A kind of injectable rare earth-DNA photothermal gel, its preparation method and application
A technology for injection and DNA molecules, which is applied in the direction of medical preparations with non-active ingredients, medical preparations containing active ingredients, and pharmaceutical formulas. The complex fluid environment and other problems can achieve the effect of high-efficiency photothermal therapy, low probability of tumor recurrence and metastasis, and simple and fast operation
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[0046] The present invention does not limit the preparation method of the UCNP nanoparticles, and methods well-known to those skilled in the art will suffice.
[0047] Preferably specifically: YCl 3 , YbCl 3 , ErCl 3 , oleic acid and octadecene were mixed, stirred, heated to 140-160°C under nitrogen protection, maintained for 30-40 minutes, and then lowered to 40-50°C to obtain the first mixed solution;
[0048] Take NH 4 F and NaOH were dissolved in methanol, after ultrasonic mixing, mixed with the first mixed solution, stirred at 50°C for 1-2 hours, then evaporated to remove the solvent, washed to obtain solution A;
[0049] YCl 3 , NdCl 3 Mix oleic acid and octadecene, stir, raise the temperature to 160°C under nitrogen protection, maintain it for 30-40min, and then lower it to 40-50°C to obtain the second mixed solution;
[0050] Take NH 4 Dissolve F and NaOH in methanol, ultrasonically mix, heat and stir with the second mixed liquid and solution A, heat up to evapo...
Embodiment 1
[0091] The present invention provides a hydrogel with good biocompatibility, injectability, remarkable photothermal conversion effect and photodynamic effect, which is composed of negatively charged DNA molecules—salmon sperm DNA and UCNP with a large number of positive charges - Made of Au nanoparticles, the specific preparation process is as follows:
[0092] 1. Synthesis of UCNP-Au nanoparticles with a large number of positive charges:
[0093] The first step: prepare the core-shell type hexagonal phase-rare earth doped fluorescent upconversion nanomaterial (βOA-UCNP) by high temperature oil solvent method. The details are as follows: Take 152.3mg of YCl3, 55.88mg of YbCl3 and 5.47mg of ErCl3 into a 100mL round bottom flask, then add 6ml of oleic acid and 18ml of octadecene, and keep stirring. After exhausting the gas, the temperature was raised to 160°C for 40 minutes under the protection of nitrogen, and then lowered to 50°C. Take 149mg NH 4 F and 100mg NaOH were disso...
Embodiment 2
[0103] Example 2 is similar to Example 1, except that the mass fraction ratio of salmon sperm DNA (2000bp) to UCNP-Au nanoparticles is 15:1.
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