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Quantitative spatial analysis of haematopoiesis-regulating stromal cells in the bone marrow microenvironment by 3D microscopy

机译:通过3D显微镜对骨髓微环境中造血调节基质细胞的定量空间分析

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Sinusoidal endothelial cells and mesenchymal CXCL12-abundant reticular cells are principal bone marrow stromal components, which critically modulate haematopoiesis at various levels, including haematopoietic stem cell maintenance. These stromal subsets are thought to be scarce and function via highly specific interactions in anatomically confined niches. Yet, knowledge on their abundance, global distribution and spatial associations remains limited. Using three-dimensional quantitative microscopy we show that sinusoidal endothelial and mesenchymal reticular subsets are remarkably more abundant than estimated by conventional flow cytometry. Moreover, both cell types assemble in topologically complex networks, associate to extracellular matrix and pervade marrow tissues. Through spatial statistical methods we challenge previous models and demonstrate that even in the absence of major specific interaction forces, virtually all tissue-resident cells are invariably in physical contact with, or close proximity to, mesenchymal reticular and sinusoidal endothelial cells. We further show that basic structural features of these stromal components are preserved during ageing.
机译:正弦血管内皮细胞和间充质CXCL12丰富的网状细胞是主要的骨髓基质成分,可在各种水平上关键性地调节造血功能,包括维持造血干细胞。这些基质亚群被认为是稀缺的,并通过在解剖学上受限的壁highly中的高度特异性相互作用而起作用。然而,关于它们的丰度,全球分布和空间关联的知识仍然有限。使用三维定量显微镜,我们显示正弦血管内皮和间质网状亚群比常规流式细胞仪估计的丰富得多。此外,两种细胞类型都在拓扑复杂的网络中组装,与细胞外基质缔合并遍及骨髓组织。通过空间统计方法,我们挑战了先前的模型,并证明,即使没有主要的特定相互作用力,几乎所有组织驻留细胞都始终与间充质网状和窦状内皮细胞物理接触或紧密接近。我们进一步表明,这些基质成分的基本结构特征在老化过程中得以保留。

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