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3D 生物打印鼠大脑皮层星形胶质细胞用于工程化类神经组织。

3D Bioprinting of Murine Cortical Astrocytes for Engineering Neural-Like Tissue.

机构信息

Department of Biochemistry, Escola Paulista de Medicina, Universidade Federal de São Paulo;

Department of Biochemistry, Escola Paulista de Medicina, Universidade Federal de São Paulo.

出版信息

J Vis Exp. 2021 Jul 16(173). doi: 10.3791/62691.

Abstract

Astrocytes are glial cells with an essential role in the central nervous system (CNS), including neuronal support and functionality. These cells also respond to neural injuries and act to protect the tissue from degenerative events. In vitro studies of astrocytes' functionality are important to elucidate the mechanisms involved in such events and contribute to developing therapies to treat neurological disorders. This protocol describes a method to biofabricate a neural-like tissue structure rich in astrocytes by 3D bioprinting astrocytes-laden bioink. An extrusion-based 3D bioprinter was used in this work, and astrocytes were extracted from C57Bl/6 mice pups' brain cortices. The bioink was prepared by mixing cortical astrocytes from up to passage 3 to a biomaterial solution composed of gelatin, gelatin-methacryloyl (GelMA), and fibrinogen, supplemented with laminin, which presented optimal bioprinting conditions. The 3D bioprinting conditions minimized cell stress, contributing to the high viability of the astrocytes during the process, in which 74.08% ± 1.33% of cells were viable right after bioprinting. After 1 week of incubation, the viability of astrocytes significantly increased to 83.54% ± 3.00%, indicating that the 3D construct represents a suitable microenvironment for cell growth. The biomaterial composition allowed cell attachment and stimulated astrocytic behavior, with cells expressing the specific astrocytes marker glial fibrillary acidic protein (GFAP) and possessing typical astrocytic morphology. This reproducible protocol provides a valuable method to biofabricate 3D neural-like tissue rich in astrocytes that resembles cells' native microenvironment, useful to researchers that aim to understand astrocytes' functionality and their relation to the mechanisms involved in neurological diseases.

摘要

星形胶质细胞是中枢神经系统(CNS)中具有重要作用的神经胶质细胞,包括神经元的支持和功能。这些细胞还对神经损伤作出反应,并保护组织免受退行性事件的影响。体外研究星形胶质细胞的功能对于阐明涉及这些事件的机制以及开发治疗神经疾病的疗法非常重要。本协议描述了一种通过 3D 生物打印富含星形胶质细胞的神经样组织结构的方法,该方法使用含有星形胶质细胞的生物墨水进行 3D 生物打印。本工作中使用了基于挤出的 3D 生物打印机,并从 C57Bl/6 幼鼠的大脑皮质中提取星形胶质细胞。生物墨水是通过将皮质星形胶质细胞(传代 3 代以内)与明胶、明胶甲基丙烯酰(GelMA)和纤维蛋白原的生物材料溶液混合制成,补充层粘连蛋白,以获得最佳的生物打印条件。3D 生物打印条件将细胞应激降至最低,有助于在生物打印过程中保持星形胶质细胞的高活力,其中生物打印后有 74.08%±1.33%的细胞具有活力。培养 1 周后,星形胶质细胞的活力显著增加到 83.54%±3.00%,表明 3D 构建物代表了适合细胞生长的微环境。生物材料的组成允许细胞附着并刺激星形胶质细胞的行为,细胞表达特定的星形胶质细胞标志物胶质纤维酸性蛋白(GFAP),并具有典型的星形胶质细胞形态。该可重复的方案提供了一种有价值的方法来生物打印富含星形胶质细胞的 3D 神经样组织,其类似于细胞的天然微环境,这对于旨在了解星形胶质细胞功能及其与神经疾病相关机制的研究人员非常有用。

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