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