Bone marrow-derived monocyte lineage cells recruited by MIP-1β promote physiological revascularization in mouse model of oxygen-induced retinopathy 酸素負荷網膜症モデルマウス網膜における、MIP-1β誘導性骨髄由来単球系細胞の生理的血管再生促進作用

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著者

    • 石川, 桂二郎 イシカワ, ケイジロウ

書誌事項

タイトル

Bone marrow-derived monocyte lineage cells recruited by MIP-1β promote physiological revascularization in mouse model of oxygen-induced retinopathy

タイトル別名

酸素負荷網膜症モデルマウス網膜における、MIP-1β誘導性骨髄由来単球系細胞の生理的血管再生促進作用

著者名

石川, 桂二郎

著者別名

イシカワ, ケイジロウ

学位授与大学

九州大学

取得学位

博士 (医学)

学位授与番号

甲第10688号

学位授与年月日

2012-03-27

注記・抄録

博士論文

Recent clinical observations have indicated that vascular endothelial growth factor (VEGF) is a key factor that stimulates the development of preretinal pathological neovascularization (NV). However, it has not been established how intraretinal physiological revascularization of hypoxic avascular areas is regulated. Our earlier study on the gene expression profile of hypoxic retinas in a mouse model of oxygen-induced retinopathy (OIR) showed that macrophage inflammatory protein-1β (MIP-1β) was the most upregulated protein. The purpose of this study was to investigate the role played by MIP-1β in recruiting bone marrow-derived monocyte lineage cells (BM-MLCs) in a mouse model of OIR. Our results showed that MIP-1β was upregulated, and its receptor, CCR5, was expressed in BM-MLCs in the hypoxic inner retina. Neutralizing Ab against MIP-1β reduced the infiltration of BM-MLCs into the OIR retinas and increased the avascular area and preretinal neovascular tufts. A very strong significant correlation was found between the area of the preretinal neovascular tufts and the avascular area, regardless of the extent of BM-MLC infiltration into the OIR retinas. Additional treatment with VEGF-A-neutralizing Ab showed that the MIP-1β-regulated pathological NV strongly depended on VEGF-A, which was probably secreted by the hypoxic avascular retinas. These results indicate that MIP-1β is involved in the recruitment of BM-MLCs, which have a significant role in the physiological revascularization of hypoxic avascular retinas. Overall, these findings indicate that the MIP-1β induction of BM-MLCs might possibly be used to promote intraretinal revascularization and thus prevent the abnormal NV in ischemic vision-threatening retinal diseases.

医学系学府_医学

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各種コード

  • NII論文ID(NAID)
    500000558588
  • NII著者ID(NRID)
    • 8000000560783
  • DOI(JaLC)
  • 本文言語コード
    • eng
  • NDL書誌ID
    • 023802357
  • データ提供元
    • 機関リポジトリ
    • NDL ONLINE
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