IBB-Institute for Biotechnology and Bioengineering, Centre for Biological and Chemical Engineering, Instituto Superior Técnico, Avenida Rovisco Pais, 1049-001 Lisbon, Portugal. claudia
J Tissue Eng Regen Med. 2010 Feb;4(2):149-58. doi: 10.1002/term.226.
Most clinical applications of haematopoietic stem/progenitor cells (HSCs) would benefit from their ex vivo expansion to obtain a therapeutically significant amount of cells from the available donor samples. We studied the impact of cellular interactions between umbilical cord blood (UCB) haematopoietic cells and bone marrow (BM)-derived mesenchymal stem cells (MSCs) on the ex vivo expansion and differentiative potential of UCB CD34(+)-enriched cells. UCB cells were cultured: (a) directly in contact with BM MSC-derived stromal layers (contact); (b) separated by a microporous membrane (non-contact); or (c) without stroma (no stroma). Highly dynamic culture events occurred in HSC-MSC co-cultures, involving cell-cell interactions, which preceded HSC expansion. Throughout the time in culture [18 days], total cell expansion was significantly higher in contact (fold increase of 280 + or - 37 at day 18) compared to non-contact (85 + or - 25). No significant cell expansion was observed in stroma-free cultures. CD34(+) cell expansion was also clearly favoured by direct contact with BM MSCs (35 + or - 5- and 7 + or - 3-fold increases at day 18 for contact and non-contact, respectively). Moreover, a higher percentage of CD34(+)CD38(-) cells was consistently maintained during the time in culture under contact (8.1 + or - 1.9% at day 18) compared to non-contact (5.7 + or - 1.6%). Importantly, direct cell interaction with BM MSCs significantly enhanced the expansion of early lymphoid CD7(+) cells, yielding considerably higher (x3-10) progenitor numbers compared to non-contact conditions. These results highlight the importance of dynamic cell-cell interactions between UCB HSCs and BM MSCs, towards the maximization of HSC expansion ex vivo to obtain clinically relevant cell numbers for multiple settings, such as BM transplantation or somatic cell gene therapy.
大多数造血干细胞/祖细胞(HSCs)的临床应用将受益于其体外扩增,以便从可用的供体样本中获得具有治疗意义的细胞数量。我们研究了脐血(UCB)造血细胞与骨髓(BM)衍生间充质干细胞(MSCs)之间的细胞相互作用对 UCB CD34(+)富集细胞体外扩增和分化潜能的影响。UCB 细胞进行了以下三种培养方式:(a)直接与 BM MSC 衍生的基质层接触(接触);(b)通过微孔膜分隔(非接触);或(c)无基质(无基质)。在 HSC-MSC 共培养中发生了高度动态的培养事件,涉及细胞-细胞相互作用,这先于 HSC 扩增。在整个培养时间(18 天)内,接触培养(第 18 天的倍数增加 280+/-37)的总细胞扩增明显高于非接触培养(85+/-25)。无基质培养中未观察到明显的细胞扩增。直接与 BM MSC 接触也明显有利于 CD34(+)细胞的扩增(接触和非接触的第 18 天分别增加 35+/-5-和 7+/-3 倍)。此外,在接触培养中,CD34(+)CD38(-)细胞的百分比在整个培养时间内保持较高水平(第 18 天为 8.1+/-1.9%),而非接触培养中则较低(第 18 天为 5.7+/-1.6%)。重要的是,与 BM MSC 的直接细胞相互作用显著增强了早期淋巴样 CD7(+)细胞的扩增,产生了明显更高(3-10 倍)的祖细胞数量,与非接触条件相比。这些结果强调了 UCB HSCs 与 BM MSC 之间动态细胞-细胞相互作用的重要性,以最大限度地实现 HSC 体外扩增,从而获得多种情况下具有临床意义的细胞数量,例如骨髓移植或体细胞基因治疗。