A manganese-based integrated nanomaterial for tumor diagnosis and treatment, preparation method and application
A nanomaterial, tumor technology, applied in antitumor drugs, photodynamic therapy, preparations for in vivo experiments, etc., can solve the problems of lack of targeting, short circulation time in vivo, low R1, etc., and achieve high biocompatibility , The effect of long circulation time in the body and small toxic and side effects
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Embodiment 1
[0033] 1, preparation of nanomaterials
[0034] (1) Golden tonnin (HYP) (0.61 mg) is dissolved in 200 μl dimethyl sulfoxide (DMSO). The manganese chloride (1.2 mg) is called in 200 μl of deionized water. Bao serum albumin (BSA) (400 mg) is dissolved in 5.0 ml of deionized water, add 1 M NaOH to the BSA solution to adjust the pH to 10, and then HYP and MNCl 2 The solution was slowly added to the BSA solution in turn, followed by tapping the pH of the mixture to 9.
[0035] (2) At room temperature, the expansion reaction was 2 hours.
[0036] (3) The dialysis film (3500 Da) was dialyzed in deionized water for 24 hours.
[0037] (4) lyophilized to obtain brown powdered BHM nanoparticles.
[0038] 2, performance analysis of nanomaterials
[0039] (1) The above BHM nanoparticles are detected using a dynamic light scatterometer (DLS). figure 1 As shown, the dynamic light scattering granularizer (DLS) determines that the average particle diameter of BHM nanoparticles is 67 nm, and the pa...
Embodiment 2
[0049] The nanomaterials were prepared according to the reaction conditions of Table 1, and the process flow referred to in the particle diameter of the nanomaterial obtained in Example 1 is shown in Table 1.
[0050] Table 1
[0051]
[0052] It can be seen from Table 1 that when bovine serum albumin, the mass ratio of golden hormone and chloride is 400: 0.61: 1.2, the particle diameter of the nanomaterial is best. When the concentration of manganese chloride is increasing, the particle size distribution of nanomaterials is increasing, and excessive nanoparticles cannot be enriched in the vicinity of tumor tissue by the EPR effect, and is easily intercepted by a mesh endothelium. And the effect of photodynamic therapy is lowered.
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