High-emulation tissue-engineered nerve repair material
A technology for simulating tissue and nerve repair, applied in the field of high-simulation tissue engineering nerve repair materials, can solve the problems of unable to maintain the physical structure, affect the effect of treatment or experiment, and unfavorable directional growth of regenerative fibers, so as to facilitate cell migration and nutrition Effects of material transport and exchange, uniform internal pore size, and axially parallel arrangement height simulation
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Embodiment 1
[0035] Example 1: (according to the ratio of type I collagen: chitosan: gelatin is 280:70:70):
[0036] According to technical scheme of the present invention, taking collagen protein, gelatin and chitosan as example, its preparation method is carried out as follows:
[0037] 1). Weigh the above-mentioned type I collagen in parts by weight, and dissolve it in 3 mg / ml acetic acid solution at a concentration of 28 mg / ml for 24 hours;
[0038] 2). Stir at 15000r / min for 90min in a constant temperature environment at 4°C to make a suspension;
[0039] 3). In addition, weigh chitosan and gelatin according to the above weight ratio and add them to 3 mg / ml acetic acid solution to dissolve for 24 hours;
[0040] 4). At a constant temperature of 4°C, stir at 15000r / min for 90min to make a suspension;
[0041] 5). Mix the two suspensions and keep the temperature at 4°C, stir at 15000r / min for 90 minutes to make a suspension of collagen and chitosan, and leave it for 12 hours under vac...
Embodiment 2
[0049] Embodiment 2: Collagen (type I), chitosan and gelatin are used as raw materials, the weights of which are 280 mg, 280 mg and 280 mg respectively, and the implementation process is the same as that of Example 1.
Embodiment 3
[0050] Embodiment 3: Collagen (type I), chitosan and gelatin are used as raw materials, the weights of which are 280 mg, 28 mg and 28 mg respectively, and the implementation process is the same as that of Example 1.
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