Evaluation of the implant type tissue-engineered cartilage by scanning acoustic microscopy(CELL AND TISSUE ENGINEERING)
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概要
- 論文の詳細を見る
The tissue-engineered cartilages after implantation were nonuniform tissues which were mingling with biodegradable polymers, regeneration cartilage and others. It is a hard task to evaluate the biodegradation of polymers or the maturation of regenerated tissues in the transplants by the conventional examination. Otherwise, scanning acoustic microscopy (SAM) system specially developed to measure the tissue acoustic properties at a microscopic level. In this study, we examined acoustic properties of the tissue-engineered cartilage using SAM, and discuss the usefulness of this devise in the field of tissue engineering. We administered chondrocytes/atelocollagen mixture into the scaffolds of various polymers, and transplanted the constructs in the subcutaneous areas of nude mice for 2 months. We harvested them and examined the sound speed and the attenuation in the section of each construct by the SAM. As the results, images mapping the sound speed exhibited homogenous patterns mainly colored in blue, in all the tissue-engineered cartilage constructs. Contrarily, the images of the attenuation by SAM showed the variation of color ranged between blue and red. The low attenuation area colored in red, which meant hard materials, were corresponding to the polymer remnant in the toluidine blue images. The localizations of blue were almost similar with the metachromatic areas in the histology. In conclusion, the SAM is regarded as a useful tool to provide the information on acoustic properties and their localizations in the transplants that consist of heterogeneous tissues with various components.
著者
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Hoshi Kazuto
Department Of Cartilage & Bone Regeneration (fujisoft) Graduate School Of Medicine The Universit
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Takato Tsuyoshi
Department Of Oral And Maxillofacial Surgery Faculty Of Medicine University Of Tokyo
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Yamaoka Hisayo
Department Of Plastic Surgery Tokyo University Hospital
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Nishizawa Satoru
Department Of Pharmacy Teikyo University Hospital
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Tanaka Yoko
Department Of Applied Biological Chemistry Graduate School Of Agricultural And Life Sciences The Uni
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Saijo Yoshifumi
Department Of Biomedical Imaging Graduate School Of Biomedical Engineering Tohoku University
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Saijo Yoshifumi
Department Of Biomedical Measurements Smart Aging International Research Center Tohoku University
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Tanaka Yoko
Department Of Cartilage & Bone Regeneration (fujisoft) Graduate School Of Medicine The Universit
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Fujihara Yuko
Department of Cartilage & Bone Regeneration (Fujisoft), Graduate School of Medicine, The University
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Nagata Satoru
Nagata Microtia and Reconstructive Plastic Surgery Clinic
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Ogasawara Toru
Departments of Sensory & Motor System Medicine, Graduate School of Medicine, The University of Japan
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Asawa Yukiyo
Department of Cartilage & Bone Regeneration (Fujisoft), Graduate School of Medicine, The University
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Asawa Yukiyo
Department Of Cartilage & Bone Regeneration (fujisoft) Graduate School Of Medicine The Universit
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Fujihara Yuko
Department Of Cartilage & Bone Regeneration (fujisoft) Graduate School Of Medicine The Universit
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Ogasawara Toru
Departments Of Sensory & Motor System Medicine Graduate School Of Medicine The University Of Jap
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Hoshi Kazuto
Department Of Cartilage & Bone Regeneration (fujisoft) Graduate School Of Medicine The Universit
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Takato Tsuyoshi
Departments Of Sensory & Motor System Medicine Graduate School Of Medicine The University Of Jap
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Yamaoka Hisayo
Department Of Cartilage & Bone Regeneration (fujisoft) Graduate School Of Medicine The Universit
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Nishizawa Satoru
Department Of Cartilage & Bone Regeneration (fujisoft) Graduate School Of Medicine The Universit
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Ogasawara Toru
Department Of Oral And Maxillofacial Surgery Graduate School And Faculty Of Medicine The University Of Tokyo
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TAKATO Tsuyoshi
Department of Oral and Maxillo-facial Surgery, Faculty of Medicine, The University of Tokyo
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