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Co-culture of osteocytes and neurons on a unique patterned surface

机译:在独特的图案表面上共培养骨细胞和神经元

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摘要

Neural and skeletal communication is essential for the maintenance of bone mass and transmission of pain, yet the mechanism(s) of signal transduction between these tissues is unknown. The authors established a novel system to co-culture murine long bone osteocyte-like cells (MLO-Y4) and primary murine dorsal root ganglia (DRG) neurons. Assessment of morphology and maturation marker expression on perlecan domain IV peptide (PlnDIV) and collagen type-1 (Col1) demonstrated that PlnDIV was an optimal matrix for MLO-Y4 culture. A novel matrix-specificity competition assay was developed to expose these cells to several extracellular matrix proteins such as PlnDIV, Col1, and laminin (Ln). The competition assay showed that approximately 70% of MLOY4 cells preferred either PlnDIV or Col1 to Ln. To co-culture MLO-Y4 and DRG, we developed patterned surfaces using micro-contact printing to create 40 μm × 1 cm alternating stripes of PlnDIV and Ln or PlnDIV and Col1. Co-culture on PlnDIV/Ln surfaces demonstrated that these matrix molecules provided unique cues for each cell type, with MLO-Y4 preferentially attaching to the PlnDIV lanes and DRG neurons to the Ln lanes. Approximately 80% of DRG were localized to Ln. Cellular processes from MLO-Y4 were closely associated with axonal extensions of DRG neurons. Approximately 57% of neuronal processes were in close proximity to nearby MLO-Y4 cells at the PlnDIV-Ln interface. The surfaces in this new assay provided a unique model system with which to study the communication between osteocyte-like cells and neurons in an in vitro environment.
机译:神经和骨骼通讯对于维持骨量和疼痛传递至关重要,但是这些组织之间的信号转导机制尚不清楚。作者建立了一种将鼠类长骨骨细胞样细胞(MLO-Y4)和原代鼠背根神经节(DRG)神经元共培养的新系统。对Perlecan域IV肽(PlnDIV)和1型胶原(Col1)的形态和成熟标志物表达的评估表明,PlnDIV是MLO-Y4培养的最佳基质。开发了一种新颖的基质特异性竞争测定法,以将这些细胞暴露于几种细胞外基质蛋白,如PlnDIV,Col1和层粘连蛋白(Ln)。竞争分析表明,大约70%的MLOY4细胞更喜欢PlnDIV或Col1而不是Ln。为了共培养MLO-Y4和DRG,我们使用微接触印刷开发了带图案的表面,以创建40μm×1 cm的PlnDIV和Ln或PlnDIV和Col1交替的条纹。在PlnDIV / Ln表面共培养表明,这些基质分子为每种细胞类型提供了独特的线索,其中MLO-Y4优先附着于PlnDIV通道,DRG神经元附着于Ln通道。大约80%的DRG位于Ln。 MLO-Y4的细胞过程与DRG神经元的轴突延伸密切相关。大约57%的神经元过程在PlnDIV-Ln界面处紧邻附近的MLO-Y4细胞。这种新测定法中的表面提供了一个独特的模型系统,可用于研究体外环境中骨细胞样细胞与神经元之间的通讯。

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