Alvéole, 68 Boulevard de Port-Royal, Paris, France.
Université de Paris, CEA/INSERM/AP-HP, Institut de Recherche Saint Louis, UMR976, HIPI, CytoMorpho Lab, Hopital Saint Louis, Paris, France.
Methods Mol Biol. 2021;2308:263-278. doi: 10.1007/978-1-0716-1425-9_20.
The bone marrow (BM) is a complex microenvironment in which hematopoietic stem and progenitor cells (HSPCs) interact with multiple cell types that regulate their quiescence, growth, and differentiation. These cells constitute local niches where HSPCs are confined and subjected to specific set of physical and biochemical cues. Endothelial cells forming the walls of blood capillaries have been shown to establish a vascular niche, whereas osteoblasts lying along the bone matrix organize the endosteal niche with distinct and specific impact on HSPC fate. The observation of the interaction of HSPCs with niche cells, and the investigation of its impact on HSPCs behavior in vivo is hindered by the opacity of the bone matrix. Therefore, various experimental strategies have been devised to reconstitute in vitro the interaction of HSPCs with distinct sets of BM-derived cells. In this chapter, we present a method to manufacture a pseudo BM-on-a-chip with separated compartments mimicking the vascular and the endosteal niches. Such a configuration with connected but distant compartments allowed the investigation of the specific contribution of each niche to the regulation of HSPC behavior. We describe the microfabrication of the chip with a maskless photolithography method that allows the iterative improvement of the geometric design of the chip in order to optimize the adaptation of the multicellular architecture to the specific aim of the study. We also describe the loading and culture of the various cell types in each compartment.
骨髓(BM)是一个复杂的微环境,其中造血干细胞和祖细胞(HSPCs)与多种细胞类型相互作用,调节其静止、生长和分化。这些细胞构成了局部龛位,HSPCs 被限制在其中,并受到特定的物理和生化线索的影响。形成血毛细血管壁的内皮细胞已被证明建立了一个血管龛位,而沿着骨基质排列的成骨细胞组织了骨内膜龛位,对 HSPC 命运有独特和特定的影响。观察 HSPCs 与龛位细胞的相互作用,并研究其对 HSPCs 体内行为的影响,受到骨基质不透明性的阻碍。因此,已经设计了各种实验策略来在体外重建 HSPCs 与不同的 BM 来源细胞的相互作用。在本章中,我们提出了一种制造具有分离腔室的伪 BM-on-a-chip 的方法,模拟血管和骨内膜龛位。这种具有连接但遥远腔室的配置允许研究每个龛位对 HSPC 行为调节的特定贡献。我们描述了使用无掩模光刻方法进行芯片微制造的方法,该方法允许迭代改进芯片的几何设计,以优化多细胞结构对特定研究目标的适应性。我们还描述了在每个腔室中加载和培养各种细胞类型的方法。