首页> 外文期刊>Tissue engineering, Part C. Methods >Suspension-Expansion of Bone Marrow Results in Small Mesenchymal Stem Cells Exhibiting Increased Transpulmonary Passage Following Intravenous Administration
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Suspension-Expansion of Bone Marrow Results in Small Mesenchymal Stem Cells Exhibiting Increased Transpulmonary Passage Following Intravenous Administration

机译:静脉内给药后,骨髓间充质干细胞的悬浮扩展导致小间充质干细胞的表达增加

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Mesenchymal stem cells (MSCs) have been extensively explored in a variety of regenerative medicine applications. The relatively large size of MSCs expanded in tissue culture flasks leads to retention in the microcirculation of the lungs following intravenous delivery, reducing their capacity to reach target sites. We explored whether the expansion of whole marrow in suspension cultures would yield smaller MSCs with increased capacity to traverse the pulmonary microcirculation compared with traditional monolayer cultures. We tested this hypothesis using rat marrow in a suspension bioreactor culture with fibronectin-coated microcarriers, leading to sustained expansion of both the microbead-adherent cells, as well as of a nonadherent cell fraction. Magnetic depletion of CD45(+) cells from the bioreactor cultures after 5 weeks led to a highly enriched CD73(+)/CD90(+)/CD105(+) MSC population. The bioreactor-grown MSCs were significantly smaller than parallel monolayer MSCs (15.1 +/- 0.9m vs. 18.5 +/- 2.3m diameter, p<0.05). When fluorescently labeled bioreactor-grown MSCs were intravenously injected into rats, the peak cell concentration in the arterial circulation was an order of magnitude higher than similarly delivered monolayer-grown MSCs (94.8 +/- 29.6 vs. 8.2 +/- 5.6/10(6) nucleated blood cells, respectively, p<0.05). At 24h after intravenous injection of the LacZ-labeled bioreactor-grown MSCs, there was a significant threefold decrease in the LacZ-labeled MSCs trapped in the lungs, with a significant increase in the cells reaching the spleen and liver in comparison to their monolayer MSC counterparts. Bioreactor-grown whole marrow cell cultures yielded smaller MSCs with increased capacity to traverse the pulmonary microcirculation compared with traditionally expanded monolayer MSCs. This may significantly improve the capacity and efficiency of these cells to home to injury sites downstream of the lungs.
机译:间充质干细胞(MSCs)已在各种再生医学应用中得到广泛研究。在组织培养瓶中扩增的相对较大尺寸的MSC导致在静脉内递送后保留在肺的微循环中,从而降低了它们到达目标部位的能力。我们探讨了与传统的单层培养相比,悬浮培养中整个骨髓的扩增是否会产生较小的MSC,并具有穿越肺微循环的能力。我们在悬浮生物反应器中用纤连蛋白包被的微载体在骨髓中培养了大鼠,从而验证了这一假设,从而导致微珠粘附细胞以及非粘附细胞组分的持续扩增。 5周后从生物反应器培养物中CD45(+)细胞的磁耗尽导致高度富集的CD73(+)/ CD90(+)/ CD105(+)MSC群体。生物反应器生长的MSC明显小于平行单层MSC(直径为15.1 +/- 0.9m,直径为18.5 +/- 2.3m,p <0.05)。当将荧光标记的生物反应器生长的MSC静脉内注射到大鼠中时,动脉循环中的峰值细胞浓度比类似递送的单层生长的MSC高一个数量级(94.8 +/- 29.6与8.2 +/- 5.6 / 10( 6)有核血细胞分别为p <0.05)。静脉注射LacZ标记的生物反应器生长的MSC后24小时,捕获在肺中的LacZ标记的MSC明显减少了三倍,与单层MSC相比,到达脾脏和肝脏的细胞显着增加同行。与传统扩展的单层MSC相比,生物反应器生长的全骨髓细胞培养物产生的MSC较小,具有穿越肺微循环的能力增强。这可以显着提高这些细胞归巢到肺下游损伤部位的能力和效率。

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