Silk protein/cellulose derivative blending hydrogel and preparation method thereof
A technology of cellulose derivatives and silk protein, which is applied in the field of high-strength natural biomacromolecular hydrogel and its preparation, can solve the problem that the mechanical properties cannot reach the mechanical properties of artificially synthesized chemical hydrogels, and achieve large-scale industrial Production, low cost, simple and efficient preparation method
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Embodiment 1
[0024] Prepare regenerated silk protein and hydroxypropyl methylcellulose aqueous solutions with concentrations of 6%, 8% and 10%, respectively, and mix the same concentration of silk protein aqueous solution and hydroxypropyl methylcellulose aqueous solution at a volume ratio of 9:1, Ensure that the final mixed solution concentration (that is, the following solid content value) is 6%, 8% or 10%, 65 o C water bath heating 2h to form a hydrogel. The mechanical properties test shows that the tensile modulus of the hydrogel with a solid content of 6% is 0.37 MPa, the elongation at break is 120%, and the compressive modulus is 0.47 MPa; the tensile modulus of the hydrogel with a solid content of 8% is 0.75 MPa, The elongation at break was 116%, and the compressive modulus was 0.75 MPa; the tensile modulus was 1.23 MPa, the elongation at break was 108%, and the compressive modulus was 1.45 MPa.
Embodiment 2
[0026] Prepare a 10% regenerated silk protein aqueous solution and a 10% hydroxypropyl methylcellulose aqueous solution, mix the silk protein aqueous solution and the hydroxypropyl methylcellulose aqueous solution at a volume ratio of 9:1, and ensure that the final mixed solution concentration is 10%. 65 o After heating in a water bath for 2 hours, a cylindrical sample was finally obtained. The tensile modulus was 1.40 MPa, the elongation at break was 105%, and the compressive modulus was 1.34 MPa.
Embodiment 3
[0028] Prepare a 10% regenerated silk protein aqueous solution and a 10% hydroxypropyl methylcellulose aqueous solution, mix the silk protein aqueous solution and the hydroxypropyl methylcellulose aqueous solution at a volume ratio of 9:1, and ensure that the final mixed solution concentration is 10%. 90 o After heating in a water bath for 2 hours, a cylindrical sample was finally obtained. The tensile modulus was 1.28 MPa, the elongation at break was 117%, and the compressive modulus was 1.34 MPa.
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