Composite sound-sensitive agent and preparation method thereof
A technology of composite sound and sonosensitizer, applied in chemical instruments and methods, drug combinations, manganese compounds, etc., can solve the problems of low efficiency of perfluorocarbon loading oxygen, cause side effects, and body threats, and improve tumor immunity. The effect of suppressing the microenvironment, optimizing diagnosis and treatment performance, and realizing real-time monitoring
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Embodiment 1
[0037] The preparation method of composite sound sensitizer:
[0038] (1) Preparation of Mn by high-temperature organic phase synthesis method a W b o x initial particles. Put 20mL of benzyl ether, 1.5g of 1,2-dodecanediol and 0.35g of tungsten hexacarbonyl into a three-necked flask, stir and mix with magnetic force; under the protection of nitrogen, heat the mixed system to 120°C, add 1ml of oil acid and 1ml oleylamine, heated to 260°C, then added 0.25g manganese acetylacetonate, reacted for 30 minutes, cooled the system to room temperature, then added excess ethanol, mixed thoroughly, centrifuged, washed repeatedly with cyclohexane and ethanol , collecting the generated Mn a W b o x initial particles.
[0039] (2) Use C 18 -PEG-NH 2 to modify the synthesized Mn a W b o x Initial particle, briefly, 10mg Mn a W b o x Primary particles and 50mg C 18 -PEG-NH 2 Mixed in 4mL chloroform, sonication for 15min. Then the mixed solution was stirred at room temperature...
Embodiment 2
[0042] The in vivo biocompatibility of different groups of cells was systematically investigated separately before in vivo therapeutic evaluation. And further detect hematological indicators such as white blood cells (WBC), mean platelet volume (MPV), red blood cells (RBC), mean corpuscular hemoglobin (MCH), lymphocytes, hemoglobin (HGB), neutrophils (NEUT), and serum Biochemical indicators such as alanine aminotransferase (ALT), aspartate aminotransferase (AST), creatinine (CREA) and urea.
Embodiment 3
[0044] (1) Test reoxygenation and related protein expression in tumor-bearing mouse models. First, by oxygen saturation-based mode (sO 2 ) photoacoustic (PA) imaging evaluated the in vivo tumor oxygenation effect under laser irradiation. Cyanobacteria (1.1×10 9 cells / ml, 100 μL) were injected into Balb / C nude mice bearing 4T1 tumors. PA imaging monitors sO 2 production;
[0045] (2) Continuous tumor oxygenation in vivo may lead to the downregulation of HIF-1α expression. The expression of HIF-1α was then monitored by Western blotting;
[0046] (3) Dynamic monitoring of HE staining and immunohistochemical staining to monitor the expression of HIF-1α and CD31.
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