though, regenerative medicine and
tissue engineering reach to face those problems by engineering bone substitutes by using
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Extrusion-based bioprinting in musculoskeletal tissue engineering

W Swieszkowski, M Costantini, J Idaszek, A Kosik - 2017
Abstract 3D bioprinting has the potential to fabricate highly customizable and highly
organized structures that, in principle, could be used for the assembly of entire engineered
human organs. This emerging biofabrication technology relies on the simultaneous
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1P-247 Assembly of super-structure using cell-laden hydrogel blocks for 3D Bioprinting based tissue engineering

이선재, 이동윤 - 한국공업화학회 연구논문 초록집, 2017
When using 3D bioprinting to build large constructs, the more hypoxia can be operated on
cells in the core of the constructs because of the greater a size of the constructs. Therefore, a
space within the structure is used to improve the hypoxia. However, mechanical properties
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