Water gel fast forming process based on bionic process
A forming process, hydrogel technology, applied in biomanufacturing and bionic manufacturing, tissue engineering material manufacturing and rapid prototyping, manufacturing science and other interdisciplinary fields, can solve the problems of difficult operation of hydrogel materials, achieve structural stability, High porosity and good biocompatibility
- Summary
- Abstract
- Description
- Claims
- Application Information
AI Technical Summary
Problems solved by technology
Method used
Image
Examples
Embodiment 1
[0026] Example 1: Fibrin-gelatin three-dimensional structure produced by this process. The mixture of fibrinogen and gelatin is prepared into component I aqueous solution, and concentration is 0.050g / ml, wherein the mass ratio of fibrinogen and gelatin is 2: 3, prepares the solution of a certain amount of calcium chloride, thrombin again as Component II, the concentration of thrombin is 5000U / ml, the concentration of calcium chloride is 0.05g / ml, and it is sterilized for use; the material is pre-cooled at low temperature first, and in an environment of 4°C, according to the pre-designed structure and definition planning Path, by extrusion method, component I is sprayed into the aseptic forming chamber of component II filled with atomization; after spraying to the designated position, component I undergoes a sol-gel transition to form a hydrogel; layer by layer Stacking results in a fibrinogen-gelatin three-dimensional structure.
Embodiment 2
[0027] Example 2: The fibrin-gelatin three-dimensional structure produced by this process. The mixture of fibrinogen and gelatin is prepared into component I aqueous solution, the concentration is 0.200g / ml, wherein the mass ratio of fibrinogen and gelatin is 1:3, and then a certain amount of thrombin and coagulation factor solution is prepared as the component For part II, the concentration of thrombin is 2U / ml, the concentration of coagulation factors is 32U / ml, and it is sterilized for use; the material is pre-cooled at low temperature, and in an environment of 4°C, according to the pre-designed structure and defined path, through Extrusion method, component I is sprayed into the liquid component II environment; after spraying to the designated position, component I undergoes a sol-gel transition to form a hydrogel; layer by layer accumulation of fibrinogen-gelatin three-dimensional structure.
Embodiment 3
[0028] Example 3: The three-dimensional structure of fibrin-agarose produced by this process. The mixture of fibrinogen and agarose is dissolved in calcium chloride solution to prepare component I aqueous solution, the concentration is 0.050g / ml, and it is sterilized for later use, wherein the mass ratio of fibrinogen and agarose is 3: 2, and then Thrombin and coagulation factors are embedded and fixed on the inner surface of the nozzle cavity; in an environment of 37°C, according to the pre-designed structure and the defined path, component I is immobilized when it is sprayed through the nozzle by extrusion. The sol-gel transformation occurs to form a hydrogel through the action of the enzyme, and then the three-dimensional structure of fibrinogen-agarose is obtained through layer-by-layer accumulation.
PUM
Login to View More Abstract
Description
Claims
Application Information
Login to View More - R&D
- Intellectual Property
- Life Sciences
- Materials
- Tech Scout
- Unparalleled Data Quality
- Higher Quality Content
- 60% Fewer Hallucinations
Browse by: Latest US Patents, China's latest patents, Technical Efficacy Thesaurus, Application Domain, Technology Topic, Popular Technical Reports.
© 2025 PatSnap. All rights reserved.Legal|Privacy policy|Modern Slavery Act Transparency Statement|Sitemap|About US| Contact US: help@patsnap.com
