Novel composite biological dura mater
A biomembrane and dura mater technology, applied in the field of new composite biological dura mater, can solve problems such as difficult to achieve functional zero biomimetic regenerative repair effect, achieve the promotion of fibroblast activity, satisfactory effect, and reduce scar tissue and nerve adhesion Effect
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Embodiment 1
[0029] 1. Preparation of Type I Collagen Fiber Dura
[0030] 1) Collagen extraction, reconstitution and lyophilization
[0031] 1.1 Raw material thawing:
[0032] The collagen is taken out from the freezer, and the usage amount of the batch is calculated according to the water content, placed in a sterilized plate, and used after thawing at room temperature.
[0033] 1.2 Preparation calculation method:
[0034] 0.05M, 600ml glacial acetic acid solution containing 3-5g dry collagen
[0035] 1.3 Preparation of type I collagen solution. Weigh 9.1-15.2g of the thawed collagen according to the water content and put it into a stirring tank, add 600-800ml of 0.05M glacial acetic acid, and stir for 1-2 hours.
[0036] 1.4 Freeze-drying: Put the solution in 1.3 into a plate, pour in different thicknesses of type I collagen solution according to clinical needs, and perform freeze-drying according to the following procedures:
[0037] step number
control process
Laye...
Embodiment 2
[0044] Example 2 Porosity Measurement
[0045]The method of Example 1 was adopted to prepare 4 kinds of products with different irradiation intensities, and the pore size in the structure was measured by electron microscope to be 345um, 220um; 227um, 183um, wherein the irradiation dose was 30-40kGy group I type collagen fiber membrane pore size Most suitable for the growth of fibroblasts.
Embodiment 3
[0046] The mensuration of embodiment 3 collagenase enzymolysis time
[0047] Using a self-made hole puncher, 4 kinds of dura mater substitute materials with different irradiation times were made into 10 disks each with a diameter of 5 mm, and then the small disks, enzymatic hydrolysis buffer and collagenase solution with an enzyme activity unit of 357 U / mL were added. In a small test tube, the time required for enzymatic hydrolysis at a constant temperature of 37°C to the decomposition of the small disc is the enzymatic hydrolysis time (min). The measured enzymatic hydrolysis time is: 25.3min, 23.6min, 27.6min, 51.1min. When the irradiation dose is 25-40KGy, the enzymatic hydrolysis time of type I collagen fiber membrane has little difference, which proves its effect on collagen The degree of cross-linking has little effect.
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