Preparation method of photothermal anti-bone tumor coating on magnesium alloy surface
A magnesium alloy and bone tumor technology, which is applied in the field of preparation of selenium-doped hydroxyapatite@nanofiber photothermal anti-bone tumor coating on the surface of magnesium alloy, can solve the problem of restricting the treatment effect of bone tumor and difficult to achieve bone tumor surgery. Integrating dual functions in tumor treatment and other issues, to achieve good bone tumor treatment function, excellent photothermal performance, and strong killing effect
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Embodiment 1
[0026] refer to figure 1 , Preferred Embodiment 1 of the present invention provides a method for preparing a photothermal anti-bone tumor coating on the surface of a magnesium alloy, which is carried out in the following order:
[0027] ① Preparation of selenium-doped treatment solution: Add potassium phenyl selenate, sodium hydroxide, and tributylmethylammonium chloride to deionized water to form potassium phenyl selenate with a concentration of 12mmol / L and sodium hydroxide with a concentration of 90mmol / L And tributylmethyl ammonium chloride concentration is the selenium doping treatment solution of 15mmol / L.
[0028] ② Preparation of prepared solution: Add urea to deionized water to form a prepared solution with a urea concentration of 18 mmol / L.
[0029] ③ Selenium doping of hydroxyapatite microparticles: add 150g of hydroxyapatite microparticles to 1L of the above-mentioned selenium-doped treatment solution, stir with a magnetic stirrer for 30 minutes, then add 90mL of ...
Embodiment 2
[0054] The preferred embodiment 2 of the present invention provides a method for preparing a photothermal anti-bone tumor coating on the surface of a magnesium alloy, which is carried out in the following order:
[0055] ① Preparation of selenium-doped treatment solution: Add potassium phenyl selenate, sodium hydroxide, and tributylmethylammonium chloride to deionized water to form potassium phenyl selenate with a concentration of 15mmol / L and sodium hydroxide with a concentration of 90mmol / L and tributylmethylammonium chloride concentration of 20mmol / L selenium-doped treatment solution.
[0056] ② Preparation of prepared solution: Add urea to deionized water to form a prepared solution with a urea concentration of 3 mmol / L.
[0057] ③ Selenium doping of hydroxyapatite microparticles: add 230g of hydroxyapatite microparticles to 1L of the above-mentioned selenium-doped treatment solution, stir with a magnetic stirrer for 30 minutes, then add 95mL of the above preparation solut...
Embodiment 3
[0063] Preferred embodiment 3 of the present invention provides a method for preparing a photothermal anti-bone tumor coating on the surface of a magnesium alloy, which is carried out in the following order:
[0064] ① Preparation of selenium-doped treatment solution: Add potassium phenyl selenate, sodium hydroxide, and tributylmethylammonium chloride to deionized water to form potassium phenyl selenate with a concentration of 92mmol / L and sodium hydroxide with a concentration of 310mmol / L And tributylmethyl ammonium chloride concentration is the selenium doping treatment liquid of 36mmol / L.
[0065] ② Preparation of prepared solution: Add urea to deionized water to form a prepared solution with a urea concentration of 33 mmol / L.
[0066] ③ Selenium doping of hydroxyapatite microparticles: add 420g of hydroxyapatite microparticles to 1L of the above-mentioned selenium-doped treatment solution, stir with a magnetic stirrer for 30 minutes, then add 162mL of the above preparation...
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