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volume 14 issue 7 pages 1508

Molecular and Nano-Structural Optimization of Nanoparticulate Mn2+-Hexarhenium Cluster Complexes for Optimal Balance of High T1- and T2-Weighted Contrast Ability with Low Hemoagglutination and Cytotoxicity

Irek R Nizameev 1
Kirill V Kholin 1
Marsil K Kadirov 1
Ildus E Ismaev 2
Asiya R Mustafina 1
Publication typeJournal Article
Publication date2022-07-20
scimago Q1
wos Q1
SJR1.075
CiteScore10.0
Impact factor5.5
ISSN19994923
Pharmaceutical Science
Abstract

The present work introduces rational design of nanoparticulate Mn(II)-based contrast agents through both variation of the μ3 (inner) ligands within a series of hexarhenium cluster complexes [{Re6(μ3-Q)8}(CN)6]4− (Re6Q8, Q = S2−, Se2− or Te2−) and interfacial decoration of the nanoparticles (NPs) K4−2xMnxRe6Q8 (x = 1.3 − 1.8) by a series of pluronics (F-68, P-123, F-127). The results highlight an impact of the ligand and pluronic for the optimal colloid behavior of the NPs allowing high colloid stability in ambient conditions and efficient phase separation under the centrifugation. It has been revealed that the K4−2xMnxRe6Se8 NPs and those decorated by F-127 are optimal from the viewpoint of magnetic relaxivities r1 and r2 (8.9 and 10.9 mM−1s−1, respectively, at 0.47 T) and low hemoagglutination activity. The insignificant leaching of Mn2+ ions from the NPs correlates with their insignificant effect on the cell viability of both M-HeLa and Chang Liver cell lines. The T1- and T2-weighted contrast ability of F-127–K4−2xMnxRe6Q8 NPs was demonstrated through the measurements of phantoms at whole body 1.5 T scanner.

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GOST |
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GOST Copy
Akhmadeev B. S. et al. Molecular and Nano-Structural Optimization of Nanoparticulate Mn2+-Hexarhenium Cluster Complexes for Optimal Balance of High T1- and T2-Weighted Contrast Ability with Low Hemoagglutination and Cytotoxicity // Pharmaceutics. 2022. Vol. 14. No. 7. p. 1508.
GOST all authors (up to 50) Copy
Akhmadeev B. S., Nizameev I. R., Kholin K. V., Voloshina A. D., Gerasimova T. I., Gubaidullin A. T., Kadirov M. K., Ismaev I. E., Brylev K. A., Zairov R., Mustafina A. R. Molecular and Nano-Structural Optimization of Nanoparticulate Mn2+-Hexarhenium Cluster Complexes for Optimal Balance of High T1- and T2-Weighted Contrast Ability with Low Hemoagglutination and Cytotoxicity // Pharmaceutics. 2022. Vol. 14. No. 7. p. 1508.
RIS |
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RIS Copy
TY - JOUR
DO - 10.3390/pharmaceutics14071508
UR - https://www.mdpi.com/1999-4923/14/7/1508
TI - Molecular and Nano-Structural Optimization of Nanoparticulate Mn2+-Hexarhenium Cluster Complexes for Optimal Balance of High T1- and T2-Weighted Contrast Ability with Low Hemoagglutination and Cytotoxicity
T2 - Pharmaceutics
AU - Akhmadeev, Bulat S.
AU - Nizameev, Irek R
AU - Kholin, Kirill V
AU - Voloshina, A. D.
AU - Gerasimova, Tatiana I.
AU - Gubaidullin, Aidar T.
AU - Kadirov, Marsil K
AU - Ismaev, Ildus E
AU - Brylev, Konstantin A.
AU - Zairov, Rustem
AU - Mustafina, Asiya R
PY - 2022
DA - 2022/07/20
PB - MDPI
SP - 1508
IS - 7
VL - 14
PMID - 35890403
SN - 1999-4923
ER -
BibTex |
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BibTex (up to 50 authors) Copy
@article{2022_Akhmadeev,
author = {Bulat S. Akhmadeev and Irek R Nizameev and Kirill V Kholin and A. D. Voloshina and Tatiana I. Gerasimova and Aidar T. Gubaidullin and Marsil K Kadirov and Ildus E Ismaev and Konstantin A. Brylev and Rustem Zairov and Asiya R Mustafina},
title = {Molecular and Nano-Structural Optimization of Nanoparticulate Mn2+-Hexarhenium Cluster Complexes for Optimal Balance of High T1- and T2-Weighted Contrast Ability with Low Hemoagglutination and Cytotoxicity},
journal = {Pharmaceutics},
year = {2022},
volume = {14},
publisher = {MDPI},
month = {jul},
url = {https://www.mdpi.com/1999-4923/14/7/1508},
number = {7},
pages = {1508},
doi = {10.3390/pharmaceutics14071508}
}
MLA
Cite this
MLA Copy
Akhmadeev, Bulat S., et al. “Molecular and Nano-Structural Optimization of Nanoparticulate Mn2+-Hexarhenium Cluster Complexes for Optimal Balance of High T1- and T2-Weighted Contrast Ability with Low Hemoagglutination and Cytotoxicity.” Pharmaceutics, vol. 14, no. 7, Jul. 2022, p. 1508. https://www.mdpi.com/1999-4923/14/7/1508.