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Neural progenitor cells isolated from the subventricular zone present hemichannel activity and form functional gap junctions with glial cells

机译:从脑室下区分离出的神经祖细胞具有半通道活性,并与神经胶质细胞形成功能性间隙连接

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摘要

The postnatal subventricular zone (SVZ) lining the walls of the lateral ventricles contains neural progenitor cells (NPCs) that generate new olfactory bulb interneurons. Communication via gap junctions between cells in the SVZ is involved in NPC proliferation and in neuroblast migration towards the olfactory bulb. SVZ NPCs can be expanded in vitro in the form of neurospheres that can be used for transplantation purposes after brain injury. We have previously reported that neurosphere-derived NPCs form heterocellular gap junctions with host glial cells when they are implanted after mechanical injury. To analyze functionality of NPC-glial cell gap junctions we performed dye coupling experiments in co-cultures of SVZ NPCs with astrocytes or microglia. Neurosphere-derived cells expressed mRNA for at least the hemichannel/gap junction channel proteins connexin 26 (Cx26), Cx43, Cx45 and pannexin 1 (Panx1). Dye coupling experiments revealed that gap junctional communication occurred among neurosphere cells (incidence of coupling: 100%). Moreover, hemichannel activity was also detected in neurosphere cells as evaluated in time-lapse measurements of ethidium bromide uptake. Heterocellular coupling between NPCs and glial cells was evidenced in co-cultures of neurospheres with astrocytes (incidence of coupling: 91.0 ± 4.7%) or with microglia (incidence of coupling: 71.9 ± 6.7%). Dye coupling in neurospheres and in co-cultures was inhibited by octanol, a gap junction blocker. Altogether, these results suggest the existence of functional hemichannels and gap junction channels in postnatal SVZ neurospheres. In addition, they demonstrate that SVZ-derived NPCs can establish functional gap junctions with astrocytes or microglia. Therefore, cell-cell communication via gap junctions and hemichannels with host glial cells might subserve a role in the functional integration of NPCs after implantation in the damaged brain.
机译:侧脑室壁衬里的产后室下区(SVZ)包含神经祖细胞(NPC),它们会产生新的嗅球中神经元。通过SVZ中的细胞之间的间隙连接进行的通讯涉及NPC增殖和成神经细胞向嗅球的迁移。 SVZ NPC可以神经球的形式在体外扩增,可在脑损伤后用于移植目的。我们以前曾报道过,当神经损伤的NPC植入机械损伤后,它们会与宿主神经胶质细胞形成异源间隙连接。为了分析NPC-神经胶质细胞间隙连接的功能,我们在SVZ NPC与星形胶质细胞或小胶质细胞的共培养物中进行了染料偶联实验。神经球来源的细胞表达至少半通道/间隙连接通道蛋白连接蛋白26(Cx26),Cx43,Cx45和pannexin 1(Panx1)的mRNA。染料偶联实验显示神经球细胞之间发生间隙连接通讯(偶联发生率:100%)。此外,如在溴化乙锭摄取的延时测量中所评估的,在神经球细胞中也检测到半通道活性。 NPC和神经胶质细胞之间的异质细胞偶联在神经球与星形胶质细胞(偶联发生率:91.0±4.7%)或小胶质细胞(偶联发生率:71.9±6.7%)的共培养中得到了证实。神经球和共培养物中的染料偶联被间隙连接阻滞剂辛醇抑制。总之,这些结果表明在出生后的SVZ神经球中存在功能性半通道和间隙连接通道。此外,他们证明了SVZ衍生的NPC可以与星形胶质细胞或小胶质细胞建立功能性间隙连接。因此,通过间隙连接和半通道与宿主神经胶质细胞的细胞间通讯可能在植入受损大脑后在NPC的功能整合中发挥作用。

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