Combined preparation for nanoparticle tumor diagnoses and treatment and preparation method and application thereof
A nanoparticle and tumor diagnosis technology, which is applied in the field of biomedical materials and tumor diagnosis and treatment preparations, can solve the problems of poor targeting function, low drug loading, high immunogenicity, etc., and achieve extended half-life, good biological safety, and reduced Effects of Laser Energy
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Embodiment 1
[0039] The preparation process of the nano-particle tumor diagnostic and therapeutic combination preparation of the present invention (the diagnostic and therapeutic preparation of Prussian blue nanoparticles that efficiently adsorb the radioactive rare earth element lutetium) is as attached figure 1 As shown, taking Prussian blue nanoparticles, radioactive rare earth element lutetium and platelet membrane as an example, the description includes the following steps:
[0040] (1) Preparation of citric acid-modified Prussian blue nanoparticles by hydrothermal method: heating and stirring the citric acid solution of ferric salt and ferric salt in a water bath and then cooling to room temperature to obtain a dark blue liquid. After centrifugal cleaning, put it into freezing Freeze-dried in the dryer into freeze-dried powder. Adjust the preparation process to make the prepared nanoparticles have a particle size of about 100 nm, uniform size, and good dispersion.
[0041] (2) Adsorption ...
Embodiment 2
[0044] The characterization data of the nanoparticle tumor diagnostic and therapeutic combination preparation of the present invention (the diagnostic and therapeutic preparation of Prussian blue nanoparticles that efficiently adsorb the radioactive rare earth element lutetium) is as follows:
[0045] The peak of the absorption spectrum of the Prussian blue nanoparticle solution modified with citric acid prepared by the hydrothermal method is about 700 nm, which is the characteristic absorption peak of the Prussian blue nanoparticle. The hydration radius is 95.72±3.44 nm, and the surface potential is -27.86±0.90 mV. The aqueous solution of Prussian blue nanoparticles is uniform and stable, and there is no aggregation phenomenon. Observation of the shape and size of the Prussian blue nanoparticles by transmission electron microscope found that the shape is a regular hexahedron with a particle size of about 100 nm. figure 2 Shown.
[0046] The ultraviolet-visible-near-infrared absor...
Embodiment 3
[0048] In vivo SPECT / CT imaging includes the following steps:
[0049] (1) Select the tumor size to be approximately 150 mm 3 Of tumor-bearing nude mice (the tumor model is a human colon cancer cell HT-29 model).
[0050] (2) The concentration of tail vein injection is 10 mg mL -1 100μL of Prussian blue nanoparticles that efficiently adsorb the radioactive rare earth element lutetium.
[0051] (3) Monitoring the SPECT / CT imaging of nanoparticles in 24 hours by SPECT / CT.
[0052] The experimental results are attached Figure 5 As shown, 24 hours after drug injection, SPECT / CT imaging light signals can be detected in the tumor site of nude mice. This indicates that nanoparticles can accumulate in a large number of tumor sites in nude mice, and the tumor sites can be imaged by SPECT.
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