Department of Bioengineering, University of Washington, Seattle, Washington, United States of America.
Bloodworks Research Institute, Seattle, Washington, United States of America.
PLoS One. 2018 Apr 4;13(4):e0195082. doi: 10.1371/journal.pone.0195082. eCollection 2018.
Vasculature is an interface between the circulation and the hematopoietic tissue providing the means for hundreds of billions of blood cells to enter the circulation every day in a regulated fashion. The precise mechanisms that control the interactions of hematopoietic cells with the vessel wall are largely undefined. Here, we report on the development of an in vitro 3D human marrow vascular microenvironment (VME) to study hematopoietic trafficking and the release of blood cells, specifically platelets. We show that mature megakaryocytes from aspirated marrow as well as megakaryocytes differentiated in culture from CD34+ cells can be embedded in a collagen matrix containing engineered microvessels to create a thrombopoietic VME. These megakaryocytes continue to mature, penetrate the vessel wall, and release platelets into the vessel lumen. This process can be blocked with the addition of antibodies specific for CXCR4, indicating that CXCR4 is required for megakaryocyte migration, though whether it is sufficient is unclear. The 3D marrow VME system shows considerable potential for mechanistic studies defining the role of marrow vasculature in thrombopoiesis. Through a stepwise addition or removal of individual marrow components, this model provides potential to define key pathways responsible for the release of platelets and other blood cells.
脉管系统是血液循环系统和造血组织之间的界面,为每天数以千亿计的血细胞以调节的方式进入循环提供了途径。控制造血细胞与血管壁相互作用的确切机制在很大程度上还未被定义。在这里,我们报告了一种体外 3D 人骨髓血管微环境(VME)的开发,用于研究造血细胞的迁移和血细胞(特别是血小板)的释放。我们表明,从抽吸的骨髓中分离的成熟巨核细胞以及从 CD34+细胞在培养中分化而来的巨核细胞可以嵌入含有工程化微血管的胶原基质中,以创建一个促血小板生成的 VME。这些巨核细胞继续成熟,穿透血管壁,并将血小板释放到血管腔中。通过添加针对 CXCR4 的特异性抗体可以阻断这个过程,表明 CXCR4 是巨核细胞迁移所必需的,尽管它是否足够尚不清楚。3D 骨髓 VME 系统在确定骨髓血管在血栓生成中的作用的机制研究方面显示出巨大的潜力。通过逐步添加或去除单个骨髓成分,该模型有可能定义负责释放血小板和其他血细胞的关键途径。