Narayan A Daisy, Ersek Adel, Campbell Thomas A, Colón Donna M, Pixley John S, Zanjani Esmail D
Department of Animal Biotechnology, University of Nevada, Reno, NV 89557, USA.
Br J Haematol. 2005 Feb;128(4):562-70. doi: 10.1111/j.1365-2141.2004.05336.x.
This study investigated whether relative changes that accompany the naturally occurring shifts in haematopoietic sites during human development play a role in haemoglobin (Hb) switching or whether Hb switching is innately programmed into cells. CD34(+)/Lineage(-) haematopoietic stem/progenitor cells (HSCs) were isolated from human fetal liver (F-LVR), cord blood (CB), and adult bone marrow (ABM), and the Hb was characterized by flow cytometry on cultures that generated enucleated red cells. All feeder layers (stroma from F-LVR, ABM, and human fetal aorta) enhanced cell proliferation and erythropoiesis but did not affect Hb type. HSCs from CB and F-LVR generated the same Hb profile under normoxia and hypoxia. HSCs from ABM had single-positive HbA and double-positive HbA and HbF cells at normoxia and almost entirely double-positive cells at hypoxia. Further characterization of these ABM cultures was determined by following mRNA expression for the transcription factors erythroid Kruppel-like factor (EKLF) and fetal Kruppel-like factor (FKLF) as a function of time in cultures under hypoxia and normoxia. The erythroid-specific isoform of 5-amino-levulinate synthase (ALAS2) was also expressed under hypoxic conditions. We conclude that Hb switching is affected by the environment but not all HSCs are preprogrammed to respond.
本研究调查了人类发育过程中造血部位自然发生的转变所伴随的相对变化是否在血红蛋白(Hb)转换中起作用,或者Hb转换是否在细胞中是固有编程的。从人胎儿肝脏(F-LVR)、脐带血(CB)和成人骨髓(ABM)中分离出CD34(+)/谱系(-)造血干/祖细胞(HSC),并通过流式细胞术对产生去核红细胞的培养物中的Hb进行表征。所有饲养层(来自F-LVR、ABM的基质以及人胎儿主动脉)均增强了细胞增殖和红细胞生成,但不影响Hb类型。在常氧和低氧条件下,CB和F-LVR来源的HSC产生相同的Hb谱。ABM来源的HSC在常氧下有单阳性HbA细胞以及双阳性HbA和HbF细胞,在低氧下几乎全是双阳性细胞。通过追踪缺氧和常氧条件下培养物中作为时间函数的转录因子红系Kruppel样因子(EKLF)和胎儿Kruppel样因子(FKLF)的mRNA表达,对这些ABM培养物进行了进一步表征。5-氨基-乙酰丙酸合酶(ALAS2)的红系特异性同工型在低氧条件下也有表达。我们得出结论,Hb转换受环境影响,但并非所有HSC都预先编程以做出反应。