首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Ni2+-zeolite/ferrosphere and Ni2+-silica/ferrosphere beads for magnetic affinity separation of histidine-tagged proteins
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Ni2+-zeolite/ferrosphere and Ni2+-silica/ferrosphere beads for magnetic affinity separation of histidine-tagged proteins

机译:Ni2 +-沸石/铁氧体和Ni2 +-二氧化硅/铁氧体磁珠用于组氨酸标记蛋白的磁亲和分离

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摘要

Magnetic Ni2+-zeolite/ferrosphere and Ni2+-silica/ferrosphere beads (Ni-ferrosphere beads - NFB) of a core-shell structure were synthesized starting from coal fly ash ferrospheres having diameters in the range of 0.063-0.050 mm. The strategy of NFB fabrication is an oriented chemical modification of the outer surface preserving the magnetic core of parent beads with the formation of micro-mesoporous coverings. Two routes of ferrosphere modification were realized, such as (i) hydrothermal treatment in an alkaline medium resulting in a NaP zeolite layer and (ii) synthesis of micro-mesoporous silica on the glass surface using conventional methods. Immobilization of Ni2+ ions in the siliceous porous shell of the magnetic beads was carried out via (i) the ion exchange of Na+ for Ni2+ in the zeolite layer or (ii) deposition of NiO clusters in the zeolite and silica pores. The final NFB were tested for affinity in magnetic separation of the histidine-tagged green fluorescent protein (GFP) directly from a cell lysate. Results pointed to the high affinity of the magnetic beads towards the protein in the presence of 10 mM EDTA. The sorption capacity of the ferrosphere-based Ni-beads with respect to GFP was in the range 1.5-5.7 mg cm(-3).
机译:从直径为0.063-0.050mm的粉煤灰铁球开始合成具有核-壳结构的磁性Ni 2+沸石/铁球和Ni 2+二氧化硅/铁球珠(Ni-铁球珠-NFB)。 NFB制造的策略是对外表面进行定向化学修饰,以保留母珠的磁芯并形成微介孔覆盖层。实现了铁氧体改性的两种途径,例如(i)在碱性介质中进行水热处理,形成NaP沸石层,以及(ii)使用常规方法在玻璃表面合成微介孔二氧化硅。将Ni 2+离子固定在磁珠的硅质多孔壳中是通过以下方式进行的:(i)Na +与沸石层中Ni2 +的离子交换,或(ii)NiO团簇在沸石和二氧化硅孔中的沉积。测试了最终的NFB在直接从细胞裂解液中磁性分离组氨酸标签的绿色荧光蛋白(GFP)的亲和力。结果表明在10 mM EDTA存在下,磁珠对蛋白质的高度亲和力。铁氧体基镍珠对GFP的吸附能力在1.5-5.7 mg cm(-3)范围内。

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