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◆ Biomacromolecules2026-05-05· Berberine

Berberine and Lignin Coassembled Nanotubes As Multifunctional Controlled Drug Delivery System

Qiqi Zhou, Minxiao Lai, Jie Huang, Ting Zhang, Zhengyu Zhou, Wenjie Zong, Qingguo Feng, Chunfeng Hu, Man Jiang

原始摘要(英文原文)· Original abstract
Natural polymer-based nanocarrier-controlled drug delivery systems are of great significance for achieving efficient and cost-effective therapeutics. Herein, we report the fabrication of berberine hydrochloride (BBR) loaded lignin nanotubes (LNTs) via a coassembly process. The resulting nanocarriers with BBR homogeneously dispersed in the LNT matrix, with a maximum 16.48% drug loading, exhibit 168 h of sustained release dominated by the Fickian diffusion mechanism. Moreover, the drug delivery system holds photothermal activity (a temperature elevation from 29 to 45 °C within 10 min under 0.2 W cm –2 irradiation), antibacterial efficacy against Escherichia coli (95.3%), and antioxidant capacity (with a DPPH radical scavenging rate of 91.22%). The coassembled nanocarrier system is successfully achieved under cryogenic conditions mainly driven by π–π interactions between aromatic nuclei and hydrogen-bonding interactions of side chains within the lignin structure. The molecular interactions between BBR and lignin were elucidated to be electrostatic interactions and hydrogen bonding.
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Berberine and Lignin Coassembled Nanotubes As Multifunctional Controlled Drug Delivery System — 科研速览 Science Skim