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Growth Differentiation Factor 11 treatment leads to neuronal and vascular improvements in the hippocampus of aged mice

机译:生长分化因子11治疗导致老年小鼠海马的神经元和血管改善

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Aging is the biggest risk factor for several neurodegenerative diseases. Parabiosis experiments have established that old mouse brains are improved by exposure to young mouse blood. Previously, our lab showed that delivery of Growth Differentiation Factor 11 (GDF11) to the bloodstream increases the number of neural stem cells and positively affects vasculature in the subventricular zone of old mice. Our new study demonstrates that GDF11 enhances hippocampal neurogenesis, improves vasculature and increases markers of neuronal activity and plasticity in the hippocampus and cortex of old mice. Our experiments also demonstrate that systemically delivered GDF11, rather than crossing the blood brain barrier, exerts at least some of its effects by acting on brain endothelial cells. Thus, by targeting the cerebral vasculature, GDF11 has a very different mechanism from that of previously studied circulating factors acting to improve central nervous system (CNS) function without entering the CNS.
机译:老化是几种神经变性疾病的最大危险因素。舌苔病实验已经确定通过暴露于幼小小鼠血液来改善老鼠脑。此前,我们的实验室表明,生长分化因子11(GDF11)向血液的递送增加了神经干细胞的数量,并对旧小鼠的子宫内部区域产生积极影响脉管系统。我们的新研究表明,GDF11增强海马神经发生,改善了脉管系统,增加了大鼠和皮层的神经元活性和可塑性的标志物。我们的实验还证明,通过作用于脑内皮细胞来证明系统交付的GDF11,而不是穿越血脑屏障,而不是穿越血脑屏障。因此,通过靶向脑脉管系统,GDF11具有与先前研究的循环因子的机制具有非常不同的机制,该循环因子在不进入CNS的情况下改善中枢神经系统(CNS)功能。

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