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破骨细胞相关巨噬细胞与巨核细胞和成骨细胞相互作用,以调节小鼠造血干细胞功能。

Osteomacs interact with megakaryocytes and osteoblasts to regulate murine hematopoietic stem cell function.

作者信息

Mohamad Safa F, Xu Linlin, Ghosh Joydeep, Childress Paul J, Abeysekera Irushi, Himes Evan R, Wu Hao, Alvarez Marta B, Davis Korbin M, Aguilar-Perez Alexandra, Hong Jung Min, Bruzzaniti Angela, Kacena Melissa A, Srour Edward F

机构信息

Department of Microbiology and Immunology.

Department of Medicine.

出版信息

Blood Adv. 2017 Dec 5;1(26):2520-2528. doi: 10.1182/bloodadvances.2017011304. eCollection 2017 Dec 12.

Abstract

Networking between hematopoietic stem cells (HSCs) and cells of the hematopoietic niche is critical for stem cell function and maintenance of the stem cell pool. We characterized calvariae-resident osteomacs (OMs) and their interaction with megakaryocytes to sustain HSC function and identified distinguishing properties between OMs and bone marrow (BM)-derived macrophages. OMs, identified as CD45F4/80 cells, were easily detectable (3%-5%) in neonatal calvarial cells. Coculture of neonatal calvarial cells with megakaryocytes for 7 days increased OM three- to sixfold, demonstrating that megakaryocytes regulate OM proliferation. OMs were required for the hematopoiesis-enhancing activity of osteoblasts, and this activity was augmented by megakaryocytes. Serial transplantation demonstrated that HSC repopulating potential was best maintained by in vitro cultures containing osteoblasts, OMs, and megakaryocytes. With or without megakaryocytes, BM-derived macrophages were unable to functionally substitute for neonatal calvarial cell-associated OMs. In addition, OMs differentiated into multinucleated, tartrate resistant acid phosphatase-positive osteoclasts capable of bone resorption. Nine-color flow cytometric analysis revealed that although BM-derived macrophages and OMs share many cell surface phenotypic similarities (CD45, F4/80, CD68, CD11b, Mac2, and Gr-1), only a subgroup of OMs coexpressed M-CSFR and CD166, thus providing a unique profile for OMs. CD169 was expressed by both OMs and BM-derived macrophages and therefore was not a distinguishing marker between these 2 cell types. These results demonstrate that OMs support HSC function and illustrate that megakaryocytes significantly augment the synergistic activity of osteoblasts and OMs. Furthermore, this report establishes for the first time that the crosstalk between OMs, osteoblasts, and megakaryocytes is a novel network supporting HSC function.

摘要

造血干细胞(HSCs)与造血微环境细胞之间的网络联系对于干细胞功能及干细胞池的维持至关重要。我们对颅骨驻留的破骨细胞样巨噬细胞(OMs)及其与巨核细胞的相互作用进行了表征,以维持HSC功能,并确定了OMs与骨髓(BM)来源巨噬细胞之间的区别特性。OMs被鉴定为CD45F4/80细胞,在新生颅骨细胞中易于检测到(3%-5%)。将新生颅骨细胞与巨核细胞共培养7天,OMs数量增加了三到六倍,表明巨核细胞调节OMs增殖。成骨细胞的造血增强活性需要OMs,而巨核细胞可增强这种活性。连续移植表明,含有成骨细胞、OMs和巨核细胞的体外培养物能最佳维持HSC的重新填充潜力。无论有无巨核细胞,BM来源的巨噬细胞都无法在功能上替代与新生颅骨细胞相关的OMs。此外,OMs可分化为能够进行骨吸收的多核、抗酒石酸酸性磷酸酶阳性破骨细胞。九色流式细胞术分析显示,尽管BM来源的巨噬细胞和OMs在许多细胞表面表型上有相似之处(CD45、F4/80、CD68、CD11b、Mac2和Gr-1),但只有一部分OMs共表达M-CSFR和CD166,因此为OMs提供了独特的特征。OMs和BM来源的巨噬细胞均表达CD169,因此它不是这两种细胞类型之间的区分标志物。这些结果表明,OMs支持HSC功能,并说明巨核细胞显著增强了成骨细胞和OMs的协同活性。此外,本报告首次证实,OMs、成骨细胞和巨核细胞之间的相互作用是支持HSC功能的新型网络。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c7c8/5728639/23284ad799a6/advances011304absf1.jpg

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