Albumin-Coated Gold Nanoparticles Functionalised with a Gadolinium-Binding Recombinant Protein for Dual CT/MR Imaging

Gold nanoparticles (AuNPs) are versatile nanomaterial scaffolds for imaging and multifunctional platform development; however, biologically addressable multicomponent coatings often require multistep chemistry that can limit accessibility and reproducibility. Here, we report a one-pot, albumin-mediated synthesis of human serum albumin (HSA)-coated gold nanoparticles (Au–HSA) and their modular functionalisation with F3del-ABD-GFP (FAG), an engineered protein that combines a high-affinity albumin-binding domain with a de novo gadolinium-binding domain. Two preparations, Au–HSA1 and Au–HSA2, with UV–Vis-derived apparent core diameters of approximately 5 and 16 nm, respectively, were obtained by reduction of sodium tetrachloroaurate(III) in the presence of HSA and characterised by UV–Vis spectroscopy, dynamic light scattering, zeta-potential analysis, ICP–AES, SDS–PAGE densitometry, and atomic force microscopy. Recovered-gold yields were 74.8 ± 11.2% (Au–HSA1) and 84.6 ± 9.2% (Au–HSA2). Albumin remained particle-bound in SDS under non-reducing conditions, consistent with thiol-mediated attachment, with an estimated average of approximately 14 HSA molecules per Au–HSA2 particle, calculated using the UV–Vis-derived particle concentration. FAG bound the particle-associated albumin near-stoichiometrically, and pre-loaded FAG:Gd associated with Au–HSA2 under the tested assembly conditions, giving an estimated average batch composition AuNP:HSA:FAG:Gd of 1:14:14:56. In phantom samples, the assembled Au–HSA/FAG:Gd formulation generated qualitative CT and T1-weighted MR signal under the applied acquisition conditions. These imaging findings are qualitative; CT attenuation was not calibrated in Hounsfield units, and MR relaxivity was not determined. No biological, in vivo, safety, or therapeutic studies were performed. Accordingly, the system is presented as a physicochemical proof-of-concept for a modular dual CT/MR imaging platform. Its biological performance, quantitative imaging characteristics, and therapeutic utility require evaluation in future work.

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Journal
Macromol—A Journal of Macromolecular Research
Published
2026-09-24
DOI
https://doi.org/10.3390/macromol6040082
Primary Topic
Nanoparticle-Based Drug Delivery
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article
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Albumin-Coated Gold Nanoparticles Functionalised with a Gadolinium-Binding Recombinant Protein for Dual CT/MR Imaging

Evgenii Aleksandrovich Generalov, Natalia V. Pozdniakova
Macromol—A Journal of Macromolecular Research
Nanoparticle-Based Drug Delivery
article

Albumin-Coated Gold Nanoparticles Functionalised with a Gadolinium-Binding Recombinant Protein for Dual CT/MR Imaging

Evgenii Aleksandrovich Generalov, Natalia V. Pozdniakova
article en

Abstract

Gold nanoparticles (AuNPs) are versatile nanomaterial scaffolds for imaging and multifunctional platform development; however, biologically addressable multicomponent coatings often require multistep chemistry that can limit accessibility and reproducibility. Here, we report a one-pot, albumin-mediated synthesis of human serum albumin (HSA)-coated gold nanoparticles (Au–HSA) and their modular functionalisation with F3del-ABD-GFP (FAG), an engineered protein that combines a high-affinity albumin-binding domain with a de novo gadolinium-binding domain. Two preparations, Au–HSA1 and Au–HSA2, with UV–Vis-derived apparent core diameters of approximately 5 and 16 nm, respectively, were obtained by reduction of sodium tetrachloroaurate(III) in the presence of HSA and characterised by UV–Vis spectroscopy, dynamic light scattering, zeta-potential analysis, ICP–AES, SDS–PAGE densitometry, and atomic force microscopy. Recovered-gold yields were 74.8 ± 11.2% (Au–HSA1) and 84.6 ± 9.2% (Au–HSA2). Albumin remained particle-bound in SDS under non-reducing conditions, consistent with thiol-mediated attachment, with an estimated average of approximately 14 HSA molecules per Au–HSA2 particle, calculated using the UV–Vis-derived particle concentration. FAG bound the particle-associated albumin near-stoichiometrically, and pre-loaded FAG:Gd associated with Au–HSA2 under the tested assembly conditions, giving an estimated average batch composition AuNP:HSA:FAG:Gd of 1:14:14:56. In phantom samples, the assembled Au–HSA/FAG:Gd formulation generated qualitative CT and T1-weighted MR signal under the applied acquisition conditions. These imaging findings are qualitative; CT attenuation was not calibrated in Hounsfield units, and MR relaxivity was not determined. No biological, in vivo, safety, or therapeutic studies were performed. Accordingly, the system is presented as a physicochemical proof-of-concept for a modular dual CT/MR imaging platform. Its biological performance, quantitative imaging characteristics, and therapeutic utility require evaluation in future work.

Macromol—A Journal of Macromolecular ResearchVol. 6(4)
Lomonosov Moscow State University (RU), Ministry of Health of the Russian Federation (RU)
Openalex Percentile: Top 22%
Nanoparticle-Based Drug Delivery
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