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Expansion and preservation of the functional activity of adult hematopoietic stem cells cultured ex vivo with a histone deacetylase inhibitor

机译:用组蛋白脱乙酰酶抑制剂培养成年造血干细胞功能活性的扩张和保存

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Attempts to expand ex vivo the numbers of human hematopoietic stem cells (HSCs) without compromising their marrow repopulating capacity and their ability to establish multilineage hematopoiesis has been the subject of intense investigation. Although most such efforts have focused on cord blood HSCs, few have been applied to adult HSCs, a more clinically relevant HSC source for gene modification. To date, the strategies that have been used to expand adult HSCs have resulted in modest effects or HSCs with lineage bias and a limited ability to generate T cells in vivo. We previously reported that culturing umbilical cord blood CD34+ cells in serum‐free media supplemented with valproic acid (VPA), a histone deacetylase inhibitor, and a combination of cytokines led to the expansion of the numbers of fully functional HSCs. In the present study, we used this same approach to expand the numbers of adult human CD34+ cells isolated from mobilized peripheral blood and bone marrow. This approach resulted in a significant increase in the numbers of phenotypically defined HSCs (CD34+CD45RA‐CD90+D49f+). Cells incubated with VPA also exhibited increased aldehyde dehydrogenase activity and decreased mitochondrial membrane potential, each functional markers of HSCs. Grafts harvested from VPA‐treated cultures were able to engraft in immune‐deficient mice and, importantly, to generate cellular progeny belonging to each hematopoietic lineage in similar proportion to that observed with unmanipulated CD34+ cells. These data support the utility of VPA‐mediated ex vivo HSC expansion for gene modification of adult HSCs.
机译:试图扩大exvivo人造血干细胞(HSC)的数量,而不会影响其骨髓重新流量的能力及其建立多重血管血管缺陷的能力一直是激烈调查的主题。虽然大多数此类努力都集中在脐带血HSC上,但很少有少量应用于成人HSC,一种更临床相关的基因改性的HSC源。迄今为止,已用于扩展成人HSC的策略导致适度的效果或具有血统偏差的HSC和在体内产生T细胞的有限能力。我们之前报道,培养脐血CD34 +细胞补充有丙戊酸(VPA)的无血清培养基,组蛋白脱乙酰酶抑制剂和细胞因子的组合导致了膨胀了全功能性HSC的数量。在本研究中,我们使用这种相同的方法来扩展从动员外周血和骨髓中分离的成人人CD34 +细胞的数量。这种方法导致表型定义的HSC的数量显着增加(CD34 + CD45RA-CD90 + D49F +)。与VPA孵育的细胞也表现出醛脱氢酶活性增加和线粒体膜电位降低,HSC的每个功能标志物。从VPA处理的培养物收获的移植物能够在免疫缺陷小鼠中植入,并且重要的是,为了产生与用非管理的CD34 +细胞观察到的相似比例的每个造血谱系的细胞后代。这些数据支持VPA介导的exvivo HSC扩展的效用,用于成人HSC的基因改性。

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