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衰老过程中骨桥蛋白维持小鼠造血干细胞的重建潜能。

Murine hematopoietic stem cell reconstitution potential is maintained by osteopontin during aging.

机构信息

Department of Internal Medicine III, Division of Hematology/Oncology, University of Bonn, Bonn, Germany.

Helmholtz-Institute for Biomedical Engineering, RWTH Aachen University Medical School, Aachen, Germany.

出版信息

Sci Rep. 2018 Feb 12;8(1):2833. doi: 10.1038/s41598-018-21324-x.

Abstract

In adult mammals, hematopoietic stem cells (HSCs) reside in the bone marrow and are in part regulated by the bone marrow microenvironment, called the stem cell niche. We have previously identified the bone marrow morphogen osteopontin (OPN), which is abundantly present in the bone marrow extracellular matrix, as a negative regulator of the size of the HSC pool under physiological conditions. Here, we study the impact of OPN on HSC function during aging using an OPN-knockout mouse model. We show that during aging OPN deficiency is associated with an increase in lymphocytes and a decline in erythrocytes in peripheral blood. In a bone marrow transplantation setting, aged OPN-deficient stem cells show reduced reconstitution ability likely due to insufficient differentiation of HSCs into more mature cells. In serial bone marrow transplantation, aged OPN bone marrow cells fail to adequately reconstitute red blood cells and platelets, resulting in severe anemia and thrombocytopenia as well as premature deaths of recipient mice. Thus, OPN has different effects on HSCs in aged and young animals and is particularly important to maintain stem cell function in aging mice.

摘要

在成年哺乳动物中,造血干细胞(HSCs)存在于骨髓中,部分受骨髓微环境(称为干细胞龛)调节。我们之前已经确定了骨髓形态发生素骨桥蛋白(OPN),它在骨髓细胞外基质中大量存在,是生理条件下 HSC 池大小的负调节剂。在这里,我们使用 OPN 敲除小鼠模型研究了 OPN 在衰老过程中对 HSC 功能的影响。我们表明,随着年龄的增长,OPN 缺乏与外周血中淋巴细胞增加和红细胞减少有关。在骨髓移植环境中,年老的 OPN 缺陷型干细胞显示出重建能力降低,这可能是由于 HSCs 向更成熟细胞的分化不足所致。在连续骨髓移植中,年老的 OPN 骨髓细胞不能充分重建红细胞和血小板,导致严重的贫血和血小板减少症,以及受体小鼠的过早死亡。因此,OPN 对老年和年轻动物的 HSCs 有不同的影响,对于维持衰老小鼠的干细胞功能尤为重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8f9d/5809550/9af7c9c04b16/41598_2018_21324_Fig1_HTML.jpg

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