Preparation method and application of silk fibroin and chitin blended nanofiber embedded hydrogel cartilage biomimetic scaffold
A silk fibroin and nanofiber technology, applied in fiber treatment, tissue regeneration, electrospinning, etc., to achieve high water content, promote tissue regeneration, and facilitate adhesion
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Embodiment 1
[0038] (1) Obtain regenerated silk fibroin from silkworm cocoons, purify industrial grade chitin (Aladdin), weigh regenerated silk fibroin and purified chitin according to the ratio of silk fibroin: purified chitin = 6:1 , respectively dissolve the two in the organic solvent HFIP, stir until clear and transparent, mix the two solutions, and keep the final concentration of silk fibroin at 6% (w / w).
[0039] (2) The mixed solution is electrospun to obtain blended nanofibers. The electrospinning conditions are voltage 16kV, flow rate 0.8mL / h, distance between the aluminum foil plate receiver and the needle head 15cm, relative temperature and relative humidity are 25°C and 50% respectively , the resulting blended nanofiber membrane was dried in a vacuum oven for 3 days to remove residual HFIP, and the field emission scanning electron microscope image of the nanofiber membrane was as follows figure 2 A&D shown. The water insolubility is increased after ethanol gradient cross-link...
Embodiment 2
[0045] (1). Regenerated silk fibroin is obtained from silkworm cocoons, and industrial-grade chitin (Aladdin) is purified, and silk fibroin and purified chitin are weighed according to the ratio of silk fibroin:purified chitin=7:1 , respectively dissolve the two solutions in the organic solvent HFIP, stir until clear and transparent, mix the two solutions, and keep the final concentration of silk fibroin at 7% (w / w).
[0046] (2). The mixed solution is electrospun to obtain blended nanofibers. The electrospinning conditions are voltage 16kV, flow rate 0.8mL / h, distance between the aluminum foil plate receiver and the needle head 15cm, relative temperature and relative humidity respectively 25 ℃ and 50 %, the resulting blended nanofiber membrane was dried in a vacuum oven for 3 days to remove residual HFIP, and the field emission scanning electron microscope image of the nanofiber membrane is shown in figure 2 Shown by B&E. The water insolubility is increased after ethanol gr...
Embodiment 3
[0050] (1). Obtain regenerated silk fibroin from silkworm cocoons, purify industrial grade chitin (Aladdin), weigh silk fibroin and purified chitin according to the ratio of silk fibroin:purified chitin=8:1 , respectively dissolve the two solutions in the organic solvent HFIP, stir until clear and transparent, mix the two solutions, and keep the final concentration of silk fibroin at 8% (w / w).
[0051] (2). The mixed solution is electrospun to obtain blended nanofibers. The electrospinning conditions are voltage 16kV, flow rate 0.8mL / h, distance between the aluminum foil plate receiver and the needle head 15cm, relative temperature and relative humidity respectively 25 ℃ and 50 %, the resulting blended nanofiber membrane was dried in a vacuum oven for 3 days to remove residual HFIP, and the field emission scanning electron microscope image of the nanofiber membrane is shown in figure 2 C&F shown. The water insolubility is increased after ethanol gradient cross-linking, the c...
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