骨髓微环境中细胞成分相互作用对造血干细胞和祖细胞功能的影响。
Impact of interactions of cellular components of the bone marrow microenvironment on hematopoietic stem and progenitor cell function.
机构信息
Departments of Medicine, Indiana University School of Medicine, Indianapolis, IN, USA.
出版信息
Blood. 2010 Apr 22;115(16):3239-48. doi: 10.1182/blood-2009-09-246173. Epub 2010 Feb 12.
Hematopoietic stem (HSC) and progenitor (HPC) cell fate is governed by intrinsic and extrinsic parameters. We examined the impact of hematopoietic niche elements on HSC and HPC function by analyzing the combined effect of osteoblasts (OBs) and stromal cells (SCs) on Lineage(-)Sca-1(+)CD117(+) (LSK) cells. CFU expansion and marrow repopulating potential of cultured Lineage(-)Sca-1(+)CD117(+) cells were significantly higher in OB compared with SC cultures, thus corroborating the importance of OBs in the competence of the hematopoietic niche. OB-mediated enhancement of HSC and HPC function was reduced in cocultures of OBs and SCs, suggesting that SCs suppressed the OB-mediated hematopoiesis-enhancing activity. Although the suppressive effect of SC was mediated by adipocytes, probably through up-regulation of neuropilin-1, the OB-mediated enhanced hematopoiesis function was elaborated through Notch signaling. Expression of Notch 2, Jagged 1 and 2, Delta 1 and 4, Hes 1 and 5, and Deltex was increased in OB cultures and suppressed in SC and OB/SC cultures. Phenotypic fractionation of OBs did not segregate the hematopoiesis-enhancing activity but demonstrated that this function is common to OBs from different anatomic sites. These data illustrate that OBs promote in vitro maintenance of hematopoietic functions, including repopulating potential by up-regulating Notch-mediated signaling between HSCs and OBs.
造血干细胞(HSC)和祖细胞(HPC)的命运由内在和外在参数决定。我们通过分析成骨细胞(OBs)和基质细胞(SCs)对谱系(-)Sca-1(+)CD117(+)(LSK)细胞的综合影响,研究了造血龛元素对 HSC 和 HPC 功能的影响。与 SC 培养相比,OB 中的 CFU 扩增和骨髓重殖潜力明显更高,因此证实了 OB 在造血龛的竞争力中的重要性。在 OB 和 SC 的共培养中,OB 介导的 HSC 和 HPC 功能增强减少,表明 SC 抑制了 OB 介导的造血增强活性。尽管 SC 的抑制作用是通过脂肪细胞介导的,可能是通过上调神经纤毛蛋白-1 来实现的,但 OB 介导的增强造血功能是通过 Notch 信号通路实现的。在 OB 培养物中,Notch 2、Jagged 1 和 2、Delta 1 和 4、Hes 1 和 5 以及 Deltex 的表达增加,而在 SC 和 OB/SC 培养物中则受到抑制。OB 的表型分离并没有将造血增强活性分离出来,但表明这种功能在来自不同解剖部位的 OB 中是共同的。这些数据表明,OB 通过上调 HSCs 和 OB 之间的 Notch 介导的信号,促进体外维持造血功能,包括重殖潜力。
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