首页> 外文期刊>Journal of Neuroscience Methods >Characterization of GABA(A) receptors expressed in glial cell membranes of adult mouse neocortex using a Xenopus oocyte microtransplantation expression system.
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Characterization of GABA(A) receptors expressed in glial cell membranes of adult mouse neocortex using a Xenopus oocyte microtransplantation expression system.

机译:使用非洲爪蟾卵母细胞微移植表达系统表征成年小鼠新皮层神经胶质细胞膜中表达的GABA(A)受体。

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Cell membranes isolated from nervous tissue can be easily injected into Xenopus oocytes, thereby effectively "microtransplanting" functional neurotransmitter receptors. This technique therefore allows a direct functional characterization of the original membrane receptor/ion channel proteins and the associated molecules while still embedded in their natural lipid environment. Cell membranes will contain components from different types of cells, i.e. neurons and glial cells, expressing their own receptors, with possibly different properties. To study the receptor properties of a single cell type, we injected oocytes with membranes isolated only from glia (gliosomes) of adult mouse neocortex and we focused our work on GABA(A) receptors incorporated in the oocyte cell membrane. We found that GABA(A)-activated currents allowed a good biophysical and pharmacological characterization of glial GABA(A) receptors. Therefore, the microtransplantation of gliosomes into oocytes can represent a good model to study the electrical and pharmacological properties of adult glial cells under different physiological and pathological conditions. Moreover, since gliosomes can be isolated from frozen tissues, this approach can be extended to post-mortem human tissues.
机译:从神经组织分离出的细胞膜可以轻松注入非洲爪蟾卵母细胞,从而有效地“微移植”功能性神经递质受体。因此,该技术可以对原始的膜受体/离子通道蛋白和相关分子进行直接功能表征,同时仍嵌入其天然脂质环境中。细胞膜将包含来自不同类型细胞(即神经元和神经胶质细胞)的成分,它们表达其自身的受体,并可能具有不同的特性。为了研究单一细胞类型的受体特性,我们向卵母细胞注射了仅从成年小鼠新皮层的神经胶质(胶质体)中分离的膜,并且我们的工作集中在掺入卵母细胞膜的GABA(A)受体上。我们发现,GABA(A)激活电流允许神经胶质GABA(A)受体良好的生物物理和药理学表征。因此,将胶质体微移植到卵母细胞中可以代表研究在不同生理和病理条件下成年胶质细胞的电学和药理学特性的良好模型。此外,由于可以从冷冻组织中分离胶质体,因此该方法可以扩展到验尸后的人体组织。

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