MN-O17 Development of a micropatterned cell array with an integrated optical oxygen sensor(Section X Micro/Nano Technology for Analysis and Cell Manipulation)
スポンサーリンク
概要
著者
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Sakai Yasuyuki
University of Tokyo
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Fujii Teruo
University of Tokyo
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Sakai Yasuyuki
Institute Of Industrial Science University Of Tokyo
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Sakai Yasuyuki
Inst. Of Ind. Sci. Univ. Of Tokyo
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KOMORI Kikuo
Institute of Industrial Science, University of Tokyo
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Montagne Kevin
Institute Of Industrial Science University Of Tokyo:limms/cnrs-iis University Of Tokyo
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Montagne Kevin
University of Tokyo
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Komori Kikuo
University of Tokyo
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Tatsuma Tetsu
University of Tokyo
関連論文
- BM-O3 Feasibility of direct oxygenation through polydimethylsiloxane membranes in engineering thick liver tissues(Section III Biomedical Engineering)
- MN-P19 Controlling the differentiation of mouse embryonic stem cells by laminar flow in microenvironment(Section X Micro/Nano Technology for Analysis and Cell Manipulation)
- Development of an in vitro Batch-type Closed Gas Exposure Device with an Alveolar Epithelial Cell Line, A549, for Toxicity Evaluations of Gaseous Compounds
- Gene Expression Analysis of Liver Cells in Double-layered Coculture Systems with Small Intestinal Cells in the Presence of Xenobiotics
- Bile Canalicular Formation and Hepatobiliary Transport are Enhanced in Hepatocyte Sandwich Culture on an Oxygen-permeable Polydimethylsiloxane Membrane
- Tissue-engineered skin using aggregates of normal human skin fibroblasts and biodegradable material
- Toward Selectivity Control of a Heme Peptide Electrode by Modification with a Phase-Transition Polymer
- Cytotoxicity evaluation of reactive metabolites using rat liver homogenate microsome-encapsulated alginate gel microbeads(BIOCHEMICAL ENGINEERING)
- Investigation of a Minimally-Required Size for a Two-Dimensional Liver Micro-Tissue toward In Vitro Toxicity Tests
- MN-O17 Development of a micropatterned cell array with an integrated optical oxygen sensor(Section X Micro/Nano Technology for Analysis and Cell Manipulation)
- Feasibility of Direct Oxygenation of Primary-Cultured Rat Hepatocytes Using Polyethylene Glycol-Decorated Liposome-Encapsulated Hemoglobin (LEH)(CELL AND TISSUE ENGINEERING)
- Development of a biohybrid simulator for absorption and biotransformation processes in humans based on in vitro models of small intestine and liver tissues
- Use of liposome encapsulated hemoglobin as an oxygen carrier for fetal and adult rat liver cell culture(CELL AND TISSUE ENGINEERING)