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成年虹鳟鱼视神经损伤后视神经和脑整合中心的细胞增殖与凋亡

Cell proliferation and apoptosis in optic nerve and brain integration centers of adult trout Oncorhynchus mykiss after optic nerve injury.

作者信息

Pushchina Evgeniya V, Shukla Sachin, Varaksin Anatoly A, Obukhov Dmitry K

机构信息

Laboratory of Cytophysiology, A.V. Zhirmunsky Institute of Marine Biology Far Eastern Branch of Russian Academy of Sciences, Vladivostok, Russia.

Prof. Brien Holden Eye Research Centre, L.V. Prasad Eye Institute, Hyderabad, India.

出版信息

Neural Regen Res. 2016 Apr;11(4):578-90. doi: 10.4103/1673-5374.180742.

Abstract

Fishes have remarkable ability to effectively rebuild the structure of nerve cells and nerve fibers after central nervous system injury. However, the underlying mechanism is poorly understood. In order to address this issue, we investigated the proliferation and apoptosis of cells in contralateral and ipsilateral optic nerves, after stab wound injury to the eye of an adult trout Oncorhynchus mykiss. Heterogenous population of proliferating cells was investigated at 1 week after injury. TUNEL labeling gave a qualitative and quantitative assessment of apoptosis in the cells of optic nerve of trout 2 days after injury. After optic nerve injury, apoptotic response was investigated, and mass patterns of cell migration were found. The maximal concentration of apoptotic bodies was detected in the areas of mass clumps of cells. It is probably indicative of massive cell death in the area of high phagocytic activity of macrophages/microglia. At 1 week after optic nerve injury, we observed nerve cell proliferation in the trout brain integration centers: the cerebellum and the optic tectum. In the optic tectum, proliferating cell nuclear antigen (PCNA)-immunopositive radial glia-like cells were identified. Proliferative activity of nerve cells was detected in the dorsal proliferative (matrix) area of the cerebellum and in parenchymal cells of the molecular and granular layers whereas local clusters of undifferentiated cells which formed neurogenic niches were observed in both the optic tectum and cerebellum after optic nerve injury. In vitro analysis of brain cells of trout showed that suspension cells compared with monolayer cells retain higher proliferative activity, as evidenced by PCNA immunolabeling. Phase contrast observation showed mitosis in individual cells and the formation of neurospheres which gradually increased during 1-4 days of culture. The present findings suggest that trout can be used as a novel model for studying neuronal regeneration.

摘要

鱼类在中枢神经系统损伤后具有有效重建神经细胞和神经纤维结构的显著能力。然而,其潜在机制尚不清楚。为了解决这个问题,我们对成年虹鳟(Oncorhynchus mykiss)眼部刺伤后对侧和同侧视神经中的细胞增殖和凋亡进行了研究。在损伤后1周对增殖细胞的异质群体进行了研究。TUNEL标记对损伤后2天虹鳟视神经细胞中的凋亡进行了定性和定量评估。视神经损伤后,研究了凋亡反应,并发现了细胞迁移的大量模式。在细胞大量聚集的区域检测到凋亡小体的最大浓度。这可能表明在巨噬细胞/小胶质细胞吞噬活性高的区域存在大量细胞死亡。在视神经损伤后1周,我们观察到虹鳟脑整合中心(小脑和视顶盖)中的神经细胞增殖。在视顶盖中,鉴定出增殖细胞核抗原(PCNA)免疫阳性的放射状胶质样细胞。在小脑的背侧增殖(基质)区域以及分子层和颗粒层的实质细胞中检测到神经细胞的增殖活性,而在视神经损伤后的视顶盖和小脑中均观察到形成神经发生龛的未分化细胞局部簇。对虹鳟脑细胞的体外分析表明,与单层细胞相比,悬浮细胞保留了更高的增殖活性,PCNA免疫标记证明了这一点。相差显微镜观察显示单个细胞中有有丝分裂以及神经球的形成,在培养的1-4天中神经球逐渐增大。目前的研究结果表明,虹鳟可作为研究神经元再生的新型模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9fe4/4870914/b7fd74a1ad95/NRR-11-578-g001.jpg

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