首页> 外文期刊>American Journal of Pathology: Official Publication of the American Association of Pathologists >High-resolution imaging and antitumor effects of GFP(+) bone marrow-derived cells homing to syngeneic mouse colon tumors.
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High-resolution imaging and antitumor effects of GFP(+) bone marrow-derived cells homing to syngeneic mouse colon tumors.

机译:归巢于同系小鼠结肠肿瘤的GFP(+)骨髓衍生细胞的高分辨率成像和抗肿瘤作用。

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摘要

Bone marrow-derived cells (BMDCs) participate in the growth and spread of tumors of the breast, brain, lung, and stomach. To date, there are limited reports of bone marrow involvement in colon cancer pathogenesis, but such findings would have the potential to generate novel treatments for colon cancer patients. We have established a mouse model for imaging BMDCs from whole tumor to single-cell resolution, whereby the bone marrow of lethally irradiated host animals is reconstituted with EGFP-expressing bone marrow cells from matched TgActb(EGFP) donors. The BM transplants yield mice with fluorescently labeled bone marrow, and so BMDCs can subsequently be monitored within a tumor through optical imaging. Successful BM reconstitution was confirmed at 8 weeks after transplantation, when surviving BALB/c mice were injected with CT26 mouse colon cancer cells. We find that up to 45% of cells dissociated from the tumors are GFP(+) and approximately 50% of Lin(+), CD11b(+), and CD3(+) cells express high levels of GFP. Notably, tumor growth is reduced in BM transplanted animals, compared with untransplanted host mice or EGFP-expressing BM donor mice. A needed next step is to separate the molecular and cellular (eg, T cells, NK cells, macrophages) bases of the antitumor effect of the BMDCs from any protumorigenic effect that could be subverted for therapeutic gain.
机译:骨髓来源的细胞(BMDC)参与乳腺,脑,肺和胃肿瘤的生长和扩散。迄今为止,关于骨髓参与结肠癌发病机理的报道很少,但是这种发现将有可能为结肠癌患者产生新的治疗方法。我们已经建立了一个小鼠模型,用于对从整个肿瘤到单细胞分辨率的BMDC进行成像,从而用与之匹配的TgActb(EGFP)供体表达EGFP的骨髓细胞重建经致死性照射的宿主动物的骨髓。 BM移植可产生带有荧光标记骨髓的小鼠,因此随后可通过光学成像在肿瘤内监测BMDC。移植后第8周,当对存活的BALB / c小鼠注射CT26小鼠结肠癌细胞时,证实了BM成功重构。我们发现从肿瘤分离的细胞中多达45%为GFP(+),而Lin(+),CD11b(+)和CD3(+)细胞中约有50%表达高水平的GFP。值得注意的是,与未移植的宿主小鼠或表达EGFP的BM供体小鼠相比,BM移植动物的肿瘤生长降低。下一步需要做的是将BMDCs抗肿瘤作用的分子和细胞(例如T细胞,NK细胞,巨噬细胞)碱基与可能转化为治疗收益的任何致瘤作用分开。

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