Harada Tomonori, Hirabayashi Yukio, Hatta Yoshihiro, Tsuboi Isao, Glomm Wilhelm Robert, Yasuda Masahiro, Aizawa Shin
a Department of Functional Morphology and.
b Department of Medicine , Nihon University School of Medicine , Tokyo , Japan .
Growth Factors. 2015;33(5-6):347-55. doi: 10.3109/08977194.2015.1088534. Epub 2015 Oct 2.
In the bone marrow, hematopoietic cells proliferate and differentiate in close association with a three-dimensional (3D) hematopoietic microenvironment. Previously, we established a 3D bone marrow culture system. In this study, we analyzed the kinetics of hematopoietic cells, and more than 50% of hematopoietic progenitor cells, including CFU-Mix, CFU-GM and BFU-E in 3D culture were in a resting (non-S) phase. Furthermore, we examined the hematopoietic supportive ability of stromal cells by measuring the expression of various mRNAs relevant to hematopoietic regulation. Over the 4 weeks of culture, the stromal cells in the 3D culture are not needlessly activated and "quietly" regulate hematopoietic cell proliferation and differentiation during the culture, resulting in the presence of resting hematopoietic stem cells in the 3D culture for a long time. Thus, the 3D culture system may be a new tool for investigating hematopoietic stem cell-stromal cell interactions in vitro.
在骨髓中,造血细胞与三维(3D)造血微环境紧密关联地进行增殖和分化。此前,我们建立了一种3D骨髓培养系统。在本研究中,我们分析了造血细胞的动力学,并且在3D培养中超过50%的造血祖细胞,包括混合集落形成单位(CFU-Mix)、粒细胞-巨噬细胞集落形成单位(CFU-GM)和红细胞爆式集落形成单位(BFU-E)处于静止(非S)期。此外,我们通过测量与造血调控相关的各种mRNA的表达来检测基质细胞的造血支持能力。在4周的培养过程中,3D培养中的基质细胞不会被不必要地激活,而是在培养期间“安静地”调节造血细胞的增殖和分化,导致3D培养中长时间存在静止的造血干细胞。因此,3D培养系统可能是一种用于体外研究造血干细胞与基质细胞相互作用的新工具。