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阿立哌唑,一种非典型抗精神病药物,通过增加超氧化物歧化酶来改善小鼠齿状回神经母细胞树突的成熟和复杂性。

Aripiprazole, an atypical antipsychotic drug, improves maturation and complexity of neuroblast dendrites in the mouse dentate gyrus via increasing superoxide dismutases.

机构信息

Department of Physiology, Institute of Neurodegeneration and Neuroregeneration, College of Medicine, Hallym University, Chuncheon, 200-702, South Korea.

出版信息

Neurochem Res. 2013 Sep;38(9):1980-8. doi: 10.1007/s11064-013-1104-2. Epub 2013 Jul 9.

Abstract

Apripiprazole (APZ) is well known as an atypical antipsychotic and antidepressant. In the present study, we investigated effects of APZ on cell proliferation and neuronal differentiation in the dentate gyrus (DG) of the adolescent mouse using BruU, Ki-67 and doublecortin (DCX) immunohistochemistry. BruU, Ki-67 and DCX-positive (+) cells were easily detected in the subgranular zone of the DG in the vehicle- and APZ-treated group. We found that in the 8 mg/kg APZ-treated group numbers of Ki-67(+), DCX(+) and BrdU(+)/DCX(+) cells were significantly increased compared with those in the vehicle-treated group. We also found that maturation and complexity of DCX(+) dendrites in the 8 mg/kg APZ-treated group was well improved compared with those in the vehicle-treated group. In addition, markedly decreased lipid peroxidation and increased superoxide dismutase 2 (SOD2) level were observed in the DG of the 8 mg/kg APZ-treated group. Our present findings indicate that APZ can enhance cell proliferation and neuroblast differentiation, particularly maturation and complexity of neuroblast dendrites, in the DG via decreasing lipid peroxidation and increasing SOD2 level.

摘要

阿立哌唑(APZ)是一种众所周知的非典型抗精神病药和抗抑郁药。在本研究中,我们通过 BrU、Ki-67 和双皮质素(DCX)免疫组织化学研究了 APZ 对青春期小鼠齿状回(DG)细胞增殖和神经元分化的影响。在载体和 APZ 处理组中,DG 的颗粒下区很容易检测到 BrU、Ki-67 和 DCX 阳性(+)细胞。我们发现,与载体处理组相比,8mg/kg APZ 处理组的 Ki-67(+)、DCX(+)和 BrdU(+)/DCX(+)细胞数量明显增加。我们还发现,与载体处理组相比,8mg/kg APZ 处理组的 DCX(+)树突的成熟度和复杂度得到了很好的改善。此外,在 8mg/kg APZ 处理组的 DG 中观察到脂质过氧化明显减少,超氧化物歧化酶 2(SOD2)水平增加。我们的研究结果表明,APZ 可通过降低脂质过氧化和增加 SOD2 水平,增强 DG 中的细胞增殖和神经母细胞分化,特别是神经母细胞树突的成熟和复杂度。

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