Methylene Blue-Containing Silica-Coated Magnetic Particles: A Potential Magnetic Carrier for Photodynamic Therapy
Магнитные частицы с силикатным покрытием, содержащие метиленовый синий: потенциальный магнитный носитель для фотодинамической терапии
2007-06-23
SCID: 54.1/zb4gwd6c
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Magnetic resonance imagingMethylene bluePhotodynamic therapySilica-coated magnetic particlesSinglet oxygen
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Abstract (AI)
We present the preparation and characterization of methylene blue-containing silica-coated magnetic particles. The entrapment of methylene blue (MB), a photodynamic therapy drug under study in our group, in the silica matrix took place during the growth of a silica layer over a magnetic core composed of magnetite nanoparticles. The resulting material was characterized by transmission electron microscopy (TEM), light scattering, and X-ray diffraction. It is composed of approximately 30 nm silica spheres containing magnetic particles of 11 +/- 2 nm and methylene blue entrapped in the silica matrix. The immobilized drug can generate singlet oxygen, which was detected by its characteristic phosphorescence decay curve in the near-infrared and by a chemical method using 1,3-diphenylisobenzofuran to trap singlet oxygen. The lifetime of singlet oxygen was determined to be 52 micros (in acetonitrile) and 3 micros (in water), with both values being in good agreement with those in the literature. The release of singlet oxygen (etaDelta) was affected by the encapsulation of MB in the silica matrix, which caused a reduction to 6% of the quantum yield of MB free in solution. The magnetization curve confirmed the superparamagnetic behavior with a reduced saturation magnetization in respect to uncoated magnetic nanoparticles, which is consistent with the presence of a diamagnetic component over the magnetite surface. The result is a single particle platform that combines therapy (photosensitizer) and diagnostic (MRI contrast agent) possibilities at the same time, as well as drug targeting.
Key Findings
1
Entrapped methylene blue remains photodynamically active and generates singlet oxygen, confirmed by near-infrared phosphorescence and chemical trapping.
2
Methylene blue was successfully entrapped during silica coating of magnetite nanoparticles, producing approximately 30 nm magnetic silica spheres.
3
Silica encapsulation reduced the singlet-oxygen quantum yield to 6% of free methylene blue, while enabling a platform combining photodynamic therapy, MRI contrast, and magnetic targeting.
4
Singlet-oxygen lifetimes were 52 μs in acetonitrile and 3 μs in water, consistent with literature values.
5
The particles contain magnetite cores of 11 ± 2 nm and exhibit superparamagnetic behavior, with reduced saturation magnetization after silica coating.
Research Object
methylene blue-containing silica-coated magnetic particles composed of a magnetite nanoparticle core and a silica matrix
Research Subject
the particles’ structural characteristics, singlet-oxygen generation and lifetime, photodynamic activity, superparamagnetic behavior, and potential for combined therapy, MRI diagnostics, and drug targeting
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2007-06-23
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