Young J C, Lin K, Hansteen G, Travis M, Murray L J, Jaing L, Scollay R, Hill B L
SyStemix Inc. (a Novartis company), Palo Alto, CA, USA.
Exp Hematol. 1999 Jun;27(6):994-1003. doi: 10.1016/s0301-472x(99)00030-2.
Ex vivo cell cycling of hematopoietic stem cells (HSC), a subset of primitive hematopoietic progenitors (PHP) with engrafting capacity, is required for transduction with retroviral vectors and to increase transplantable HSC numbers. However, induction of division of HSC ex vivo also may lead to differentiation and loss of in vivo marrow repopulating potential. We evaluated mobilized peripheral blood (MPB) PHP for maintenance of stem cell function after ex vivo culture under conditions that we show can induce cycling of a majority of PHP with minimal differentiation. The following methods were combined: cell labeling with the division tracking dye carboxyfluorescein-diacetate succinimidylester (CFSE), analysis of primitive cell surface marker expression, an ex vivo PHP assay, and an in vivo marrow repopulating assay. MPB-purified CD34+ Thy-1+ cells were labeled with CFSE dye and cultured for 112 hours in serum-deprived medium in the presence of the cytokine combinations of thrombopoietin (TPO), flt3 ligand (FL), and c-kit ligand (KL), or TPO, FL, and interleukin 6 (IL-6). Both cytokine combinations supported division of greater than 95% of cells within 112 hours with an average 2.1-fold (TPO, FL, KL) or 1.3-fold (TPO, FL, IL-6) increase in total cell numbers. An average of 21.6% (TPO, FL, KL) and 27.4% (TPO, FL, IL-6) of the divided cells still expressed the Thy-1 marker after 112 hours. Functional assays were performed to compare cultured and uncultured cells. CD34+ Thy-1+ CFSElo (post division) cells showed maintenance of cobblestone area-forming cell (CAFC) frequency (a mean of 1/9.0) relative to the starting population of uncultured CD34+ Thy-1+ cells (a mean of 1/8.4). In contrast, CD34+ cells that had lost Thy-1 expression during culture (CD34+ Thy-1 CFSElo) showed a mean 5.8-fold reduction in CAFC frequency (a mean of 1/52.5). Only the Thy-1-expressing fraction of cells post culture could engraft in vivo in the SCID-hu bone assay. Because the majority of HSC functional activity post culture was found in the CD34+ Thy-1+ fraction, we focused on this fraction for subsequent analysis. CFSE labeling allows segregation and purification by flow cytometry of cells having undergone discrete numbers of divisions during culture. Very few cells that divided more than four times in culture still expressed Thy-1. Cells that retained expression of Thy-1 during culture retained CAFC activity relative to fresh CD34+ Thy-1+ cells, after undergoing at least two divisions. CAFC frequency decreased after four divisions in culture with TPO, FL, and KL or after three divisions in TPO, FL, and IL-6. We then compared populations of Thy-1+ cells that had undergone sequential numbers of divisions in culture for their ability to engraft in the SCID-hu bone assay. Engrafting ability was retained throughout four divisions in both cytokine combinations. These data demonstrate that primitive MPB CD34+ cells maintain HSC function coincident with Thy-1 expression while undergoing two to four divisions under these culture conditions. Essentially all CD34+ Thy-1+ cells divided under the conditions tested, promoting susceptibility to retroviral transduction.
造血干细胞(HSC)是具有植入能力的原始造血祖细胞(PHP)的一个亚群,其体外细胞周期对于逆转录病毒载体转导以及增加可移植的HSC数量是必需的。然而,体外诱导HSC分裂也可能导致分化并丧失体内骨髓重建潜能。我们评估了动员外周血(MPB)中的PHP在体外培养后干细胞功能的维持情况,我们所采用的培养条件能够诱导大多数PHP循环,同时分化最小。我们结合了以下方法:用细胞分裂追踪染料羧基荧光素二乙酸琥珀酰亚胺酯(CFSE)进行细胞标记、分析原始细胞表面标志物表达、体外PHP测定以及体内骨髓重建测定。用CFSE染料标记MPB纯化的CD34⁺Thy-1⁺细胞,并在血小板生成素(TPO)、fms样酪氨酸激酶3配体(FL)和c-kit配体(KL)或TPO、FL和白细胞介素6(IL-6)的细胞因子组合存在的血清饥饿培养基中培养112小时。两种细胞因子组合均支持超过95%的细胞在112小时内分裂,总细胞数平均增加2.1倍(TPO、FL、KL)或1.3倍(TPO、FL、IL-6)。培养112小时后,平均21.6%(TPO、FL、KL)和27.4%(TPO、FL、IL-6)的分裂细胞仍表达Thy-1标志物。进行功能测定以比较培养的细胞和未培养的细胞。相对于未培养的CD34⁺Thy-⁺细胞起始群体(平均1/8.4),CD34⁺Thy-1⁺CFSElo(分裂后)细胞显示出鹅卵石区域形成细胞(CAFC)频率维持(平均1/9.0)。相比之下,在培养过程中失去Thy-1表达的CD34⁺细胞(CD34⁺Thy-1⁻CFSElo)显示CAFC频率平均降低5.8倍(平均1/52.5)。培养后仅表达Thy-1的细胞部分能够在SCID-hu骨测定中体内植入。由于培养后大多数HSC功能活性存在于CD34⁺Thy-1⁺部分,我们在后续分析中聚焦于该部分。CFSE标记允许通过流式细胞术分离和纯化在培养过程中经历了离散分裂次数的细胞。在培养中分裂超过四次的细胞中很少有仍表达Thy-1的。在培养过程中保留Thy-1表达的细胞在至少经历两次分裂后相对于新鲜的CD34⁺Thy-1⁺细胞保留了CAFC活性。在TPO、FL和KL培养中分裂四次后或在TPO、FL和IL-6培养中分裂三次后CAFC频率降低。然后我们比较了在培养中经历了连续分裂次数的Thy-1⁺细胞群体在SCID-hu骨测定中的植入能力。在两种细胞因子组合中,整个四次分裂过程中植入能力均得以保留。这些数据表明,在这些培养条件下,原始MPB CD34⁺细胞在经历两到四次分裂时,与Thy-1表达同时维持HSC功能。在测试条件下,基本上所有CD34⁺Thy-1⁺细胞都发生了分裂,这提高了对逆转录病毒转导的敏感性。