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骨髓微环境中的细胞相互作用:内源性集落刺激活性的作用

Cell interactions in the bone marrow microenvironment: role of endogenous colony-stimulating activity.

作者信息

Zipori D

出版信息

J Supramol Struct Cell Biochem. 1981;17(4):347-57. doi: 10.1002/jsscb.380170406.

Abstract

Adherent stromal cells from mouse bone marrow inhibited the formation of granulocyte/monocyte (G/M) colonies induced in vitro by colony-stimulating factor (CSF). This inhibition occurred both when crude conditioned media obtained from various sources were used to induce colony formation or when a pure CSF preparation from mouse lung origin was tested. The inhibition did not appear to be toxic in nature since despite the lack of colony formation, progenitor CFU-C proliferated in the presence of stromal cells. Medium conditioned by adherent stromal cells was devoid of inhibitory activity when incorporated into the culture medium used for G/M colony formation, indicating that the inhibitory activity may not be present in a soluble form. Inhibitors of prostaglandins did not affect G/M colony formation. In contrast, D-glucose and a number of other free monosaccharides but not pyruvate lactate or glycerol induced formation of myeloid colonies in the presence of stromal cells. This did not require addition of exogenous CSF. Released factors concentrated from serum-free medium conditioned by stromal cells exhibited colony-stimulating activity provided that the medium contained a high glucose concentration during incubation. It is proposed that stromal cells produce a resident CSF that, in contrast to exogenous CSF species, is capable of inducing myelopoiesis within the bone and marrow stroma.

摘要

来自小鼠骨髓的贴壁基质细胞抑制了集落刺激因子(CSF)体外诱导的粒细胞/单核细胞(G/M)集落的形成。当使用从各种来源获得的粗制条件培养基诱导集落形成时,或者当测试来自小鼠肺源的纯CSF制剂时,均会出现这种抑制作用。这种抑制作用似乎并非本质上具有毒性,因为尽管缺乏集落形成,但祖细胞CFU-C在基质细胞存在下仍能增殖。当将贴壁基质细胞条件培养基加入用于G/M集落形成的培养基中时,其缺乏抑制活性,这表明抑制活性可能不是以可溶形式存在。前列腺素抑制剂不影响G/M集落形成。相反,D-葡萄糖和许多其他游离单糖,但丙酮酸、乳酸或甘油则不能,在基质细胞存在下能诱导髓系集落形成。这并不需要添加外源性CSF。只要培养基在孵育期间含有高葡萄糖浓度,从基质细胞条件无血清培养基中浓缩的释放因子就表现出集落刺激活性。有人提出,基质细胞产生一种驻留CSF,与外源性CSF种类不同,它能够在骨髓基质内诱导髓系造血。

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