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- Aoki Shigehisa
- Department of Pathology & Microbiology, Faculty of Medicine, Saga University, Saga, Japan
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- Takezawa Toshiaki
- Transgenic Animal Research Center, National Institute of Agrobiological Sciences, Ibaraki, Japan
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- Miyazaki-Oshikata Ayumi
- Transgenic Animal Research Center, National Institute of Agrobiological Sciences, Ibaraki, Japan
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- Ikeda Satoshi
- Department of Pathology & Microbiology, Faculty of Medicine, Saga University, Saga, Japan
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- Nagase Kotaro
- Department of Dermatology, Faculty of Medicine, Saga University, Saga, Japan
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- Koba Shinichii
- Department of Dermatology, Faculty of Medicine, Saga University, Saga, Japan
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- Inoue Takuya
- Department of Dermatology, Faculty of Medicine, Saga University, Saga, Japan
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- Uchihashi Kazuyoshi
- Department of Pathology & Microbiology, Faculty of Medicine, Saga University, Saga, Japan
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- Nishijima-Matsunobu Aki
- Department of Pathology & Microbiology, Faculty of Medicine, Saga University, Saga, Japan
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- Kakihara Nahoko
- Department of Basic science of Nursing, Faculty of Medicine, Saga University, Saga, Japan
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- Hirayama Hiroshi
- Yutoku Pharmaceutical Ind. Co., Ltd, Saga, Japan
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- Narisawa Yutaka
- Department of Dermatology, Faculty of Medicine, Saga University, Saga, Japan
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- Toda Shuji
- Department of Pathology & Microbiology, Faculty of Medicine, Saga University, Saga, Japan
この論文をさがす
説明
Severe burn patients lose wide areas of their skin and are confronted with a high risk of death because they lose an indispensable barrier against the invader, which in turn promotes water evaporation. Cultured skin is expected to be a promising technology for extensive skin defect patients, while faultless cultured skin has not been established. A skin sheet, tough and durable enough in clinical use, is urgently needed because typical cell sheets available now are fragile and difficult to handle at the time of surgery. Collagen vitrigel membrane is a novel biomaterial consisting of high-density collagen fibrils equivalent to connective tissues in vivo. With this novel collagen material utilized as a scaffold, we established a novel cultured skin sheet composed of keratinocytes and mesenchymal cell types. This cultured skin showed a fully differentiated epidermal layer, and could be handled with a tweezers. Interestingly, transplantation of a skin sheet revealed that acceleration of healing or inhibition against scarring depended on mesenchymal cell types in the skin sheet. Our findings suggest that the cultured skin sheet utilizing collagen vitrigel membrane cultured with keratinocytes and mesenchymal cell types will be a powerful tool for the wide skin defect and injury.
収録刊行物
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- Inflammation and Regeneration
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Inflammation and Regeneration 34 (3), 117-123, 2014
一般社団法人 日本炎症・再生医学会
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詳細情報 詳細情報について
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- CRID
- 1390282680234306688
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- NII論文ID
- 130004943855
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- ISSN
- 18808190
- 18809693
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- 本文言語コード
- en
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- 資料種別
- journal article
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- データソース種別
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- JaLC
- Crossref
- CiNii Articles
- KAKEN
- OpenAIRE
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- 抄録ライセンスフラグ
- 使用不可