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首页> 外文期刊>Seizure: the journal of the British Epilepsy Association >Prevention of seizures and reorganization of hippocampal functions by transplantation of bone marrow cells in the acute phase of experimental epilepsy.
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Prevention of seizures and reorganization of hippocampal functions by transplantation of bone marrow cells in the acute phase of experimental epilepsy.

机译:在实验性癫痫的急性期通过移植骨髓细胞来预防癫痫发作和海马功能的重组。

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In this study, we investigated the therapeutic potential of bone marrow mononuclear cells (BMCs) in a model of epilepsy induced by pilocarpine in rats. BMCs obtained from green fluorescent protein (GFP) transgenic mice or rats were transplanted intravenously after induction of status epilepticus (SE). Spontaneous recurrent seizures (SRS) were monitored using Racine's seizure severity scale. All of the rats in the saline-treated epileptic control group developed SRS, whereas none of the BMC-treated epileptic animals had seizures in the short term (15 days after transplantation), regardless of the BMC source. Over the long-term chronic phase (120 days after transplantation), only 25% of BMC-treated epileptic animals had seizures, but with a lower frequency and duration compared to the epileptic control group. The density of hippocampal neurons in the brains of animals treated with BMCs was markedly preserved. At hippocampal Schaeffer collateral-CA1 synapses, long-term potentiation was preserved in BMC-transplanted rats compared to epileptic controls. The donor-derived GFP(+) cells were rarely found in the brains of transplanted epileptic rats. In conclusion, treatment with BMCs can prevent the development of chronic seizures, reduce neuronal loss, and influence the reorganization of the hippocampal neuronal network.
机译:在这项研究中,我们调查了毛果芸香碱诱发的大鼠癫痫模型中骨髓单个核细胞(BMC)的治疗潜力。诱导癫痫持续状态(SE)后,将从绿色荧光蛋白(GFP)转基因小鼠或大鼠获得的BMC静脉内移植。使用Racine癫痫发作严重程度量表监测自发性复发性癫痫发作(SRS)。盐水治疗的癫痫对照组的所有大鼠均发展为SRS,而BMC治疗的癫痫动物在短期内(移植后15天)均无癫痫发作,而与BMC的来源无关。在长期慢性阶段(移植后120天),只有25%接受BMC治疗的癫痫动物有癫痫发作,但与癫痫对照组相比,癫痫发作的频率和持续时间较低。用BMC处理的动物大脑中的海马神经元密度得到了显着的保护。与癫痫对照组相比,在海马Schaeffer侧支CA1突触中,长期增强被保留在BMC移植的大鼠中。在移植的癫痫大鼠的大脑中很少发现供体来源的GFP(+)细胞。总之,用BMC治疗可以预防慢性癫痫发作的发展,减少神经元丢失,并影响海马神经元网络的重组。

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