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[R-藻红蛋白:一种用于镉离子解毒的天然配体以及硫化镉纳米颗粒合成的隧道基质]

[R-phycoerythrin: a natural ligand for detoxifying cadmium ions and a tunnel matrix for synthesis of cadmium sulfide nanoparticles].

作者信息

Bekasova O D, Brekhovskikh A A, Brykina G D, Dubinchuk V T, Mochalova V S, Kotel'nikov A S

出版信息

Prikl Biokhim Mikrobiol. 2005 May-Jun;41(3):308-14.

Abstract

As evidenced by ion-selective electrode potentiometry, the hexameric R-phycoerythrin (RPE) molecule binds 20-4000 cadmium ions (Cd2+) depending on Cd2+ concentration in the solution. Cadmium ions bound to RPE serve as nuclei of cadmium sulfide crystallization in the presence of sulfide ions. According to spectrometric, electron-microscopic and capillary electrophoresis data, the particles are heteroaggregates of 3.2 x 6 nm in size. The fact that the particle size fits the size of the central tunnel of the RPE molecule and the similarity between the electrophoretic patterns of free RPE and the RPE-CdS complex indicate that the tunnel space, limiting the crystal growth, is the most probable site of nanoparticle formation. Properties of the nanoparticles can be modified by changing temperature, pH, etc. It is concluded that RPE can be used as a reagent for detoxification of cadmium ions and a matrix for synthesis of elongated CdS nanoparticles.

摘要

离子选择性电极电位法证明,六聚体R-藻红蛋白(RPE)分子根据溶液中镉离子(Cd2+)的浓度结合20至4000个镉离子(Cd2+)。在存在硫离子的情况下,与RPE结合的镉离子充当硫化镉结晶的晶核。根据光谱、电子显微镜和毛细管电泳数据,这些颗粒是尺寸为3.2×6纳米的异质聚集体。颗粒尺寸与RPE分子中心通道的尺寸相符,以及游离RPE和RPE-CdS复合物的电泳图谱之间的相似性,这一事实表明,限制晶体生长的通道空间是纳米颗粒形成的最可能位置。通过改变温度、pH等可以改变纳米颗粒的性质。得出的结论是,RPE可用作镉离子解毒试剂和合成细长CdS纳米颗粒的基质。

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