药物输送
细菌纤维素
化学
药品
自愈水凝胶
银屑病
甲氨蝶呤
生物物理学
毒品携带者
角质形成细胞
壳聚糖
下调和上调
纳米技术
组合化学
细胞因子
控制释放
甲壳素
动力学
膜
炎症
生物相容性
纳米纤维素
硫酸化
促炎细胞因子
渗透(战争)
药理学
生物化学
作者
Liangliang Zhang,Xvyue Zhou,Xinmeng Li,Kun Wang,Peng Zhou,Weixiao Ding,Jianjun Cui,Yalei Qiao,Shu‐dai Huang,Chao Luan,Lei Zhang,Kun Chen,Jiaan Zhang
出处
期刊:Biomacromolecules
[American Chemical Society]
日期:2025-10-16
卷期号:26 (11): 7974-7988
被引量:1
标识
DOI:10.1021/acs.biomac.5c01417
摘要
Psoriasis is a chronic, inflammatory skin disorder driven by dysregulated keratinocyte-immune interactions and oxidative stress. To address limitations of conventional therapies, we engineered a sulfated bacterial cellulose/chitosan hydrogel that integrates intrinsic bioactivity with controlled methotrexate delivery (MTX-SBC/CS Gel). Sulfonation introduced sulfonic groups, conferring potent ROS-scavenging activity while optimizing drug compatibility and release kinetics. Chitosan enabled self-healing and bioadhesion through hydrogen-bonding networks. Molecular simulations and experiments revealed how sulfonic groups modulate drug-polymer interactions. In imiquimod-induced psoriatic models, MTX-SBC/CS Gel exhibited therapeutic efficacy comparable to that of the clinical standard betamethasone, with SBC alone showing beneficial effects; both accelerated epidermal normalization, and cytokine suppression. Transcriptomics identified SBC's multimodal mechanism: downregulation of IL-23/Th17 axis components, inhibition of keratinocyte hyperproliferation, and restoration of redox homeostasis via HSP90α-mediated pathways. The synergistic integration of sulfonation-enabled ROS scavenging, and optimized MTX release kinetics establishes this engineered hydrogel as a promising platform for the management of dermatoses.
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