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高粘性甲基纤维素培养基中人类星形胶质细胞球状体的快速稳定形成方法及其功能优势

Rapid and Stable Formation Method of Human Astrocyte Spheroid in a High Viscous Methylcellulose Medium and Its Functional Advantages.

作者信息

Tao Fumiya, Kitamura Keita, Hanada Sanshiro, Sugimoto Kazuyuki, Furihata Tomomi, Kojima Nobuhiko

机构信息

Department of Life and Environmental System Science, Graduate School of Nanobioscience, Yokohama City University, 22-2 Seto, Kanazawa-ku, Yokohama, Kanagawa 236-0027, Japan.

Laboratory of Clinical Pharmacy and Experimental Therapeutics, School of Pharmacy, Tokyo University of Pharmacy and Life Sciences, 1432-1 Horinouchi, Hachioji, Tokyo 192-0355, Japan.

出版信息

Bioengineering (Basel). 2023 Mar 11;10(3):349. doi: 10.3390/bioengineering10030349.

Abstract

Astrocytes, a type of glial cell in the brain, are thought to be functionally and morphologically diverse cells that regulate brain homeostasis. Cell immortalization is a promising technique for the propagation of primary human astrocytes. The immortalized cells retain their astrocytic marker mRNA expression at lower levels than the primary cells. Therefore, improvement of the differentiation status is required. The use of a 3D formation technique to mimic structural tissue is a good strategy for reflecting physiological cell-cell interactions. Previously, we developed a spheroid formation method using highly viscous methyl cellulose (MC) medium. In this study, we applied this formation method to the well-established immortalized human astrocyte cell line HASTR/ci35. Stable HASTR/ci35 spheroids were successfully formed in MC medium, and laminin deposition was detected inside of the spheroids. Their functional markers were enhanced compared to conventional spheroids formed in U-bottom plates. The inflammatory response was moderately sensitive, and the ability to support neurite growth was confirmed. The HASTR/ci35 spheroid in the MC medium demonstrated the differentiation phenotype and could serve as a potent in vitro model for matured astrocytes.

摘要

星形胶质细胞是大脑中的一种神经胶质细胞,被认为是功能和形态多样的细胞,可调节大脑的内环境稳定。细胞永生化是原代人星形胶质细胞增殖的一种有前景的技术。永生化细胞保留其星形胶质细胞标志物mRNA的表达水平低于原代细胞。因此,需要改善分化状态。使用三维形成技术模拟结构组织是反映生理细胞间相互作用的良好策略。此前,我们开发了一种使用高粘性甲基纤维素(MC)培养基的球体形成方法。在本研究中,我们将这种形成方法应用于成熟的永生化人星形胶质细胞系HASTR/ci35。在MC培养基中成功形成了稳定的HASTR/ci35球体,并且在球体内检测到层粘连蛋白沉积。与在U型底板中形成的传统球体相比,它们的功能标志物得到了增强。炎症反应具有中度敏感性,并证实了其支持神经突生长的能力。MC培养基中的HASTR/ci35球体表现出分化表型,可作为成熟星形胶质细胞的有效体外模型。

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