细胞单层/球状共培养在选择性聚多巴胺涂层介导的PDMS井板上。

ty10086 提交于 周三, 08/25/2021 - 16:37
文章英文标题
Monolayer/spheroid co-culture of cells on a PDMS well plate mediated by selective polydopamine coating.
正文
在这里,我们选择性地将聚多巴胺( PDA )涂复在聚二甲基硅氧烷( PDMS )孔板上,使细胞以半分离的方式共培养单层和球体。在涂复过程中,由于PDMS的强疏水性阻止了PDA溶液进入凹面结构,PDA溶液与PDMS井板的接触仅限于外平面。这导致了PDA的空间定义涂层。通过测量水接触角、观察液-气界面以及PDA特有的金属化,证明了PDA涂层的成功。该平台提供了同时培养单层和球状细胞的单型或异型细胞。对于单型培养,将间充质干细胞( mesenchymal stem cells,MSCs )接种于孔板上,同时产生单层和球状。在异种培养中,首先将MSCs接种到培养孔中,形成球体。然后,将人脐静脉内皮细胞( HUVECs )加入到孔板的平坦表面,允许其形成单层。显微镜观察和荧光染色证实,在单型和异型培养中,单层和球状细胞之间存在明显的分离。这种新的模型可以为构建一个紧密模拟生理环境的平台铺平道路,用于研究适用于药物筛选的细胞-细胞相互作用和通信。
文章内容(英文)
Here, we have selectively coated polydopamine (PDA) onto a polydimethylsiloxane (PDMS) well plate to enable the cell co-culture of a monolayer and spheroids in a semi-segregated manner. During the coating process, the contact between the PDA solution and PDMS well plate was limited to the outer flat surface because the strong hydrophobicity of PDMS prevented the access of the PDA solution into the concave structures. This resulted in a spatially-defined coating of PDA. The success of PDA coating was evidenced by measuring the water contact angle, observing the liquid-air interface, and via PDA-specific metallization. This platform provides a simultaneous cell culture in both a monolayer and spheroids employing either monotypic or heterotypic cells. For the monotypic culture, mesenchymal stem cells (MSCs) were seeded over the well plate to concurrently generate the monolayer and spheroids. In the heterotypic culture, MSCs were first seeded into the wells to form spheroids. Then, human umbilical vein endothelial cells (HUVECs) were added over the flat surface of the well plate and allowed to form a monolayer. The microscopic observation and fluorescence-based cell staining confirmed the clear segregation between the monolayer and spheroids in both monotypic and heterotypic cultures. This new model could pave the way for the construction of a platform closely mimicking the physiological environment used to investigate cell-cell interactions and communications applicable for drug screening.
来源出处
Journal|[J]Journal of Materials Chemistry BVolume 8, Issue 44. 2020. PP 10108-10116
DOI
https://doi.org/10.1039/D0TB01589J

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备注说明:

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