Department of Microbiology and Immunology, Indiana University School of Medicine, Indianapolis, Indiana, USA.
Zhongshan-Xuhui Hospital and Shanghai Key Laboratory of Medical Epigenetics, Institutes of Biomedical Sciences, Fudan University, Shanghai, China.
J Clin Invest. 2021 Jan 4;131(1). doi: 10.1172/JCI140177.
Bone marrow (BM) hematopoietic stem cells (HSCs) become dysfunctional during aging (i.e., they are increased in number but have an overall reduction in long-term repopulation potential and increased myeloid differentiation) compared with young HSCs, suggesting limited use of old donor BM cells for hematopoietic cell transplantation (HCT). BM cells reside in an in vivo hypoxic environment yet are evaluated after collection and processing in ambient air. We detected an increase in the number of both young and aged mouse BM HSCs collected and processed in 3% O2 compared with the number of young BM HSCs collected and processed in ambient air (~21% O2). Aged BM collected and processed under hypoxic conditions demonstrated enhanced engraftment capability during competitive transplantation analysis and contained more functional HSCs as determined by limiting dilution analysis. Importantly, the myeloid-to-lymphoid differentiation ratio of aged BM collected in 3% O2 was similar to that detected in young BM collected in ambient air or hypoxic conditions, consistent with the increased number of common lymphoid progenitors following collection under hypoxia. Enhanced functional activity and differentiation of old BM collected and processed in hypoxia correlated with reduced "stress" associated with ambient air BM collection and suggests that aged BM may be better and more efficiently used for HCT if collected and processed under hypoxia so that it is never exposed to ambient air O2.
骨髓(BM)造血干细胞(HSCs)在衰老过程中会出现功能障碍(即数量增加,但长期重建造血潜能总体降低,髓系分化增加),与年轻的 HSCs 相比,这表明旧供体 BM 细胞在造血细胞移植(HCT)中的应用有限。BM 细胞存在于体内低氧环境中,但在采集和处理后在环境空气中进行评估。与在环境空气中采集和处理的年轻 BM HSCs 的数量相比,我们检测到在 3%O2 中采集和处理的年轻和老年小鼠 BM HSCs 的数量增加(~21%O2)。在竞争移植分析中,在低氧条件下采集和处理的老年 BM 表现出增强的植入能力,并且通过有限稀释分析确定包含更多功能 HSCs。重要的是,在 3%O2 中采集的老年 BM 的髓系与淋巴系分化比例与在环境空气中或低氧条件下采集的年轻 BM 中检测到的相似,这与低氧采集后共同淋巴祖细胞数量增加一致。在低氧条件下采集和处理的老年 BM 的功能活性和分化增强与与环境空气 BM 采集相关的“应激”减少相关,这表明如果在低氧条件下采集和处理,老年 BM 可能更适合并且更有效地用于 HCT,以使其永远不会暴露于环境空气 O2。