Carpentieri U, Myers J, Daeschner C W, Haggard M E
Department of Pediatrics, University of Texas Medical Branch, Galveston 77550.
Biol Trace Elem Res. 1988 Jul;16(2):165-76. doi: 10.1007/BF02797101.
The effects of simultaneous changes of calcium, magnesium, iron, copper, and zinc concentrations were evaluated in normal human T and B lymphocytes, cultured in cation-depleted media. Optimal concentrations for thymidine incorporation (TI) in both cell populations were Fe and Zn 15 microM and Cu 5 microM; for T cells Ca 2 mM and Mg 4 mM; for B cells Ca 4 mM and Mg 6 mM. TI decreased with increasing molarity of cations and the decrease was particularly apparent with Cu. Minimal amounts of Ca and Mg (0.5 mM) were necessary for growth, even in presence of optimal concentrations of Fe, Cu, and Zn. Fe and Cu showed synergistic stimulatory effects at low concentrations and synergistic inhibitory effects at high concentrations. Antagonism between Fe and Zn, Cu and Zn, and Ca and Zn was also demonstrated. CD4/CD8 increased with PHA stimulation in presence of Zn, and decreased with ConA stimulation in presence of Zn or Fe. The results demonstrate: (1) the relationship and interdependence of Fe, Cu, and Zn concentrations in modulating the growth of normal lymphocytes; (2) the stimulatory effects of Fe on B cells and Zn on CD8 positive cells; (3) the inhibitory effect of Cu at concentrations lower than those of Fe and Zn; (4) the requirement of Ca and Mg in certain concentration and ratio for the action of the other cations; and (5) the Ca and Mg requirement for the growth of B cells higher than T cells.
在缺乏阳离子的培养基中培养的正常人T淋巴细胞和B淋巴细胞中,评估了钙、镁、铁、铜和锌浓度同时变化的影响。两种细胞群体中胸苷掺入(TI)的最佳浓度为铁和锌15微摩尔/升,铜5微摩尔/升;T细胞的钙为2毫摩尔/升,镁为4毫摩尔/升;B细胞的钙为4毫摩尔/升,镁为6毫摩尔/升。TI随着阳离子摩尔浓度的增加而降低,这种降低在铜的情况下尤为明显。即使存在最佳浓度的铁、铜和锌,生长也需要最低量的钙和镁(0.5毫摩尔/升)。铁和铜在低浓度时表现出协同刺激作用,在高浓度时表现出协同抑制作用。还证明了铁与锌、铜与锌以及钙与锌之间的拮抗作用。在锌存在的情况下,CD4/CD8随着PHA刺激而增加,在锌或铁存在的情况下,随着ConA刺激而降低。结果表明:(1)铁、铜和锌浓度在调节正常淋巴细胞生长中的关系和相互依赖性;(2)铁对B细胞和锌对CD8阳性细胞的刺激作用;(3)铜在低于铁和锌的浓度下的抑制作用;(4)钙和镁在特定浓度和比例下对其他阳离子作用的需求;(5)B细胞生长对钙和镁的需求高于T细胞。