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逃避血小板生成素剥夺的造血干细胞的长期维持。

Prolonged maintenance of hematopoietic stem cells that escape from thrombopoietin deprivation.

机构信息

Cancer Science Institute of Singapore, National University of Singapore, Singapore.

Microscopic and Developmental Anatomy, Tokyo Women's Medical University, Shijukuku, Tokyo, Japan; and.

出版信息

Blood. 2021 May 13;137(19):2609-2620. doi: 10.1182/blood.2020005517.

Abstract

Hematopoietic stem cells (HSC) rarely divide, rest in quiescence, and proliferate only upon stress hematopoiesis. The cytokine thrombopoietin (Thpo) has been perplexingly described to induce quiescence and promote self-renewal divisions in HSCs. To clarify the contradictory effect of Thpo, we conducted a detailed analysis on conventional (Thpo-/-) and liver-specific (Thpofl/fl;AlbCre+/-) Thpo-deletion models. Thpo-/- HSCs exhibited profound loss of quiescence, impaired cell cycle progression, and increased apoptosis. Thpo-/- HSCs also exhibited diminished mitochondrial mass and impaired mitochondrial bioenergetics. Abnormal HSC phenotypes in Thpo-/- mice were reversible after HSC transplantation into wild-type recipients. Moreover, Thpo-/- HSCs acquired quiescence with extended administration of a Thpo receptor agonist, romiplostim, and were prone to subsequent stem cell exhaustion during competitive bone marrow transplantation. Thpofl/fl;AlbCre+/- HSCs exhibited similar stem cell phenotypes but to a lesser degree compared with Thpo-/- HSCs. HSCs that survive Thpo deficiency acquire quiescence in a dose-dependent manner through the modification of their metabolic state.

摘要

造血干细胞(HSC)很少分裂,处于静止状态,仅在应激造血时才增殖。细胞因子血小板生成素(Thpo)令人费解地被描述为诱导 HSC 静止和促进自我更新分裂。为了阐明 Thpo 的矛盾作用,我们对常规(Thpo-/-)和肝特异性(Thpofl/fl;AlbCre+/-)Thpo 缺失模型进行了详细分析。Thpo-/-HSC 表现出明显的静止丧失、细胞周期进展受损和凋亡增加。Thpo-/-HSC 还表现出线粒体质量减少和线粒体生物能障碍。在将 Thpo-/-HSC 移植到野生型受体后,Thpo-/-小鼠的异常 HSC 表型是可逆的。此外,Thpo-/-HSC 在延长施用 Thpo 受体激动剂罗米司亭后获得静止状态,并在竞争性骨髓移植中随后容易出现干细胞衰竭。与 Thpo-/-HSC 相比,Thpofl/fl;AlbCre+/-HSC 表现出相似的干细胞表型,但程度较轻。通过改变其代谢状态,在 Thpo 缺乏时存活下来的 HSC 以剂量依赖性方式获得静止状态。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dbbc/9635515/71eac15d0340/bloodBLD2020005517absf1.jpg

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