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Genipin-cross-linked silk sericin/polyN-isopropylacrylamide IPN hydrogels: color reaction between silk sericin and genipin, pore shape and thermo-responsibility
作者:张青松 王小召
关键字:凝胶 京尼平 颜色反应
论文来源:期刊
具体来源:Materials Chemistry and Physics
发表时间:2015年
To investigate the color reactions between naturally cross-linking agent genipin and silk sericin (SS), a series of genipin/SS film with adjustable color were firstly fabricated and analyzed by FTIR, UV/Vis and colorimetric methods. Then under the various genipin/SS contents, double cross-linked genipin/SS/Poly(N-isopropyl- acrylamide/N,N0-Methylene-bis-acrylamide) (HMGX) hydrogels were prepared, and the SEM, DSC, gravimetric and MTT method were performed to investigate pore structure, swelling behavior, temperature-sensitivities and cell adhesion behavior of HMGX hydrogels. The results show that SS cross-linked by genipin presents various colors during reaction. With increasing genipin/SS from 0 to 20 wt% or reacted time from 0 to 250 min, the color of genipin/SS mixture solution changes from transparent yellow to green, then to skyblue and finally became dark blue. After SS was cross-linked genipin, the maximum absorption peak turns to 570e600 nm from 282 nm, the reacted gardenia blue
shows thermo/pH stable and water soluble. The absorption values of genipin/SS solutions increase, especially as genipin/SS ratio is 20 wt%, sharply increase can be found. The reaction time or rate between sericin and genipin is dependent on genipin/SS feed ratios. And with increasing mass percentage of genipin/(NIPAm t SS) from 0 to 10 wt%, due to high hydrophilicity of cross-linked product between genipin and SS, the pore sizes of HMGX hydrogels increase 1e3.75 times, the maximum swelling ratios (MSR) values increase to 2243% from 1057%. The volume phase transition temperature (VPTT) values of HMGX hydrogels keep still at 32e36 C, but the endothermic peak becomes broader. After adsorption of L929 cells for 4 h and 1 d, the hydrogel with 3 wt% of genipin/(NIPAm t SS) presents the highest adhesion percentage.