研究者業績
基本情報
- 所属
- 藤田医科大学 医療科学部 医療経営情報学科 診療情報学 准教授
- 学位
- 博士(医学)
- 通称等の別名
- 新里 雅範
- J-GLOBAL ID
- 200901003737244803
- researchmap会員ID
- 1000102772
論文
4-
Clinical Pharmacology and Therapy 26(2) 45-54 2016年5月 査読有り招待有り
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JOURNAL OF ARTIFICIAL ORGANS 18(4) 315-321 2015年12月 査読有りThe efficacy of skin regeneration devices consisting of nonwoven filters and peripheral blood cells was investigated for wound healing. We previously found that human peripheral blood cells enhanced their production of growth factors, such as transforming growth factor beta 1 (TGF-beta 1) and vascular endothelial growth factor, when they were captured on nonwoven filters. Cells on biodegradable filters were expected to serve as a local supply of growth factors and cell sources when they were placed in wounded skin. Nonwoven filters made of biodegradable polylactic acid (PLA) were cut out as 13-mm disks and placed into cell-capturing devices. Mouse peripheral blood was filtered, resulting in PLA filters with mouse peripheral blood cells (m-PBCs) at capture rates of 65.8 +/- A 5.2 %. Then, the filters were attached to full-thickness surgical wounds in a diabetic db/db mouse skin for 14 days as a model of severe chronic wounds. The wound area treated with PLA nonwoven filters with m-PBCs (PLA/B+) was reduced to 8.5 +/- A 12.2 % when compared with day 0, although the non-treated control wounds showed reduction only to 60.6 +/- A 27.8 %. However, the PLA filters without m-PBCs increased the wound area to 162.9 +/- A 118.7 %. By histopathological study, the PLA/B+ groups more effectively accelerated formation of epithelium. The m-PBCs captured on the PLA filters enhanced keratinocyte growth factor (FGF-7) and TGF-beta 1 productions in vitro, which may be related to wound healing. This device is useful for regeneration of wounded skin and may be adaptable for another application.
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JOURNAL OF ARTIFICIAL ORGANS 18(1) 55-63 2015年3月 査読有りScaffolds, growth factors, and cells are three essential components in regenerative medicine. Nonwoven filters, which capture cells, provide a scaffold that localizes and concentrates cells near injured tissues. Further, the cells captured on the filters are expected to serve as a local supply of growth factors. In this study, we investigated the growth factors produced by cells captured on nonwoven filters. Nonwoven filters made of polyethylene terephthalate (PET), biodegradable polylactic acid (PLA), or chitin (1.2-22 mu m fiber diameter) were cut out as 13 mm disks and placed into cell-capturing devices. Human mesenchymal stem cells derived from adipose tissues (h-ASCs) and peripheral blood cells (h-PBCs) were captured on the filter and cultured to evaluate growth factor production. The cell-capture rates strongly depended on the fiber diameter and the number of filter disks. Nonwoven filter disks were composed of PET or PLA fibers with fiber diameters of 1.2-1.8 mu m captured over 70 % of leukocytes or 90 % of h-ASCs added. The production of vascular endothelial growth factor (VEGF), transforming growth factor beta 1, and platelet-derived growth factor AB were significantly enhanced by the h-PBCs captured on PET or PLA filters. h-ASCs on PLA filters showed significantly enhanced production of VEGF. These enhancements varied with the combination of the nonwoven filter and cells. Because of the enhanced growth factor production, the proliferation of human fibroblasts increased in conditioned medium from h-PBCs on PET filters. This device consisting of nonwoven filters and cells should be investigated further for possible use in the regeneration of impaired tissues.
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Okajimas Folia Anatomica Japonica 92(2) 43-47 2015年 査読有りIn order to elucidate the function of anti-aromatic acid decarboxylase (AADC)-only-positive cells in the alimentary canal, 5-hydroxy-L-tryptophan (5-HTP) or L-3,4-dihydroxyphenylalanine (L-DOPA) was intraperitoneally injected into the laboratory shrew, Suncus murinus, and immunohistochemical studies were conducted on continuous sections of the alimentary canal using specific antisera against tyrosine hydroxylase (TH), AADC, dopamine (DA), and serotonin (5-HT). AADC-only-positive cells localized to the epithelial layer of the alimentary canal from the stomach to the large intestine. These AADC-only-positive cells became DA- and AADC-positive cells after L-DOPA injection, and 5-HT- and AADC-positive cells after 5-HTP injection. These results strongly indicate that the AADC-only-positive cells in the alimentary canal of Suncus murinus are capable of synthesizing DA and 5-HT simultaneously upon administration of L-DOPA and 5-HTP.
MISC
70-
VIRCHOWS ARCHIV B-CELL PATHOLOGY INCLUDING MOLECULAR PATHOLOGY 61(5) 337-341 1992年2月 査読有りCells immunostained with antibodies against both OKT-6 and S-100 protein were observed only in superficial and hilar lymph nodes draining tissues with predominantly squamous epithelia. In contrast, in mesenteric lymph nodes and the spleen, only S-100 protein-positive, but OKT-6-negative cells were found. We suspect that the S-100 and OKT-6-positive cells might be Langerhans cells (LC) and the S-100-positive, OKT-6-negative cells, interdigitating reticulum cells (IDC). We further postulate that the LC in superficial and hilar lymph nodes might migrate from squamous epithelia, with which contact is required for the formation of Birbeck granules.
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DENDRITIC CELLS IN LYMPHOID TISSUES 926 65-70 1991年
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MD-GBK Mitteilungsdienst 55 55-57 1989年9月
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Progress in Hypertension 1(1) 1-8 1988年1月
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Cancer Research 46(9) 4770-4775 1986年9月 査読有り
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Stress: The role of catecholamines and other neurotransmitters 425-433 1984年12月
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NEUROCHEMISTRY INTERNATIONAL 6(4) 509-512 1984年 査読有り
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JAPANESE HEART JOURNAL 25(5) 820-822 1984年
書籍等出版物
6-
Fujita Health University Press 1993年
講演・口頭発表等
4教育内容・方法の工夫(授業評価等を含む)
4-
件名平成24年度版解剖学講義ノートの改訂終了年月日2012/03/31概要医療経営情報学科1年生用の講義ノートを学生意見を参考に改訂した。
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件名平成24年度版病理学講義ノートの改訂終了年月日2012/03/31概要医療経営情報学科2年生用の講義ノートを学生意見を参考に改訂した。
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件名平成24年度版カルテ特別講義ノート・練習問題集の改訂終了年月日2012/03/31概要医療経営情報学科3年生用の講義ノート・練習問題集に新規情報を追加し、改訂した。
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件名平成24年度解剖・病理学実習書の改訂終了年月日2012/06/17概要臨床工学科2年生用の実習書に臓器系統別の病理資料を追加し、改訂した。
教育方法・教育実践に関する発表、講演等
1-
件名第2回医療科学部相互研修FD終了年月日2009/08/04概要「組織的FDの構築と実践−よりよい授業を目指して−」に参加し、標題「より良い授業を目指して―医療経営情報学科の解剖学・病理学―」を発表した。
その他教育活動上特記すべき事項
8-
件名藤田保健衛生大学短期大学平成21年度FD研修会終了年月日2009/10/26概要「藤田保健衛生大学を知る」に参加した。
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件名第3回医療科学部相互研修FD終了年月日2010/08/04概要「戦略的FD活動を実りあるものとするためのPDCAサイクルの位置づけ」に参加した。
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件名大学院保健学研究科講演会終了年月日2010/10/20概要ハインリヒ・ハイネ大学ドイツ糖尿病センターBurkart博士の講演会にて司会した。
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件名第4回医療科学部相互研修FD終了年月日2011/08/02概要「より良い授業のために〜話し方から成績評価まで〜」、「地震対策について」に参加した。
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件名医療科学部勉強会終了年月日2011/12/26概要「分かりやすい教育を考える『コア・カリキュラム勉強会』」に参加した。
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件名第5回医療科学部相互研修FD終了年月日2012/08/07概要「身近なFD活動と大学でのティーチング・ポートフォリオの活用」にサブコーディネータとして発表した。
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件名藤田学園広報誌私立大学われを創りき第36巻1号p.26終了年月日2013/07/20概要「新入生オリエンテーションを終えて」で依頼原稿を執筆。
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件名第6回医療科学部相互研修FD終了年月日2013/08/06概要第一部「学習の質をどう評価するか ―医療人教育におけるパフォーマンフ評価を中心に―、第二部(分科会)「資格試験対策の現状と将来展望」に参加した。