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Imaging activity in astrocytes and neurons with genetically encoded calcium indicators following in utero electroporation

机译:子宫电穿孔后星形胶质细胞和神经元具有遗传钙指示剂的成像活性

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摘要

Complex interactions between networks of astrocytes and neurons are beginning to be appreciated, but remain poorly understood. Transgenic mice expressing fluorescent protein reporters of cellular activity, such as the GCaMP family of genetically encoded calcium indicators (GECIs), have been used to explore network behavior. However, in some cases, it may be desirable to use long-established rat models that closely mimic particular aspects of human conditions such as Parkinson's disease and the development of epilepsy following status epilepticus. Methods for expressing reporter proteins in the rat brain are relatively limited. Transgenic rat technologies exist but are fairly immature. Viral-mediated expression is robust but unstable, requires invasive injections, and only works well for fairly small genes (<5 kb). In utero electroporation (IUE) offers a valuable alternative. IUE is a proven method for transfecting populations of astrocytes and neurons in the rat brain without the strict limitations on transgene size. We built a toolset of IUE plasmids carrying GCaMP variants 3, 6s, or 6f driven by CAG and targeted to the cytosol or the plasma membrane. Because low baseline fluorescence of GCaMP can hinder identification of transfected cells, we included the option of co-expressing a cytosolic tdTomato protein. A binary system consisting of a plasmid carrying a piggyBac inverted terminal repeat (ITR)-flanked CAG-GCaMP-IRES-tdTomato cassette and a separate plasmid encoding for expression of piggyBac transposase was employed to stably express GCaMP and tdTomato. The plasmids were co-electroporated on embryonic days 13.5–14.5 and astrocytic and neuronal activity was subsequently imaged in acute or cultured brain slices prepared from the cortex or hippocampus. Large spontaneous transients were detected in slices obtained from rats of varying ages up to 127 days. In this report, we demonstrate the utility of this toolset for interrogating astrocytic and neuronal activity in the rat brain.
机译:星形胶质细胞和神经元网络之间的复杂相互作用已开始被人们所认识,但仍知之甚少。表达细胞活性荧光蛋白报告基因的转基因小鼠,例如遗传编码钙指示剂(GECI)的GCaMP系列,已被用于探索网络行为。但是,在某些情况下,可能需要使用建立良好的大鼠模型来密切模仿人类状况的特定方面,例如帕金森氏病和癫痫持续状态后癫痫的发展。在大鼠脑中表达报道蛋白的方法相对有限。存在转基因大鼠技术,但还很不成熟。病毒介导的表达稳定但不稳定,需要侵入性注射,并且仅对相当小的基因(<5 kb)有效。子宫内电穿孔(IUE)提供了一种有价值的替代方法。 IUE是一种转染大鼠脑中星形胶质细胞和神经元群体的成熟方法,对转基因大小没有严格限制。我们建立了一个IUE质粒的工具集,该质粒携带由CAG驱动并靶向细胞质或质膜的GCaMP变体3、6s或6f。由于低水平的GCaMP基线荧光会阻碍转染细胞的鉴定,因此我们选择了共表达胞质tdTomato蛋白的选项。使用由携带带有piggyBac反向末端重复(ITR)侧翼的CAG-GCaMP-IRES-tdTomato盒的质粒和编码该piggyBac转座酶表达的单独质粒组成的双元系统稳定表达GCaMP和tdTomato。质粒在胚胎第13.5-14.5天共电穿孔,随后在由皮层或海马制成的急性或培养的脑切片中对星形胶质细胞和神经元活性进行成像。在从长达127天的不同年龄的大鼠获得的切片中检测到大的自发瞬时现象。在此报告中,我们证明了此工具集可用于询问大鼠大脑中的星形细胞和神经元活动。

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