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骨髓产生肺细胞:粒细胞集落刺激因子、心脏毒素、分级剂量照射及亚群表型的影响

Bone marrow production of lung cells: the impact of G-CSF, cardiotoxin, graded doses of irradiation, and subpopulation phenotype.

作者信息

Aliotta Jason M, Keaney Patrick, Passero Michael, Dooner Mark S, Pimentel Jeffrey, Greer Deborah, Demers Delia, Foster Bethany, Peterson Abigail, Dooner Gerri, Theise Neil D, Abedi Mehrdad, Colvin Gerald A, Quesenberry Peter J

机构信息

Roger Williams Medical Center, Center for Stem Cell Biology, Providence, RI 02908, USA.

出版信息

Exp Hematol. 2006 Feb;34(2):230-41. doi: 10.1016/j.exphem.2005.11.007.

Abstract

OBJECTIVE

Previous studies have demonstrated the production of various types of lung cells from marrow cells under diverse experimental conditions. Our aim was to identify some of the variables that influence conversion in the lung.

METHODS

In separate experiments, mice received various doses of total-body irradiation followed by transplantation with whole bone marrow or various subpopulations of marrow cells (Lin(-/+), c-kit(-/+), Sca-1(-/+)) from GFP(+) (C57BL/6-TgN[ACTbEGFP]1Osb) mice. Some were given intramuscular cardiotoxin and/or mobilized with granulocyte colony-stimulating factor (G-CSF).

RESULTS

The production of pulmonary epithelial cells from engrafted bone marrow was established utilizing green fluorescent protein (GFP) antibody labeling to rule out autofluorescence and deconvolution microscopy to establish the colocaliztion of GFP and cytokeratin and the absence of CD45 in lung samples after transplantation. More donor-derived lung cells (GFP(+)/CD45(-)) were seen with increasing doses of radiation (5.43% of all lung cells, 1200 cGy). In the 900-cGy group, 61.43% of GFP(+)/CD45(-) cells were also cytokeratin(+). Mobilization further increased GFP(+)/CD45(-) cells to 7.88% in radiation-injured mice. Up to 1.67% of lung cells were GFP(+)/CD45(-) in radiation-injured mice transplanted with Lin(-), c-kit(+), or Sca-1(+) marrow cells. Lin(+), c-kit(-), and Sca-1(-) subpopulations did not significantly engraft the lung.

CONCLUSIONS

We have established that marrow cells are capable of producing pulmonary epithelial cells and identified radiation dose and G-CSF mobilization as variables influencing the production of lung cells from marrow cells. Furthermore, the putative lung cell-producing marrow cell has the phenotype of a hematopoietic stem cell.

摘要

目的

先前的研究已证实在不同实验条件下骨髓细胞可产生多种类型的肺细胞。我们的目的是确定一些影响肺内细胞转化的变量。

方法

在不同的实验中,小鼠接受不同剂量的全身照射,随后移植来自绿色荧光蛋白(GFP)阳性(C57BL/6-TgN[ACTbEGFP]1Osb)小鼠的全骨髓或各种骨髓细胞亚群(Lin(-/+)、c-kit(-/+)、Sca-1(-/+))。部分小鼠给予肌肉注射心肌毒素和/或用粒细胞集落刺激因子(G-CSF)进行动员。

结果

利用绿色荧光蛋白(GFP)抗体标记以排除自发荧光,并通过解卷积显微镜确定移植后肺样本中GFP与细胞角蛋白的共定位以及CD45的缺失,从而证实移植的骨髓可产生肺上皮细胞。随着辐射剂量增加(1200 cGy时,占所有肺细胞的5.43%),可见更多供体来源的肺细胞(GFP(+)/CD45(-))。在900-cGy组中,61.43%的GFP(+)/CD45(-)细胞也是细胞角蛋白阳性。动员进一步使辐射损伤小鼠中的GFP(+)/CD45(-)细胞增加至7.88%。在移植了Lin(-)、c-kit(+)或Sca-1(+)骨髓细胞的辐射损伤小鼠中,高达1.67%的肺细胞为GFP(+)/CD45(-)。Lin(+)、c-kit(-)和Sca-1(-)亚群未显著植入肺组织。

结论

我们已证实骨髓细胞能够产生肺上皮细胞,并确定辐射剂量和G-CSF动员是影响骨髓细胞产生肺细胞的变量。此外,假定的产生肺细胞的骨髓细胞具有造血干细胞的表型。

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