Metal nano-cluster containing radioactive metal nuclide, nano-material, preparation method of metal nano-cluster containing radioactive metal nuclide, preparation method of nano-material containing radioactive metal nuclide
A technology of metal nanoclusters and nanomaterials, applied in the field of metal nanoclusters, can solve the problems of simultaneous labeling of multiple nuclides, damage to tissues and organs, and large particle size, so as to achieve broad-spectrum labeling, improve stability, and enhance stability sexual effect
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Embodiment 1
[0077] In this example, a GS is coated with a C (RGDYC) cyclic small peptide. 177 Luau NCS (referred to as RGD-GS- 177 A Case Study of Radioactive Nano Materials and Synthesis Methods. RGD-GS- 177 LUAU NCS, HAUCL 4 Reduced by GSH and cyclic RGD small peptide C (RGDYC) into gold nanoclusters, 177 The LU is doped into the lattice of the gold nanocluster in the form of atoms, and the final product is a colorless transparent liquid. The final product of purification is GS-containing cyclic small peptide C (RGDYC). 177 LUAU NCS. The final reaction pH of the present embodiment is about 7.0, and the reaction temperature is 60 ° C.
[0078] The preparation method includes the steps of:
[0079] (1), add 5 ml of ultra-pure water in the reaction bottle, then add 40 μl of concentration of 250 mm to Haucl 4 · 3h 2 O and 3MCI 177 LUCL 3 (3 μL), mixed mixed with stirring and mixed with reduced glutathione (RGDECED GSH) with a concentration of 100 mm from 100 μl of concentration of 1 mg / ml, an...
Embodiment 2
[0091] In this example, a GS-coated RGD cycloin peptide. 68 GAAU NCS (referred to as RGD-GS- 68 Take the radioactive nanomaterial and its synthesis method.
[0092] RGD-GS- 68 Gaau NCS, Haucl 4 Restored by GSH and RGD cyclonic C (RGDYC) into gold nanoclusters, 68 GA is doped into the lattice of the gold nanocluster in the form of atoms. The final product is a colorless transparent nanoparticle suspension. The final reaction pH of the present embodiment is 6.8, and the reaction temperature is 50 ° C.
[0093] The preparation method includes the steps of:
[0094] (1), add 5 ml of ultra-pure water in the reaction bottle, then add 40 μl of concentration of 250 mm to Haucl 4 · 3h 2 O and 3MCI 68 GaCl 3 (100 μL, 0.05 M HCl), mixed mixed with stirring, adding 5 μl of concentration of 1.0 M in the mixture to neutralize 68 GaCl 3 The introduced hydrochloric acid solution. Then, 200 μl of a reduced glutathione (RGD GSH) having a concentration of 1 mg / ml was added dropwise to a mixed syst...
Embodiment 3
[0101] In this example, a GS is coated with a C (RGDYC) cyclic small peptide. 68 GA 177 Luauncs (referred to as RGD-GS- 68 GA 177 A Case Study of Radioactive Nano Materials and Synthesis Methods.
[0102] RGD- 68 GA 177 LUAUNCS, HAUCL 4 Restored by GSH and RGD Total peptide C (RGDYC) into gold nanoclusters, 68 GA and 177 The LU is doped into the lattice of the gold nanoclassical in the form of atom. The final product is a colorless transparent nanoparticle suspension. The final reaction pH of the present embodiment is 7.5, and the reaction temperature is 70 ° C.
[0103] The preparation method includes the steps of:
[0104] (1), add 5 ml of ultra-pure water in the reaction bottle, then add 40 μl of concentration of 250 mm to Haucl 4 · 3h 2 O, 3MCI 177 LUCL 3 (3μL) and 3MCI 68 GaCl 3 (100 μL, 0.05 M HCl), mixed mixed with stirring, NaOH of 5 μl of left and right concentrations of 1.0 M in the mixture, neutralized 68 GaCl 3 The introduced hydrochloric acid solution. Then, 200 μl of...
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