纯化小鼠淋巴造血干细胞的归巢:细胞因子诱导的缺陷。

Jan Cerny, Mark Dooner, Christina McAuliffe, Houri Habibian, Kimberly Stencil, Virla Berrios, Judy Reilly, Jane Carlson, Anna Maria Cerny, Lionel d'Hondt, Brian Benoit, Jean-Francois Lambert, Gerald Colvin, Susan Nilsson, Pamela Becker, Peter Quesenberry
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引用次数: 61

摘要

本研究旨在利用纯化的谱系阴性Sca-1阳性(Lin(-) Sca(+))小鼠骨髓细胞建立直接归巢实验,并评估细胞因子对归巢的影响。C57BL/6 Lin(-) Sca(+)骨髓干细胞用5-(和6)-羧基荧光素二乙酸琥珀酰乙酯(CFDA-SE)标记后经尾静脉注射给未处理C57BL/6小鼠。在细胞输注后的不同时间采集骨髓,并在高速MoFlo细胞分选仪上分析荧光阳性事件,使用大事件分析,至少分析了1600万个总事件。我们已经证明Lin(-) Sca(+)细胞的归巢在1小时内趋于平稳,在输注后3小时呈线性关系,输注细胞在50,000到1,000,000之间。这形成了归家试验的基础,其中注入250,000个CFDA-SE标记的Lin(-) Sca(+)骨髓细胞,然后在3小时后从骨髓中回收,随后进行大事件荧光激活细胞分选(FACS)分析。我们发现7.45-9.32%的输注细胞归巢,而干细胞在白细胞介素-3 (IL-3)、IL-6、IL-11和钢铁因子培养的细胞中培养48小时的归巢率与未培养的细胞相比存在缺陷。骨髓干细胞暴露于IL-3、IL-6、IL-11和steel因子诱导干细胞归巢缺陷,这可能是之前在这些条件下表征的植入缺陷的基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Homing of purified murine lymphohematopoietic stem cells: a cytokine-induced defect.

This study was designed to establish a direct homing assay using purified lineage-negative Sca-1-positive (Lin(-) Sca(+)) murine bone marrow cells and to evaluate the effects of cytokines on homing. C57BL/6 Lin(-) Sca(+) marrow stem cells were labeled with 5-(and 6)-carboxyfluorescein diacetate succinimidyl ester (CFDA-SE) and then injected by tail vein into untreated C57BL/6 mice. Marrow was harvested at various times after cell infusion and analyzed on a high-speed MoFlo cell sorter for fluorescent positive events, using a large event analysis, with at least 16 million total events analyzed. We have shown that homing of Lin(-) Sca(+) cells plateaus by 1 h, and at 3 h post-infusion is linear between 50,000 and 1,000,000 infused cells. This forms a base for a homing assay in which 250,000 CFDA-SE labeled Lin(-) Sca(+) marrow cells are infused and then recovered from marrow 3 h later, followed by a large-event fluorescence-activated cell sorting (FACS) analysis. We found that 7.45-9.32% of infused cells homed and that homing of stem cells cultured for 48 h in interleukin-3 (IL-3), IL-6, IL-11, and steel factor cultured cells was defective when compared to noncultured cells. Exposure of marrow stem cells to IL-3, IL-6, IL-11, and steel factor induces a stem cell homing defect, which probably underlies the engraftment defect previously characterized under these conditions.

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