共 49 条
Laser-Ablative Synthesis of Silicon-Iron Composite Nanoparticles for Theranostic Applications
被引:4
作者:
Bubnov, Alexander A.
[1
,2
]
Belov, Vladimir S.
[1
]
Kargina, Yulia V.
[1
,3
]
Tikhonowski, Gleb V.
[1
]
Popov, Anton A.
[1
]
Kharin, Alexander Yu.
[1
]
Shestakov, Mikhail V.
[1
,4
]
Perepukhov, Alexander M.
[5
]
Syuy, Alexander V.
[5
]
Volkov, Valentyn S.
[5
]
Khovaylo, Vladimir V.
[6
]
Klimentov, Sergey M.
[1
]
Kabashin, Andrei V.
[7
]
Timoshenko, Victor Yu.
[1
,3
]
机构:
[1] Natl Nucl Res Univ MEPhI, Inst Engn Phys Biomed PhysBio, Moscow 115409, Russia
[2] Endocrinol Res Ctr, Dmitry Ulyanov St 11, Moscow 292236, Russia
[3] Lomonosov Moscow State Univ, Fac Phys, Leninskie Gory 1, Moscow 119991, Russia
[4] Russian State Agrarian Univ, Moscow Timiryazev Agr Acad, Moscow 127434, Russia
[5] Moscow Inst Phys & Technol, Dolgoprudnyi 141700, Moscow, Russia
[6] Natl Univ Sci & Technol MISIS, Dept Funct Nanosyst & High Temp Mat, Leninskiy Prospekt 4, Moscow 119049, Russia
[7] Aix Marseille Univ, LP3, CNRS, Campus Luminy Case 917, F-13288 Marseille, France
基金:
俄罗斯科学基金会;
关键词:
laser ablation in liquids;
composite nanoparticles;
photothermal therapy;
magnetic resonance imaging;
silicon;
iron silicide;
theranostics;
OXIDE NANOPARTICLES;
POROUS SILICON;
MAGNETIC-PROPERTIES;
HEAT CONVERSION;
NANOCRYSTALS;
CONTRAST;
AGENT;
GOLD;
MRI;
RESONANCE;
D O I:
10.3390/nano13152256
中图分类号:
O6 [化学];
学科分类号:
0703 ;
摘要:
The combination of photothermal and magnetic functionalities in one biocompatible nanoformulation forms an attractive basis for developing multifunctional agents for biomedical theranostics. Here, we report the fabrication of silicon-iron (Si-Fe) composite nanoparticles (NPs) for theranostic applications by using a method of femtosecond laser ablation in acetone from a mixed target combining silicon and iron. The NPs were then transferred to water for subsequent biological use. From structural analyses, it was shown that the formed Si-Fe NPs have a spherical shape and sizes ranging from 5 to 150 nm, with the presence of two characteristic maxima around 20 nm and 90 nm in the size distribution. They are mostly composed of silicon with the presence of a significant iron silicide content and iron oxide inclusions. Our studies also show that the NPs exhibit magnetic properties due to the presence of iron ions in their composition, which makes the formation of contrast in magnetic resonance imaging (MRI) possible, as it is verified by magnetic resonance relaxometry at the proton resonance frequency. In addition, the Si-Fe NPs are characterized by strong optical absorption in the window of relative transparency of bio-tissue (650-950 nm). Benefiting from such absorption, the Si-Fe NPs provide strong photoheating in their aqueous suspensions under continuous wave laser excitation at 808 nm. The NP-induced photoheating is described by a photothermal conversion efficiency of 33-42%, which is approximately 3.0-3.3 times larger than that for pure laser-synthesized Si NPs, and it is explained by the presence of iron silicide in the NP composition. Combining the strong photothermal effect and MRI functionality, the synthesized Si-Fe NPs promise a major advancement of modalities for cancer theranostics, including MRI-guided photothermal therapy and surgery.
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