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骨髓单核细胞减少大鼠短暂全脑缺血后海马 CA1 层的神经变性。

Bone-marrow mononuclear cells reduce neurodegeneration in hippocampal CA1 layer after transient global ischemia in rats.

机构信息

Instituto de Biofísica Carlos Chagas Filho, Universidade Federal do Rio de Janeiro, Rio de Janeiro, Brazil.

出版信息

Brain Res. 2013 Jul 19;1522:1-11. doi: 10.1016/j.brainres.2013.05.024. Epub 2013 May 28.

Abstract

Global cerebral ischemia (GCI) results in death of the pyramidal neurons in the CA1 layer of the hippocampus. In this study we used the four-vessel occlusion (4VO) model of GCI to investigate a potential neuroprotective role of bone-marrow mononuclear cells (BMMCs) transplantation. BMMCs (3×10(7)) were injected through the carotid artery, 1 or 3 days after ischemia (DAI), and the number of cells undergoing degeneration was investigated in brains at 7 DAI. A significant decrease in the number of dying cells was observed in the treated group, compared to animals treated with saline. Biodistribution of the injected cells (1 or 3 DAI) was investigated by (99m)Technetium labeling of the BMMCs and subsequent image analysis 2h after transplantation. In addition, the presence of CellTrace(™)-labeled BMMCs was investigated in tissue sections of the hippocampal area of these transplanted animals. BMMCs treatment significantly reduced the number of FJ-C positive cells in the hippocampal CA1 layer at 7 DAI. We also observed a decrease in the number of activated microglia/macrophage (ED1-positive cells) in the BMMCs-treated group compared with the untreated group. Our data show that BMMCs are able to modulate the microglial response and reduce neurodegeneration in the CA1 layer.

摘要

全脑缺血(GCI)导致海马 CA1 层的锥体神经元死亡。在这项研究中,我们使用四血管闭塞(4VO)GCI 模型来研究骨髓单核细胞(BMMC)移植的潜在神经保护作用。BMMC(3×10(7))在缺血后 1 或 3 天(DAI)通过颈动脉注射,并在 7 DAI 时研究大脑中变性细胞的数量。与用生理盐水治疗的动物相比,在治疗组中观察到死亡细胞数量明显减少。通过 BMMC 的(99m)锝标记和随后在移植后 2 小时进行的图像分析,研究了注射细胞的(1 或 3 DAI)的生物分布。此外,还在这些移植动物海马区的组织切片中研究了 CellTrace(™)标记的 BMMC 的存在。BMMC 治疗可显著减少 7 DAI 时海马 CA1 层中 FJ-C 阳性细胞的数量。与未治疗组相比,我们还观察到 BMMC 治疗组中活化的小胶质细胞/巨噬细胞(ED1 阳性细胞)数量减少。我们的数据表明,BMMC 能够调节小胶质细胞反应并减少 CA1 层中的神经退行性变。

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