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. 2018 Nov 3:21:1853-1857.
doi: 10.1016/j.dib.2018.10.170. eCollection 2018 Dec.

Dataset on the relation of synthetic super para magnetic nanoparticles coated with various electric charges and fibrillation of albumin protein

Affiliations

Dataset on the relation of synthetic super para magnetic nanoparticles coated with various electric charges and fibrillation of albumin protein

Negin Javdani et al. Data Brief. .

Abstract

The data provided in this article are related to the research article entitled "Effect of Super Magnetic Nanoparticles Coated with Various Electric Charges on α-Synuclein Protein Fibrillation Process" (Javdani et al.). This article describes how electrically different charged and concentrated iron oxide nanoparticles synthesized using reverse co-precipitation method affects the fibrillation of albumin protein.

Keywords: Albumin; Fibrillation; Iron Oxide; Nanoparticle.

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Figures

Fig. 1
Fig. 1
The size and chemical compositions of nanoparticles I (A) and II (B) were investigated using TEM.
Fig. 2
Fig. 2
Magnetic saturation diagram of synthesized iron oxide nanoparticles type I (a) and II (b).
Fig. 3
Fig. 3
Goethite Standard Models (A) (α-FeO (OH)), Hematite (B) (α-Fe2O3), Magnetite (C) (Fe3O4) and XRD model of synthesized nanoparticle samples type I (D), II (E).
Fig. 4
Fig. 4
The relation between synthetic iron oxide nanoparticles with various surface charges and fibrillation of albumin investigated by THT.

References

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    1. Mahmoudi M., Simchi A., Imani M., Shokrgozar M.A., Milani A.S., Häfeli U.O., Stroeve P. A new approach for the in vitro identification of the cytotoxicity of superparamagnetic iron oxide nanoparticles. Colloids Surf. B: Biointerfaces. 2010;75(1):300–309. - PubMed
    1. Nilsson M.R. Techniques to study amyloid fibril formation in vitro. Methods. 2004;34(1):151–160. - PubMed

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