Ahrens Lucas, Tanaka Simon, Vonwil Daniel, Christensen Jon, Iber Dagmar, Shastri V Prasad
Institute for Macromolecular Chemistry, Hermann Staudinger Haus, University of Freiburg, Stefan-Meier-Str. 31, 79104, Freiburg, Germany.
BIOSS Centre for Signalling Studies, University of Freiburg, Schänzlestraße 18, 79104, Freiburg, Germany.
Adv Biosyst. 2019 Jan;3(1):e1800237. doi: 10.1002/adbi.201800237. Epub 2018 Nov 14.
Soluble signal gradients play an important role in organ patterning, cell migration, and differentiation. Currently, signal gradients in 2D cell culture are realized using microfluidics and here cells are exposed to high and nonphysiological shear stress. Tissue morphogenesis (organogenesis) however occurs in 3D and therefore there is a need for simple and practical systems to impose gradients to cells dispersed in 3D matrix. Herein, a 3D gradient generator based on passive diffusion elements that recapitulates interstitial flow and is capable of imposing predictable gradients over long length scales (6 mm) lasting up to 48 h to cells dispersed in a hydrogel environment is reported. Using recombinant human WNT3A (rhWNT3A), the spatiotemporal activation of the canonical WNT pathway in human epithelial kidney cells and human mesenchymal stems cells expressing a green fluorescence protein reporter on a transcription factor/lymphoid enhancer-binding factor (TCF/LEF) promoter is demonstrated. By refining computation models based on experimental findings, the diffusion coefficient of rhWNT3A in presence of human cells in 3D is determined. Furthermore, the formation of rhBMP4 gradients is visualized using immunohistochemistry by staining for phospho-SMAD1/5, the downstream targets of the bone morphogenetic protein (BMP) pathway. The simplicity of the gradient generator is expected to spur its adoption in studying developmental biology paradigms in vitro.
可溶性信号梯度在器官模式形成、细胞迁移和分化中发挥着重要作用。目前,二维细胞培养中的信号梯度是通过微流体技术实现的,在此过程中细胞会受到高且非生理的剪切应力。然而,组织形态发生(器官发生)发生在三维空间中,因此需要简单实用的系统来为分散在三维基质中的细胞施加梯度。在此,报道了一种基于被动扩散元件的三维梯度发生器,它能够模拟间质流动,并能够在长达6毫米的长尺度上对分散在水凝胶环境中的细胞施加可预测的梯度,持续长达48小时。使用重组人WNT3A(rhWNT3A),证明了在转录因子/淋巴增强因子结合因子(TCF/LEF)启动子上表达绿色荧光蛋白报告基因的人上皮肾细胞和人间充质干细胞中经典WNT信号通路的时空激活。通过根据实验结果优化计算模型,确定了rhWNT3A在三维空间中存在人细胞时的扩散系数。此外,通过对骨形态发生蛋白(BMP)信号通路的下游靶点磷酸化SMAD1/5进行染色,使用免疫组织化学方法观察了rhBMP4梯度的形成。这种梯度发生器操作简单,有望推动其在体外发育生物学范式研究中的应用。