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铅与锌在培养的星形胶质细胞中的相互作用。

Interaction of lead and zinc in cultured astroglia.

作者信息

Rowles T K, Womac C, Bratton G R, Tiffany-Castiglioni E

机构信息

Department of Veterinary Anatomy, Texas A & M University, College Station 77843-4458.

出版信息

Metab Brain Dis. 1989 Sep;4(3):187-201. doi: 10.1007/BF01000295.

Abstract

Astroglia take up lead (Pb) in vivo and in vitro. In view of the fact that zinc affects both tissue deposition of Pb and clinical signs of Pb intoxication, the present study was carried out to test the effects of various Zn levels on lead toxicity in astroglia. Primary cultures of astroglia from 1- to 3-day-old neonatal rats were divided into three groups and cultured in Waymouth's 752/l medium with 0, 1, or 2 microM ZnCl2. Each group was further divided into two subgroups which were treated with either 0, 29.9, or 32.5 mumol of Pb acetate. Cultures were assayed for viability and metal content after 1 and 3 days of continuous exposure to Pb (designated days 1 and 3) as well as 10, 17, and 24 days after the initiation of a 3-day exposure to Pb. The Trypan blue dye exclusion viability assay showed no significant differences between controls and Pb-treated groups except on day 3, at which time the 0 and 2 microM Zn groups treated with Pb had reduced viability. 3H-Leucine incorporation into acid-precipitable proteins (cpm/micrograms protein) was unaffected by Pb or Zn except on days 1 and 17, when cultures given 2 microM Zn and no Pb showed increased incorporation. Pb-treated cultures showed a reduction in cell number which was partially offset in a dose-dependent manner by the presence of Zn in the medium but not enough to mask completely the reduction caused by Pb. Pb produced the following effects on intracellular trace metal concentrations: (1) increased intracellular [Pb]. (2) increased intracellular [Fe], (3) increased intracellular [Cu], and increased intracellular [Zn]. By day 24, intracellular Cu concentrations were normal, but intracellular [Zn] and [Pb] remained elevated in all Pb-treated subgroups. Furthermore, intracellular Fe levels remained increased in the Pb-treated subgroup cultured with 0 microM Zn. Zinc showed a protective effect by (1) reducing intracellular Pb levels and (2) delaying or preventing the Pb-induced increase in intracellular [Fe] and [Zn] but not the increase in intracellular [Cu]. These effects became more pronounced with increasing extracellular Zn concentrations, although intracellular Zn levels did not increase in response to extracellular levels. Increased dietary zinc in rats is known to reduce Pb accumulation in organs. Our results extend this observation to cells in culture and, furthermore, suggest that the Pb-Zn interaction is complex and not simply a substitution of Pb by Zn at the point of absorption through the plasma membrane.

摘要

星形胶质细胞在体内和体外均可摄取铅(Pb)。鉴于锌会影响铅的组织沉积和铅中毒的临床症状,本研究旨在测试不同锌水平对星形胶质细胞中铅毒性的影响。将1至3日龄新生大鼠的星形胶质细胞原代培养物分为三组,分别在含0、1或2微摩尔/升氯化锌的Waymouth's 752/l培养基中培养。每组再进一步分为两个亚组,分别用0、29.9或32.5微摩尔的醋酸铅处理。在连续暴露于铅1天和3天(分别指定为第1天和第3天)以及开始3天铅暴露后的10、17和24天,对培养物进行活力和金属含量测定。台盼蓝染料排斥活力测定显示,对照组和铅处理组之间除第3天外无显著差异,在第3天,用铅处理的0和2微摩尔/升锌组的活力降低。除了在第1天和第17天,3H-亮氨酸掺入酸沉淀蛋白(每分钟计数/微克蛋白)不受铅或锌的影响,在第1天和第17天,给予2微摩尔/升锌且无铅的培养物显示掺入增加。铅处理的培养物细胞数量减少,培养基中锌的存在以剂量依赖的方式部分抵消了这种减少,但不足以完全掩盖铅引起的减少。铅对细胞内微量金属浓度产生以下影响:(1)细胞内[Pb]增加。(2)细胞内[Fe]增加,(3)细胞内[Cu]增加,细胞内[Zn]增加。到第24天,细胞内铜浓度恢复正常,但在所有铅处理的亚组中,细胞内[Zn]和[Pb]仍保持升高。此外,在含0微摩尔/升锌的培养基中培养的铅处理亚组中,细胞内铁水平仍保持升高。锌通过以下方式发挥保护作用:(1)降低细胞内铅水平,(2)延迟或防止铅诱导的细胞内[Fe]和[Zn]增加,但不包括细胞内[Cu]的增加。尽管细胞内锌水平不会因细胞外锌水平的升高而升高,但随着细胞外锌浓度的增加,这些作用变得更加明显。已知大鼠饮食中锌增加会减少器官中铅的积累。我们的结果将这一观察结果扩展到培养的细胞,此外,还表明铅-锌相互作用很复杂,并非简单地在通过质膜吸收时锌取代铅。

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