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Activation of Type 1 Cannabinoid Receptor (CB1R) Promotes Neurogenesis in Murine Subventricular Zone Cell Cultures

机译:1型大麻素受体(CB1R)的激活促进小鼠脑室下区细胞培养物中的神经发生。

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摘要

The endocannabinoid system has been implicated in the modulation of adult neurogenesis. Here, we describe the effect of type 1 cannabinoid receptor (CB1R) activation on self-renewal, proliferation and neuronal differentiation in mouse neonatal subventricular zone (SVZ) stem/progenitor cell cultures. Expression of CB1R was detected in SVZ-derived immature cells (Nestin-positive), neurons and astrocytes. Stimulation of the CB1R by (R)-(+)-Methanandamide (R-m-AEA) increased self-renewal of SVZ cells, as assessed by counting the number of secondary neurospheres and the number of Sox2+/+ cell pairs, an effect blocked by Notch pathway inhibition. Moreover, R-m-AEA treatment for 48 h, increased proliferation as assessed by BrdU incorporation assay, an effect mediated by activation of MAPK-ERK and AKT pathways. Surprisingly, stimulation of CB1R by R-m-AEA also promoted neuronal differentiation (without affecting glial differentiation), at 7 days, as shown by counting the number of NeuN-positive neurons in the cultures. Moreover, by monitoring intracellular calcium concentrations ([Ca2+]i) in single cells following KCl and histamine stimuli, a method that allows the functional evaluation of neuronal differentiation, we observed an increase in neuronal-like cells. This proneurogenic effect was blocked when SVZ cells were co-incubated with R-m-AEA and the CB1R antagonist AM 251, for 7 days, thus indicating that this effect involves CB1R activation. In accordance with an effect on neuronal differentiation and maturation, R-m-AEA also increased neurite growth, as evaluated by quantifying and measuring the number of MAP2-positive processes. Taken together, these results demonstrate that CB1R activation induces proliferation, self-renewal and neuronal differentiation from mouse neonatal SVZ cell cultures.
机译:内源性大麻素系统与成人神经发生的调节有关。在这里,我们描述了1型大麻素受体(CB1R)激活对小鼠新生室下区(SVZ)干/祖细胞培养物中自我更新,增殖和神经元分化的影响。在源自SVZ的未成熟细胞(Nestin阳性),神经元和星形胶质细胞中检测到CB1R的表达。 (Rm-(+)-Methanandamide(Rm-AEA)对CB1R的刺激增加了SVZ细胞的自我更新,这是通过计算次级神经球的数量和Sox2 + / +细胞对的数量来评估的,这种作用被缺口途径抑制。此外,R-m-AEA治疗48小时,通过BrdU掺入法评估增殖增加,这是通过激活MAPK-ERK和AKT途径介导的。出人意料的是,R-m-AEA刺激CB1R还在第7天促进了神经元分化(不影响神经胶质分化),如通过计数培养物中NeuN阳性神经元的数量所显示的。此外,通过监测KCl和组胺刺激后单细胞的细胞内钙浓度([Ca 2 + ] i),这种方法可以评估神经元分化的功能,我们观察到神经元样物质的增加细胞。当将SVZ细胞与R-m-AEA和CB1R拮抗剂AM 251共温育7天时,这种促神经生成作用被阻断,因此表明该作用涉及CB1R激活。根据对神经元分化和成熟的影响,R-m-AEA也增加了神经突的生长,这是通过量化和测量MAP2阳性过程的数量来评估的。综上所述,这些结果表明,CB1R激活可诱导小鼠新生SVZ细胞培养物中的增殖,自我更新和神经元分化。

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