Nuclear magnetic resonance imaging-guided photo-thermal and photodynamic diagnosis and treatment integrated reagent and preparation method thereof
A nuclear magnetic resonance imaging and photothermal technology, which is applied in the fields of material science and biomedicine, can solve the problems that the treatment methods are difficult to achieve the ideal therapeutic effect, and achieve the effect of improving the photothermal performance
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Embodiment 1
[0038] 1) Synthesis of gold nanoparticles (GNS): 250 μL of 20 mg / mL HAuCl 4 The solution was added dropwise to 25 mL of 100 mg / mL 4-(2-hydroxyethyl)-1-piperazineethanesulfonic acid semi-sodium salt (HEPES) buffer solution, allowed to stand at room temperature, solid-liquid separation, and frozen After freeze-drying in a dryer, GNS solid powder is obtained;
[0039] 2) Synthesis of MoS 2 -PVP-coated Au: Completely disperse 5mg of gold nanoparticles in step 1) into 5mL of deionized water to form a gold nanoparticle solution, and then add it to 1mL of Na 2 MoO 4 (170mg / mL) and 0.5mL of L-cysteine (L-cys) (245mg / mL) mixed solution, then add 5mL 0.02mg / mL polyvinylpyrrolidone (PVP) dropwise, after mixing well, Carry out the reaction, wash alternately with ethanol and deionized water, and finally disperse in 10mL deionized water for later use;
[0040] 3) Synthesis of MoS 2 -chitosan coated Gd-Au (GGMC): 1mLGdCl 3 solution (5mg / mL) was added to the 10mL MoS described in step...
Embodiment 2
[0042] 1) Synthesis of gold nanoparticles (GNS): 250 μL of 20 mg / mL HAuCl 4 The solution was added dropwise to 25 mL of 100 mg / mL 4-(2-hydroxyethyl)-1-piperazineethanesulfonic acid semi-sodium salt (HEPES) buffer solution, allowed to stand at room temperature, solid-liquid separation, and frozen After freeze-drying in a dryer, GNS solid powder is obtained;
[0043] 2) Synthesis of MoS 2 -PVP-coated Au: Completely disperse 5mg of gold nanoparticles in step 1) into 5mL of deionized water to form a gold nanoparticle solution, and then add it to 1mL of Na 2 MoO 4 (170mg / mL) and 0.5mL of L-cysteine (L-cys) (245mg / mL) mixed solution, then add 5mL 0.02mg / mL polyvinylpyrrolidone (PVP) dropwise, after mixing well, Carry out the reaction, wash alternately with ethanol and deionized water, and finally disperse in 10mL deionized water for later use;
[0044] 3) Synthesis of MoS 2 -chitosan coated Gd-Au (GGMC): 1mLGdCl 3 solution (5mg / mL) was added to the 10mL MoS described in step...
Embodiment 3
[0046] 1) Synthesis of gold nanoparticles (GNS): 250 μL of 20 mg / mL HAuCl 4 The solution was added dropwise to 25 mL of 100 mg / mL 4-(2-hydroxyethyl)-1-piperazineethanesulfonic acid semi-sodium salt (HEPES) buffer solution, allowed to stand at room temperature, solid-liquid separation, and frozen After freeze-drying in a dryer, GNS solid powder is obtained;
[0047] 2) Synthesis of MoS 2 -PVP-coated Au: Completely disperse 5mg of gold nanoparticles in step 1) into 5mL of deionized water to form a gold nanoparticle solution, and then add it to 1mL of Na 2 MoO 4 (170mg / mL) and 0.5mL of L-cysteine (L-cys) (245mg / mL) mixed solution, then add 5mL 0.02mg / mL polyvinylpyrrolidone (PVP) dropwise, after mixing well, Carry out the reaction, wash alternately with ethanol and deionized water, and finally disperse in 10mL deionized water for later use;
[0048] 3) Synthesis of MoS 2 -chitosan coated Gd-Au (GGMC): 1mLGdCl 3 solution (5mg / mL) was added to the 10mL MoS described in step...
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