Biodegradable magnesium alloy bile duct stone-dissolving carving stent and preparation method thereof
A technology of magnesium alloy and degrading polymer, applied in biopolymer materials and magnesium alloy materials, biomedical field, can solve problems such as inability to carry out long-term continuous treatment, avoid adverse effects, good biocompatibility, prevent bile duct closed effect
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Embodiment 1
[0027] The biodegradable magnesium alloy fused stone engraved scaffold was prepared by the following steps:
[0028] (1) Using magnesium-aluminum alloy with a magnesium mass content of 99.9% as a raw material, it is processed into a hollow tube with an inner diameter of 6.4mm, an outer diameter of 8.8mm, and a length of 100mm; the hollow tube is engraved into a porous network by laser Structural tubular support;
[0029] (2) Dissolve polycaprolactone in acetone at a ratio of 20mg: 1ml to make a solution, and uniformly disperse sodium cholate and disodium edetate with a mass ratio of 1mol: 1mol in the polycaprolactone The solution is sprayed and placed on the surface of the engraved tubular stent prepared in the above step (1) to make a biodegradable magnesium alloy bile duct litholytic engraved stent.
Embodiment 2
[0031] Preparation of biodegradable magnesium alloy fused stone engraved scaffold:
[0032] (1) Using a magnesium-zinc alloy with a magnesium mass content of 99.0% as a raw material, it is processed into a hollow tube with an inner diameter of 7.5mm, an outer diameter of 9.5mm, and a length of 90mm; the hollow tube is engraved into a porous network by laser Structural tubular support;
[0033] (2) Dissolve polylactic acid in methylene chloride at a ratio of 30mg: 1ml to make a solution, and uniformly disperse sodium cholate and disodium edetate with a mass ratio of 1mol: 2mol in the polylactic acid solution , placed on the surface of the engraved tubular stent prepared in the above step (1) through soaking treatment, to make a biodegradable magnesium alloy bile duct litholytic engraved stent.
Embodiment 3
[0035] Using a magnesium-zirconium alloy with a magnesium mass content of 99.5% as a raw material, it is processed into a hollow tube with an inner diameter of 7mm, an outer diameter of 9mm, and a length of 80mm; the hollow tube is engraved into a tubular bracket with a spiral tubular structure by using a laser; and then According to the ratio of 40mg: 1ml, polyglycolic acid is dissolved in chloroform to make a solution, and sodium cholate and disodium edetate with a mass ratio of 2mol: 1mol are uniformly dispersed in the polyglycolic acid The solution is sprayed and placed on the surface of the engraved tubular stent prepared above to make a biodegradable magnesium alloy bile duct litholytic engraved stent.
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