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Contrast Agents Based on Iron Oxide Nanoparticles for Clinical Magnetic Resonance Imaging

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Bulletin of Experimental Biology and Medicine Aims and scope

Magnetic resonance imaging (MRI) is one of the most perspective methods of noninvasive visualization in medicine, and use of contrast agents significantly its potentialities extends. Iron oxide nanoparticles are promising contrast agents, but in fact all the data on their efficiency were obtained in high-field tomographs for experimental animals. We studied the possibility of using magnetic nanoparticles for MRI visualization of rat brain glioblastoma at the most common clinical field 1.5 T The data indicate the efficiency of iron oxide magnetic nanoparticles as contrast agents for 1.5 T MR tomographs.

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References

  1. Abakumov MA, Nukolova NV, Sokolsky-Papkov M, Shein SA, Sandalova TO, Vishwasrao HM, Grinenko NF, Gubsky IL, Abakumov AM, Kabanov AV, Chekhonin VP. VEGF-targeted magnetic nanoparticles for MRI visualization of brain tumor. Nanomedicine.2015;11(4):825-833.

    Article  CAS  PubMed  Google Scholar 

  2. Antonova LKh, Mikhailova GN, Troitskii AV, Borovitskaya IV, Gorshkov PV, Ivanov LI, Demikhov EI, Krokhin ON, Nikulin VYa, Oginov AV, Menushenkov AP, Podlivaev AI, Pokrovskii SV, Rudnev IA. Effect of shock waves on the current-carrying properties of HTSC YBCO(123) tape. Dokl. Physics. 2009;54(10):463-465.

    Article  CAS  Google Scholar 

  3. Bagdinov A, Demikhov E, Kostrov E, Lysenko V, Piskunov N, Rybakov A, Tysyachnykh Yu. Performance test of 1.5 T cryogen-free orthopedic MRI magnet. IEEE Transactions on Applied Superconductivity. 2018;28(3. ID 4400704. doi: https://doi.org/10.1109/TASC.2017.2784402.

    Article  Google Scholar 

  4. Chekhonin VP, Baklaushev VP, Yusubalieva GM, Gurina OI. Targeted transport of 125I-labeled antibody to GFAP and AMVB1 in an experimental rat model of C6 glioma. J. Neuroimmune Pharmacol. 2009;4(1):28-34.

    Article  PubMed  Google Scholar 

  5. Demikhov T, Kostrov E, Lysenko V, Demikhov E, Piskunov N. 9 T NbTi cryogen free HTS test stand. IEEE Transactions on Applied Superconductivity. 2012;22(3. ID 9501004. doi: https://doi.org/10.1109/TASC.2011.2178994.

    Article  CAS  Google Scholar 

  6. Demikhov E, Kostrov E, Lysenko V, Piskunov N, Troitskiy V. 8 T cryogen free magnet with a variable temperature insert using a heat switch. IEEE Transactions on Applied Superconductivity. 2010;20(3):612-615.

    Article  CAS  Google Scholar 

  7. Kostrov E, Demikhov E, Bagdinov A, Demikhov T, Lysenko V, Tysyachnykh Yu. Magnetic field operation and shielding of a G-M cryocooler. IEEE Transactions on Applied Superconductivity. 2016;26(4. ID 0601305. doi: https://doi.org/10.1109/TASC.2016.2522821.

    Article  Google Scholar 

  8. Naumov PG, Lyubutin IS, Frolov KV, Demikhov EI. A closedcycle cryostat for optical and Mössbauer spectroscopy in the temperature range 4.2-300 K. INET. 2010;53(5):770-776.

    CAS  Google Scholar 

  9. Robert P, Violas X, Grand S, Lehericy S, Idée JM, Ballet S, Corot C. Linear gadolinium-based contrast agents are associated with brain gadolinium retention in healthy rats. Invest. Radiol. 2016;51(2):73-82.

    Article  CAS  PubMed  PubMed Central  Google Scholar 

  10. Rohrer M, Bauer H, Mintorovitch J, Requardt M, Weinmann HJ. Comparison of magnetic properties of MRI contrast media solutions at different magnetic field strengths. Invest. Radiol. 2005;40(11):715-724.

    Article  PubMed  Google Scholar 

  11. Rybakov A, Bagdinov A, Demikhov E, Kostrov E, Lysenko V, Piskunov N, Tysyachnykh Yu. 1.5 T cryogen free superconducting magnet for dedicated MRI. IEEE Transactions on Applied Superconductivity. 2016;26(4). ID 4400403. doi: https://doi.org/10.1109/TASC.2016.2517328.

    Article  Google Scholar 

  12. Semkina A, Abakumov M, Grinenko N, Abakumov A, Skorikov A, Mironova E, Davydova G, Majouga A. G, Nukolova N, Kabanov A, Chekhonin V. Core-shell-corona doxorubicinloaded superparamagnetic Fe3O4 nanoparticles for cancer theranostics. Colloids Surf. B. Biointerfaces. 2015;136:1073-1080.

    Article  CAS  PubMed  Google Scholar 

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Correspondence to M. A. Abakumov.

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Translated from Byulleten’ Eksperimental’noi Biologii i Meditsiny, Vol. 167, No. 2, pp. 233-235, February, 2019

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Abakumov, M.A., Ternovoi, S.K., Mazhuga, A.G. et al. Contrast Agents Based on Iron Oxide Nanoparticles for Clinical Magnetic Resonance Imaging. Bull Exp Biol Med 167, 272–274 (2019). https://doi.org/10.1007/s10517-019-04507-y

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  • DOI: https://doi.org/10.1007/s10517-019-04507-y

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