Protease-sensitive fluorescent light and magnetism dual-response micro-capsule and preparation method thereof
A protease and responsive technology, applied in the field of fluorescent and magnetic dual-responsive microcapsules and their preparation, to achieve the effects of enhanced T2 relaxation efficiency and high MRI contrast intensity
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Embodiment 1
[0032] Example 1: Preparation of trypsin-sensitive fluorescent and magnetic dual-responsive microcapsules
[0033] a. To 2.5mL, 1mg / mL poly-L-lysine (M w ~65000) dropwise add 2.5mL, 0.025mg / mL ICG aqueous solution to the solution, incubate for 2h, then add 5mL, 3mg / mL sodium citrate solution to the solution, shake at 1000rpm for 10s, form a package of self-quenching fluorescence Molecular macromolecular aggregates in aqueous solution.
[0034] b. Add 2.5mL, 0.5mg / mL citric acid-coated Fe dropwise to the aggregate solution 3 o 4 Magnetic particles (the average particle size of the magnetic nanoparticles is 7nm, spherical in shape, prepared by thermal decomposition method and ligand exchange method), incubated with ultrasound (working frequency 40kHz) at room temperature for 20min, forming capsule walls coated with magnetic nanoparticles Microcapsule structure.
[0035] c. Add dropwise 1.5mL, 5mg / mL polyacrylic acid (M w ~1800) solution, incubate with ultrasound (working fr...
Embodiment 2
[0040] Example 2: Preparation of matrix metalloproteinase 2 / 9 sensitive fluorescent and magnetic dual-responsive microcapsules
[0041] a. To 2mL, 2mg / mL of PLG / LR (M w ~70000) solution, drop 1mL, 0.01mg / mLCy5.5 solution, and incubate at room temperature for 4h to form fluorescent agent-modified polypeptide macromolecules. Add 5mL, 3mg / mL ethylenediaminetetraacetic acid tetrasodium salt EDTA aqueous solution, and 0.5mL, 0.05mg / mL fluorescence quencher BHQ3 to the formed polypeptide aqueous solution, oscillate at 750rpm for 20s, and form an encapsulated fluorescence Polypeptide aggregates of reagents and fluorescence quenchers.
[0042] b. Add 2mL, 0.3mg / mL citric acid-coated Fe dropwise to the aggregate solution 3 o 4 Magnetic particles, (the average particle size of the magnetic nanoparticles is 7nm, spherical in shape, prepared by thermal decomposition and ligand exchange [1,2] ), ultrasonic (operating frequency 40kHz) at room temperature for 30min, to form a microcapsul...
Embodiment 3
[0048] Example 3: Preparation of Protease-3 Sensitive Fluorescent and Magnetic Double Responsive Microcapsules
[0049] a. To 1.5mL, 2mg / mL DEVD (M w ~50000) the polypeptide solution was added dropwise with 1 mL, 0.05 mg / mL ICG solution, and incubated at room temperature for 4 h to form fluorescent agent-modified polypeptide macromolecules. Add 7mL, 4mg / mL tetraasparagine sodium salt Na in the formed polypeptide aqueous solution 5 (ASP) 4 Aqueous solution, and 0.5mL, 0.05mg / mL fluorescence quencher NIRQ820, shake at 900rpm for 10s to form polymer peptide aggregates wrapping fluorescent agent and fluorescence quencher.
[0050] b. Add 2.5mL, 0.25mg / mL silicate-coated Fe dropwise to the aggregate solution 3 o 4 Magnetic particles (SiCOOH-Fe3O4 magnetic nanoparticles have an average particle size of 10nm and a spherical shape, prepared by thermal decomposition and ligand exchange methods), ultrasonic (working frequency 40kHz) at room temperature for 30min, to form a capsule w...
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