Intervention catheter surface treatment method and intervention catheter
An interventional catheter and surface treatment technology, applied in the field of interventional catheter surface treatment and interventional catheter, can solve the problems of insufficient wear resistance, difficulty, and insufficient firmness of the coating, and achieve the effect of firm hydrophilic and lubricating properties.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Publication Date
- 2014-11-05
- Estimated Expiration
- Not applicable · inactive patent
Abstract
Description
technical field
[0001] The invention relates to the field of medical devices, in particular to a surface treatment method for an interventional catheter and an interventional catheter obtained by processing the method. Background technique
[0002] Intravascular interventional diagnosis and treatment technology is widely used in clinical angiography, angioplasty, removal of intravascular thrombus or foreign body, etc. Compared with traditional medical technology, it is not only convenient to operate, but also reduces the pain of patients due to the low trauma of interventional treatment , the risk of treatment is small, and the cost of treatment is relatively low, so this technology has been widely promoted and used in the medical field. Intravascular interventional diagnosis and treatment technology is to use interventional catheters to reach distant diseased parts in the body through the vascular lumen, such as coronary arteries and other vascular parts, and then inject di...
Examples
Embodiment 1
[0042] Preparation: Preparation of coating solution: Add polymethyl vinyl ether-maleic anhydride and N,N-dimethylformamide into a container, and stir at room temperature for 30 minutes to obtain a coating solution. The mass of N,N-dimethylformamide is 90% of the total mass of the coating solution. In this embodiment, polymethyl vinyl ether-maleic anhydride is a product of Sigma-Aldrich Company with a number average molecular weight of 80,000. (the following examples are the same). Typical coating solutions are formulated prior to coating.
[0043] making process:
[0044] S100: Place the interventional catheter in the sample chamber of the plasma generator, conduct plasma treatment after argon gas is introduced, the discharge power is 10W, and the treatment time is 1min. After the treatment is completed, the interventional catheter is taken out;
[0045] S200: Soak the interventional catheter obtained in step S100 in a dioxane solution of glycidyl methacrylate at a concentr...
Embodiment 2
[0051] Preparation: Preparation of coating solution: Add polymethyl vinyl ether-maleic anhydride and N,N-dimethylacetamide into a container, and stir at room temperature for 30 minutes to obtain a coating solution. The mass of N,N-dimethylacetamide is 91% of the total mass of the coating solution.
[0052] making process:
[0053] S100: Place the interventional catheter in the sample chamber of the plasma generator, conduct plasma treatment after argon gas is introduced, the discharge power is 50W, and the treatment time is 2 minutes. After the treatment is completed, the interventional catheter is taken out;
[0054] S200: Soak the interventional catheter obtained in step S100 in N,N-dimethylacetamide solution of glycidyl methacrylate with a concentration of 10 wt% for grafting modification, the grafting temperature is 40°C, and the grafting time is 6h, after the reaction is completed, take out the intervention catheter, soak it in a container with acetone for 30 minutes and...
Embodiment 3
[0060] Preparations: Preparation of coating solution: Add polymethyl vinyl ether-maleic anhydride and N-methylpyrrolidone into a container, stir at room temperature for 30 minutes to obtain a coating solution. Wherein the mass of N-methylpyrrolidone is 92% of the total mass of the coating solution.
[0061] making process:
[0062] S100: Place the interventional catheter in the sample chamber of the plasma generator, conduct plasma treatment after argon gas is introduced, the discharge power is 100W, and the treatment time is 3 minutes. After the treatment is completed, the interventional catheter is taken out;
[0063] S200: Soak the interventional catheter obtained in step S100 in N-methylpyrrolidone solution of glycidyl methacrylate at a concentration of 20 wt% for grafting modification, the grafting temperature is 50°C, the grafting time is 10h, and the reaction is completed Finally, take out the interventional catheter, soak it in a container containing acetone for 30 mi...