A kind of nanometer calcium phosphate bone cement and preparation method thereof
A nano-calcium phosphate and bone cement technology, used in pharmaceutical formulations, medical science, prostheses, etc., can solve the problems of poor load bearing capacity, slow osteogenesis, poor mechanical properties, etc., and achieve enhanced strength, industrial simplicity, The effect of good mechanical properties
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Embodiment 1
[0024] Example 1 (2#)
[0025] The solid phase of the nano-bone cement in this example is a mixture of tetracalcium phosphate and anhydrous calcium hydrogen phosphate with a molar ratio of 1:3. γ ferric oxide colloidal solution (Rosner MH, Auerbach M. Ferumoxytol for the treatment of iron deficiency. Expert Rev Hematol. 2011 Aug;4(4):399-406.).
[0026] Wherein the preparation method of tetracalcium phosphate is as follows: Synthesize tetracalcium phosphate powder with solid-state reaction method, the anhydrous calcium hydrogen phosphate of equimolar amount and calcium carbonate calcined in 1500 ℃ furnace for 6 hours, heating rate 25 ℃ / min, after calcining Cool and grind in a ball mill to an average particle size of 5 μm. The average particle size of anhydrous calcium phosphate is 1 μm.
[0027] The nanometer material is a colloidal solution of nanometer gamma-ferric oxide wrapped by PSC, with an average particle size of 9nm, and it is used as a bone cement solidification so...
Embodiment 2
[0031] Example 2 (3#)
[0032] The preparation steps of the nano-bone cement in this example are the same as in Example 1, the difference is that the nano-material is a colloidal solution of nano-α ferric oxide wrapped in DMSA, and the concentration is 2.55 mg / mL. The specific examples are as follows: This example The nano-bone cement material is composed of the following powder-liquid components: 2 parts of a mixture of tetracalcium phosphate and anhydrous calcium hydrogen phosphate with a molar ratio of 1:3, and 1 part of DMSA-wrapped nano-α ferric oxide colloidal solution (Sun J, Su Y, Wang C, Gu N. The investigation of frequency response for the magnetic nanoparticulate assembly induced by time-varied magnetic field. Nanoscale Res Lett. 2011 Jul 14;6:453.).
[0033] Wherein the preparation method of tetracalcium phosphate is as follows: Synthesize tetracalcium phosphate powder with solid-state reaction method, the anhydrous calcium hydrogen phosphate of equimolar amount an...
Embodiment 3
[0038] Embodiment 3 (4#)
[0039] The preparation steps of the nano-bone cement in this example are the same as in Example 1, the difference is that the nano-material is a nano-gold colloid solution wrapped in citric acid, and the concentration is 0.5mg / mL. The content of the specific example is: the nano-bone of this example The cement material is composed of the following powder-liquid components: 2 parts of a mixture of tetracalcium phosphate and anhydrous calcium hydrogen phosphate with a molar ratio of 1:3, and 1 part of citric acid-coated nano-gold colloid solution (Wang P, Sun J, Lou Z, Fan F, Hu K, Sun Y, Gu N. Assembly-Induced Thermogenesis of Gold Nanoparticles in the Presence of Alternating Magnetic Field for Controllable Drug Release of Hydrogel. AdvMater. 2016 Dec;28(48):10801-10808.).
[0040] Wherein the preparation method of tetracalcium phosphate is as follows: Synthesize tetracalcium phosphate powder with solid-state reaction method, the anhydrous calcium hydro...
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