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Graphene Oxide Upregulates the Homeostatic Functions of Primary Astrocytes and Modulates Astrocyte-to-Neuron Communication

机译:石墨烯氧化均上调原发性星形胶质细胞的稳态功能,并调节星形胶质细胞到神经元通信

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摘要

Graphene-based materials are the focus of intense research efforts to devise novel theranostic strategies for targeting the central nervous system. In this work, we have investigated the consequences of long-term exposure of primary rat astrocytes to pristine graphene (GR) and graphene oxide (GO) flakes. We demonstrate that GR/GO interfere with a variety of intracellular processes as a result of their internalization through the endolysosomal pathway. Graphene-exposed astrocytes acquire a more differentiated morphological phenotype associated with extensive cytoskeletal rearrangements. Profound functional alterations are induced by GO internalization, including the upregulation of inward-rectifying K+ channels and of Na+-dependent glutamate uptake, which are linked to the astrocyte capacity to control the extracellular homeostasis. Interestingly, GO-pretreated astrocytes promote the functional maturation of cocultured primary neurons by inducing an increase in intrinsic excitability and in the density of GABAergic synapses. The results indicate that graphene nanomaterials profoundly affect astrocyte physiology in vitro with consequences for neuronal network activity. This work supports the view that GO-based materials could be of great interest to address pathologies of the central nervous system associated with astrocyte dysfunctions.
机译:基于石墨烯的材料是强烈的研究努力,为靶向中枢神经系统设计新的治疗策略。在这项工作中,我们研究了原发性大鼠星形胶质细胞的长期暴露于原始石墨烯(GR)和石墨烯(GO)薄片的后果。我们证明,由于它们通过内溶血素途径的内化而介绍了各种细胞内过程。石墨烯暴露的星形胶质细胞获得与广泛的细胞骨骼重排相关的更分化的形态表型。通过去内化引起深远的功能改变,包括向内整流k +通道和Na +依赖性谷氨酸摄取的上调,其与用于控制细胞外稳态的星形胶质细胞能力相关。有趣的是,去预处理的星形胶质细胞通过诱导内在兴奋性和胃肠杆菌突触的密度来促进可携带的原发性神经元的功能成熟。结果表明,石墨烯纳米材料在体外影响星形胶质细胞生理学对神经元网络活性的影响。这项工作支持去基于基于的材料对与星形胶质细胞功能障碍相关的中枢神经系统的病理感兴趣。

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