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Synthesis, Physicochemical Characterization, and Cytotoxicity Assessment of Rh Nanoparticles with Different Morphologies-as Potential XFCT Nanoprobes

Li, Yuyang (author)
KTH,Biomedicinsk fysik och röntgenfysik
Saladino, Giovanni (author)
KTH,Biomedicinsk fysik och röntgenfysik
Shaker, Kian (author)
KTH,Biomedicinsk fysik och röntgenfysik
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Svenda, Martin (author)
KTH,Biomedicinsk fysik och röntgenfysik
Vogt, Carmen (author)
KTH,Biomedicinsk fysik och röntgenfysik
Brodin, Bertha (author)
Karolinska Institutet,KTH,Biomedicinsk fysik och röntgenfysik
Hertz, Hans (author)
KTH,Biomedicinsk fysik och röntgenfysik
Toprak, Muhammet, 1973- (author)
KTH,Biomedicinsk fysik och röntgenfysik
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 (creator_code:org_t)
2020-10-27
2020
English.
In: Nanomaterials. - : MDPI AG. - 2079-4991. ; 10:11, s. 2129-2129
  • Journal article (peer-reviewed)
Abstract Subject headings
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  • Morphologically controllable synthesis of Rh nanoparticles (NPs) was achieved by the use of additives during polyol synthesis. The effect of salts and surfactant additives including PVP, sodium acetate, sodiumcitrate, CTAB,CTAC,andpotassiumbromideonRhNPsmorphologywasinvestigated. When PVP was used as the only additive, trigonal NPs were obtained. Additives containing Br− ions (CTAB and KBr) resulted in NPs with a cubic morphology, while those with carboxyl groups (sodium citrate and acetate) formed spheroid NPs. The use of Cl− ions (CTAC) resulted in a mixture of polygon morphologies. Cytotoxicity of these NPs was evaluated on macrophages and ovarian cancer cell lines. Membrane integrity and cellular activity are both influenced to a similar extent, for both the cell lines, with respect to the morphology of Rh NPs. The cells exposed to trigonal Rh NPs showed the highest viability, among the NP series. Particles with a mixed polygon morphology had the highest cytotoxic impact, followed by cubic and spherical NPs. The Rh NPs were further demonstrated as contrast agents for X-ray fluorescence computed tomography (XFCT) in a small-animal imaging setting. This work provides a detailed route for the synthesis, morphology control, and characterization of Rh NPs as viable contrast agents for XFCT bio-imaging. 

Subject headings

TEKNIK OCH TEKNOLOGIER  -- Nanoteknik (hsv//swe)
ENGINEERING AND TECHNOLOGY  -- Nano-technology (hsv//eng)

Publication and Content Type

ref (subject category)
art (subject category)

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