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亚细胞分区如何有助于理解蜗牛体内重金属的积累和消除动力学。

How subcellular partitioning can help to understand heavy metal accumulation and elimination kinetics in snails.

作者信息

Gimbert Frédéric, Vijver Martina G, Coeurdassier Michaël, Scheifler Renaud, Peijnenburg Willie J G M, Badot Pierre-Marie, de Vaufleury Annette

机构信息

Department of Chrono-Environment, Mixed Research Unit, University of Franche-Comte, Bensacon Cedex, France.

出版信息

Environ Toxicol Chem. 2008 Jun;27(6):1284-92. doi: 10.1897/07-503. Epub 2008 Jan 29.

Abstract

To understand bioaccumulation kinetics of metals within biota inhabiting industrially contaminated soils, toxicokinetic dynamics and subcellular fractionation were carried out with the terrestrial snail Helix aspersa in a long-term (six-month) laboratory experiment. Accumulation and elimination kinetics were determined for Cd, Pb, and Zn in both viscera and foot of snails and were described accurately by one-compartment models. The subcellular fractions were obtained by sequential centrifugations and were analyzed by isolating metal-rich granules, tissue fragments, and cytosolic fractions. Different fractions showed metal-specific binding capacities that might be useful in identifying the biological significance of accumulated metal levels in snails. Cadmium was retrieved mainly from the cytosolic fraction, where it was stored in the long term and not excreted, thus explaining the linear accumulation patterns. Most of the accumulated Pb was found in the granular fraction, and snails appeared able to excrete these concretions, leading to achievement of a steady state in internal Pb body burdens. Significant levels of Pb, however, were retrieved at the end of the depuration phase and retained in the cell debris fraction. Zinc showed affinities for both cytosolic and granular fractions, leading to intermediate uptake and excretion patterns. The dynamics of the different sequestration forms at the subcellular level support the observed kinetics of metal body burdens and, in association with the determination of uptake fluxes, allow precise assessment of metal accumulation in snails.

摘要

为了解栖息在受工业污染土壤中的生物体内金属的生物累积动力学,在一项为期六个月的长期实验室实验中,对陆生蜗牛(即褐云玛瑙螺)进行了毒物动力学动态研究和亚细胞分级分离。测定了蜗牛内脏和足部中镉、铅和锌的累积和消除动力学,并通过单室模型进行了准确描述。通过连续离心获得亚细胞级分,并通过分离富含金属的颗粒、组织碎片和胞质级分进行分析。不同级分显示出金属特异性结合能力,这可能有助于确定蜗牛体内累积金属水平的生物学意义。镉主要从胞质级分中回收,在那里它长期储存且不排泄,从而解释了线性累积模式。大部分累积的铅存在于颗粒级分中,并且蜗牛似乎能够排泄这些凝结物,从而使体内铅负荷达到稳态。然而,在净化阶段结束时,仍回收了大量铅,并保留在细胞碎片级分中。锌对胞质和颗粒级分均有亲和力,导致中间的摄取和排泄模式。亚细胞水平上不同螯合形式的动态变化支持了观察到的金属体内负荷动力学,并且与摄取通量的测定相结合,能够精确评估蜗牛体内的金属累积情况。

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