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General preparation of novel core–shell heme protein–Au–polydopamine–Fe_3O_4 magnetic bionanoparticles for direct electrochemistry

机译:用于直接电化学的新型核-壳血红素蛋白-Au-多巴胺-Fe_3O_4磁性生物纳米粒子的一般制备

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摘要

Inspired by adhesive proteins secreted by mussels, a general biomolecule immobilization approach has been proposed to the synthesis of multifunctional core–shell heme protein–Au–polydopamine–Fe_3O_4 magnetic bionanoparticles (heme protein–Au–PDA–Fe_3O_4 MBNPs) using one-pot chemical polymerization. Scanning electron microscope, energy dispersive X-ray spectrometer, UV–vis spectroscopy, and electrochemical methods were used to characterize the heme protein–Au–PDA–Fe_3O_4 MBNPs. Results demonstrated that the resultant MBNPs not only had the magnetism of Fe_3O_4 nanoparticles which made them easily manipulated by an external magnetic field, but also had the excellent biocompatibility and good conductivity of PDA and Au nanoparticles which could maintain the native structure of the heme proteins, and facilitated the direct electrochemistry of heme proteins including hemoglobin (Hb), myoglobin (Mb) and horseradish peroxidase (HRP) in the biofilm. Hence, the protein–Au–PDA–Fe_3O_4 biofilm electrode displayed excellent catalytic performance for H_2O_2. This facile, versatile, and inexpensive proteins immobilization platform is promising for the preparation of many other MBNPs with interesting properties and application potentials in many fields, such as biosensing, biocatalysis, biofuel cells, and bioaffinity separation.
机译:受贻贝分泌的粘附蛋白的启发,提出了一种通用的生物分子固定化方法,用于通过一锅法化学合成多功能核-壳血红素蛋白-Au-聚多巴胺-Fe_3O_4磁性生物纳米粒子(血红素蛋白-Au-PDA-Fe_3O_4 MBNP)聚合。扫描电子显微镜,能量色散X射线光谱仪,紫外可见光谱和电化学方法用于表征血红素蛋白–Au–PDA–Fe_3O_4 MBNP。结果表明,所得MBNPs不仅具有Fe_3O_4纳米粒子的磁性,使其易于被外部磁场操纵,而且具有出色的生物相容性和PDA和Au纳米粒子的良好电导性,可以保持血红素蛋白的天然结构,并促进了生物膜中血红蛋白包括血红蛋白(Hb),肌红蛋白(Mb)和辣根过氧化物酶(HRP)的直接电化学。因此,蛋白质–Au–PDA–Fe_3O_4生物膜电极对H_2O_2表现出出色的催化性能。这种简便,通用且廉价的蛋白质固定平台有望用于制备许多其他具有重要特性和应用潜力的MBNP,例如生物传感,生物催化,生物燃料电池和生物亲和分离等。

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