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Titlebook: Engineered Cell Manipulation for Biomedical Application; Misturu Akashi,Takami Akagi,Michiya Matsusaki Book 2014 Springer Japan 2014 Biode

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2194-0452 structs. To achieve in vitro engineering of three-dimensional human tissue constructs, cell–cell interaction must be controlled in three dimensions, but typical biological cell manipulation technique cannot acc978-4-431-56155-2978-4-431-55139-3Series ISSN 2194-0452 Series E-ISSN 2194-0460
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Recent Advances in 3D Tissue Modelsch allow the formation of 3D structured microenvironments. We will mainly focus on strategies to locally position cell-instructive molecular cues and discuss needs to generate models which would allow the investigator to controllably manipulate cells in their 3D context with the aim to generate comp
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The Potential Use of Three-Dimensional Cellular Multilayers as a Blood Vessel Modelng. An automatic system using inkjet cell printing allows us to fabricate micrometer-sized tissue arrays and evaluate drug metabolism activity. The promising technologies for the creation of blood vessel models have enormous potential for clinically relevant therapies and drug assessment alternative
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