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Effect of pH and phosphate on trapping capacity of various heavy metal ions with ferritin reactor in flowing seawater

机译:pH和磷酸盐对铁蛋白反应器在海水中捕集各种重金属离子的影响

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摘要

We describe a protein reactor consisting of native liver ferritin of Dasyatis akajei (DALE) and a dialysis bag. Our goal was to study a ferritin reactor for its capacity to trap various heavy metal ions (M2+) in flowing seawater. The reactor is sensitive and inexpensive and can be operated by nonprofessional technicians. A positive relationship between the number of trapped M2+ with the DALF reactor and its concentration in the flowing seawater was observed. Both the pH in the medium and the phosphate content within the ferritin cavity strongly affected trapping capacity. It was found that the ferritin released its phosphate compound directly with a shift in pH without the need for releasing reagent, which differs from the phosphate release characteristics of horse spleen ferritin, as previously described. This behavior evidently makes the trapping capacity with the ferritin reactor weaken, indicating that this trapping capacity is tightly connected to its phosphate compound. Our study shows that a self-regulation ability of the ferritin shell rather than its phosphate compound plays an important role in controlling the rate and capacity of trapping M2+. The ferritin reactor was constructed to monitor the contamination level of M2+ in flowing seawater. Our preliminary data along with fieldwork indicate that the DALF reactor is an analytical means for effectively monitoring the contamination level of M2+ in flowing seawater.
机译:我们描述了由Dasyatis akajei(DALE)和透析袋的天然肝铁蛋白组成的蛋白质反应器。我们的目标是研究铁蛋白反应器能够捕获流动的海水中的各种重金属离子(M2 +)。该反应器灵敏且便宜,可以由非专业技术人员操作。观察到在DALF反应器中捕获的M2 +数量与其在流动的海水中的浓度之间呈正相关。培养基中的pH值和铁蛋白腔中的磷酸盐含量都强烈影响捕集能力。如前所述,发现铁蛋白随pH的变化直接释放其磷酸盐化合物而不需要释放试剂,这不同于马脾铁蛋白的磷酸盐释放特性。这种行为显然使铁蛋白反应器的捕集能力减弱,表明该捕集能力与其磷酸盐化合物紧密相连。我们的研究表明,铁蛋白壳而不是其磷酸盐化合物的自我调节能力在控制捕获M2 +的速率和能力中起着重要作用。铁蛋白反应器可监测流动的海水中M2 +的污染水平。我们的初步数据以及现场工作表明,DALF反应器是有效监测流动海水中M2 +污染水平的一种分析手段。

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