Anticoagulation method for surface of medical polymer material or product
A technology of polymer materials and products, which is applied in the field of anticoagulation technology, can solve the problems that are not suitable for widespread promotion, short anticoagulation time, and difficult to produce, and achieve the effects of prolonging the curing time, firm adsorption, and easy operation
- Summary
- Abstract
- Description
- Claims
- Application Information
AI Technical Summary
Problems solved by technology
Method used
Examples
Embodiment l
[0023] Embodiment 1: the anticoagulation method of medical polymer material or product surface, comprises the following steps:
[0024] (1) Preparation of heparin-benzalkonium bromide complex:
[0025] 1) Dissolve 0.1g of heparin sodium in 10ml of purified water or distilled water;
[0026] 2) the benzalkonium bromide solution is made into a concentration of 5% (ml / ml) with purified water;
[0027] 3) 5% benzalkonium bromide solution was gradually added dropwise to the above sodium heparin solution until white precipitated suspension appeared. Continue to react for 5 minutes to make it fully react and the white precipitate and solution layering are obvious.
[0028] 4) Filter again with a G2 funnel to obtain a white precipitate. The white precipitate is fully washed and soaked with purified water or distilled water, and washed repeatedly until the white precipitate begins to form agglomerates and no quaternary ammonium salt remains, and a white or light yellow heparin compl...
Embodiment 2
[0037] Embodiment 2: Coating and curing medical polycarbonate (PC) tube:
[0038] 1) Preparation of coating solution:
[0039] Dissolve 10 g of the heparin quaternary ammonium salt complex described in step (1) of Example 1 in 40 ml of methanol and 60 ml of dichloroethane solution, and obtain a colorless and transparent coating solution after fully dissolving.
[0040] 2) Coating:
[0041] Pour the prepared coating solution into a medical PC tube in a 100-level environment, soak for 3 hours to form a stable heparin coating on the surface, take it out, and let it dry naturally.
[0042] 3) Curing treatment:
[0043] ① Prepare the curing agent bifunctional group reagent glutaraldehyde with purified water to a concentration of 1% (ml / ml).
[0044] ②Soak the above-coated medical PC tube in the bifunctional group reagent, and cure it at 60°C for 100 minutes to form a cross-linked heparin polymer coating. Finally, the unreacted bifunctional group reagent was cleaned with purified ...
Embodiment 3
[0045] Embodiment 3: Coating and curing medical silicone rubber (SR) tube:
[0046] 1) Preparation of coating solution:
[0047] Dissolve 1 g of the heparin quaternary ammonium salt complex described in step (1) of Example 1 in 100 ml of chloroform solution, and obtain a colorless and transparent coating liquid after fully dissolving.
[0048] 2) Coating:
[0049] In a 100-level purification environment, apply the prepared coating solution on the surface of the medical SR tube by a combination of flow-through and immersion methods, take it out after 40 minutes, let it dry naturally or blow dry, and return it after 1 to 5 hours. Apply the same method again to form a stable heparin coating on the surface of the medical SR tube and let it dry naturally.
[0050] 3) Curing treatment:
[0051] ① Prepare the curing agent bifunctional group reagent glutaraldehyde with purified water to a concentration of 0.5% (ml / ml).
[0052] ②Soak the above-coated medical SR tube in the bifunct...
PUM
Abstract
Description
Claims
Application Information
- R&D Engineer
- R&D Manager
- IP Professional
- Industry Leading Data Capabilities
- Powerful AI technology
- Patent DNA Extraction
Browse by: Latest US Patents, China's latest patents, Technical Efficacy Thesaurus, Application Domain, Technology Topic, Popular Technical Reports.
© 2024 PatSnap. All rights reserved.Legal|Privacy policy|Modern Slavery Act Transparency Statement|Sitemap|About US| Contact US: help@patsnap.com