Delforge A, Stryckmans P, Prieels J P, Bieva C, Rongé-Collard E, Schlusselberg J, Efira A
Ann N Y Acad Sci. 1985;459:85-96. doi: 10.1111/j.1749-6632.1985.tb20818.x.
Lactoferrin has been proposed recently as a physiological regulator of the granulocyte-monocyte progenitor (CFU-GM). This glycoprotein, when saturated with iron, has been said to limit the CFU-GM growth by decreasing production and release of colony stimulating activity by monocytes and macrophages. Human milk lactoferrin saturated with iron, at concentrations ranging from 10(-8) M, was added either to endogenously stimulated bone marrow cells or to mononucleated cells used as feeder layers for adherent cell-depleted marrow. Irrespective of the concentration of lactoferrin within the culture system used, no significant inhibition of the CFU-GM growth was observed. Moreover, the CFU-GM stimulating activity of medium conditioned by a 4 day incubation of 1 X 10(6) mononucleated blood cells in the presence or in the absence of lactoferrin was the same. Various possible explanations for not confirming the reported inhibiting activity of iron-saturated lactoferrin were explored: (a) masking inhibition of the system by prostaglandin E2 (PGE2), (b) masking inhibition of the system by bovine lactoferrin present in the fetal calf serum, (c) preinhibition of the system by leukemic-associated inhibitory activity possibly present in the culture system, (d) the iron and calcium content of the culture medium used, (e) the fixation of lactoferrin to plastic compounds, (f) the source of the human lactoferrin used, and (g) the marrow cell separation methods used. None of these factors was shown to play a role in vitro in the activity of lactoferrin and thus no evidence was found for a significant role of lactoferrin in the regulation of human granulopoiesis.
乳铁蛋白最近被认为是粒细胞-单核细胞祖细胞(CFU-GM)的一种生理调节剂。据说这种糖蛋白在与铁饱和时,通过减少单核细胞和巨噬细胞产生和释放集落刺激活性来限制CFU-GM的生长。将浓度范围为10^(-8) M的铁饱和人乳乳铁蛋白添加到内源性刺激的骨髓细胞或用作去除贴壁细胞的骨髓饲养层的单核细胞中。无论所用培养系统中乳铁蛋白的浓度如何,均未观察到对CFU-GM生长的显著抑制。此外,在有或没有乳铁蛋白存在的情况下,1×10^6个单核血细胞孵育4天的条件培养基对CFU-GM的刺激活性是相同的。探讨了未证实铁饱和乳铁蛋白所报道的抑制活性的各种可能解释:(a)前列腺素E2(PGE2)对系统抑制的掩盖作用;(b)胎牛血清中存在的牛乳铁蛋白对系统抑制的掩盖作用;(c)培养系统中可能存在的白血病相关抑制活性对系统的预抑制作用;(d)所用培养基的铁和钙含量;(e)乳铁蛋白与塑料化合物的结合;(f)所用的人乳铁蛋白来源;(g)所用的骨髓细胞分离方法。这些因素在体外均未显示对乳铁蛋白活性起作用,因此未发现乳铁蛋白在人类粒细胞生成调节中起重要作用的证据。