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Effects of different transferrin forms on transferrin receptor expression, iron uptake, and cellular proliferation of human leukemic HL60 cells. Mechanisms responsible for the specific cytotoxicity of transferrin-gallium.

机译:不同运铁蛋白形式对人白血病HL60细胞运铁蛋白受体表达,铁吸收和细胞增殖的影响。负责运铁蛋白-镓特定细胞毒性的机制。

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摘要

We have previously shown that human leukemic cells proliferate normally in serum-free media containing various transferrin forms, but the addition of transferrin-gallium leads to inhibition of cellular proliferation. Because gallium has therapeutic potential, the effects of transferrin-gallium on leukemic cell proliferation, transferrin receptor expression, and cellular iron utilization were studied. The cytotoxicity of gallium is considerably enhanced by its binding to transferrin and cytotoxicity can be reversed by transferrin-iron but not by other transferrin forms. Exposure to transferrin-gallium leads to a marked increase in cell surface transferrin binding sites, but despite this, cellular 59Fe incorporation is inappropriately low. Although shunting of transferrin-gallium to another cellular compartment has not been ruled out, other studies suggest that transferrin-gallium impairs intracellular release of 59Fe from transferrin by interfering with processes responsible for intracellular acidification. These studies, taken together, demonstrate that inhibition of cellular iron incorporation by transferrin-gallium is a prerequisite for inhibition of cellular proliferation.
机译:先前我们已经表明,人类白血病细胞可以在含有各种转铁蛋白形式的无血清培养基中正常增殖,但是添加转铁蛋白镓会抑制细胞增殖。由于镓具有治疗潜力,因此研究了转铁蛋白镓对白血病细胞增殖,转铁蛋白受体表达和细胞铁利用的影响。镓与运铁蛋白的结合可大大增强镓的细胞毒性,运铁蛋白-铁可逆转细胞毒性,而其他运铁蛋白形式则不能。暴露于转铁蛋白镓会导致细胞表面转铁蛋白结合位点显着增加,但是尽管如此,细胞中59Fe的掺入量仍然过低。尽管尚未排除转铁蛋白-镓与另一个细胞室的分流,但其他研究表明,转铁蛋白-镓通过干扰负责细胞内酸化的过程而损害了转铁蛋白中胞内59Fe的释放。这些研究合在一起证明,通过运铁蛋白-镓抑制细胞铁的掺入是抑制细胞增殖的先决条件。

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