Method for preparing transmission electron microscopy sample of biomimetically synthesized magnetic ferritin nanoparticles
A technology of transmission electron microscope samples and nanoparticles, which is applied in the direction of material analysis, measurement device, and instrument using wave/particle radiation, can solve the problems of difficult preparation, unclean backing of ultra-thin carbon film carrier mesh, low efficiency, etc. Achieve high preparation efficiency, maintain intrinsic dispersion, and eliminate the effects of agglomeration
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Embodiment 1
[0064] The buffer solution of magnetic ferritin nanoparticles (P-MHFn-5000) obtained by mineralizing recombinant human H subunit ferritin expressed by Pichia pastoris into 5000 iron atoms was determined by BCA kit. Put the amount into a 1.5ml centrifuge tube, add deionized water with a resistivity of 18.2MΩ·cm in proportion, and dilute it to a mixed solution with a concentration of 0.1mg / ml. The solution is slightly yellowish to the naked eye; The mixed solution cooling bath in the tube is ultrasonically oscillated, and ice cubes are added to the ultrasonic wave for cooling, and the ultrasonic time is 10 minutes to obtain a fully mixed sample suspension; select a nickel mesh ultra-thin carbon film carrier grid with a diameter of 3mm and a thickness of <7nm; use The ion fan static eliminator performs electrostatic and dust removal treatment on the ultra-thin carbon film carrier net of the nickel mesh. and time for 10s, then use tweezers to turn the other side of the ultra-thin ...
Embodiment 2
[0071]The magnetic ferritin nanoparticles (E-MHFn-800 ) buffer solution, BCA kit was used for protein concentration determination, M-HFn was diluted to 0.1mg / mL test sample with deionized water with a resistivity of 18.2MΩ·cm; The bath was ultrasonically oscillated, and ice cubes were added to the ultrasonic wave for cooling. The ultrasonic time was 10 minutes to obtain a fully mixed sample suspension; a nickel mesh ultra-thin carbon film carrier grid with a diameter of 3mm and a thickness of <7nm was selected; an ion fan static eliminator was used to The ultra-thin carbon film carrier net of nickel mesh is used for electrostatic dust removal treatment. The ultra-thin carbon film carrier net is placed in a glass culture dish, 30cm away from the ion fan static eliminator, the air volume is controlled at 0.55m3 / min, and the neutralization time is 10s, and then used The tweezers turned the other side of the ultra-thin carbon film carrier grid up, and performed the same operation ...
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