木质素
纤维素
皮肤利什曼病
材料科学
制浆造纸工业
农业
利什曼病
医学
有机化学
化学
生物
工程类
病理
生态学
作者
Marie Andrea Laetitia Huët,Itisha Chummun Phul,Nowsheen Goonoo,Zhikai Li,Xiaopeng Li,Archana Bhaw‐Luximon
摘要
, with greater efficiency against Gram-negative strains. 3D hydrogels were engineered by crosslinking SCB lignin with SCB cellulose in varying weight ratios in the presence of epichlorohydrin. The stiffness of the hydrogels could be tailored by varying the lignin concentration. All hydrogels were biocompatible; however, better fibroblast adhesion was observed on the blended hydrogels compared to the 100% cellulose hydrogel, with the cellulose : lignin 70 : 30 hydrogel showing the highest L929 proliferation and best antibacterial properties with a 24-hour bacterial growth reduction ranging from 30.8 to 57.3%.
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