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三维培养中静息和腺病毒诱导的反应性星形胶质细胞的功能特性

Functional Characterization of Resting and Adenovirus-Induced Reactive Astrocytes in Three-Dimensional Culture.

作者信息

Woo Junsung, Im Sun-Kyoung, Chun Heejung, Jung Soon-Young, Oh Soo-Jin, Choi Nakwon, Lee C Justin, Hur Eun-Mi

机构信息

Center for Neuroscience, Korea Institute of Science and Technology (KIST), Seoul 02792, Korea.

Functional Connectomics, Korea Institute of Science and Technology (KIST), Seoul 02792, Korea.

出版信息

Exp Neurobiol. 2017 Jun;26(3):158-167. doi: 10.5607/en.2017.26.3.158. Epub 2017 Jun 26.

Abstract

Brain is a rich environment where neurons and glia interact with neighboring cells as well as extracellular matrix in three-dimensional (3D) space. Astrocytes, which are the most abundant cells in the mammalian brain, reside in 3D space and extend highly branched processes that form microdomains and contact synapses. It has been suggested that astrocytes cultured in 3D might be maintained in a less reactive state as compared to those growing in a traditional, two-dimensional (2D) monolayer culture. However, the functional characterization of the astrocytes in 3D culture has been lacking. Here we cocultured neurons and astrocytes in 3D and examined the morphological, molecular biological, and electrophysiological properties of the 3D-cultured hippocampal astrocytes. In our 3D neuron-astrocyte coculture, astrocytes showed a typical morphology of a small soma with many branches and exhibited a unique membrane property of passive conductance, more closely resembling their native counterparts. Moreover, we also induced reactive astrocytosis in culture by infecting with high-titer adenovirus to mimic pathophysiological conditions . Adenoviral infection induced morphological changes in astrocytes, increased passive conductance, and increased GABA content as well as tonic GABA release, which are characteristics of reactive gliosis. Together, our study presents a powerful model resembling both physiological and pathophysiological conditions , and thereby provides a versatile experimental tool for studying various neurological diseases that accompany reactive astrocytes.

摘要

大脑是一个丰富的环境,其中神经元和神经胶质细胞在三维(3D)空间中与邻近细胞以及细胞外基质相互作用。星形胶质细胞是哺乳动物大脑中最丰富的细胞,存在于三维空间中,并延伸出高度分支的突起,形成微结构域并接触突触。有人提出,与在传统的二维(2D)单层培养中生长的星形胶质细胞相比,在三维环境中培养的星形胶质细胞可能保持较低的反应性状态。然而,三维培养中星形胶质细胞的功能特性一直缺乏研究。在此,我们将神经元和星形胶质细胞进行三维共培养,并研究了三维培养的海马星形胶质细胞的形态、分子生物学和电生理特性。在我们的三维神经元-星形胶质细胞共培养中,星形胶质细胞呈现出典型的形态,即小细胞体和许多分支,并表现出独特的被动电导膜特性,更类似于它们的天然对应物。此外,我们还通过感染高滴度腺病毒在培养中诱导反应性星形胶质细胞增生,以模拟病理生理条件。腺病毒感染诱导星形胶质细胞形态变化、被动电导增加、GABA含量增加以及GABA的张力性释放增加,这些都是反应性胶质增生的特征。总之,我们的研究提出了一个强大的模型,既类似于生理条件也类似于病理生理条件,从而为研究伴随反应性星形胶质细胞的各种神经疾病提供了一个通用的实验工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1df3/5491584/be2e1f70a328/en-26-158-g001.jpg

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