Chronic obstructive pulmonary disease (COPD) stands as a predominant respiratory disorder intricately linked with respiratory tract microorganisms and their metabolites. Indole acetic acid (IAA), a derivative of tryptophan produced by Lactobacillus salivarius, possesses notable anti-inflammatory properties. However, the short retention time of the drug in lung still remains a vital obstacle leading to a poor bioavailability. In this study, we innovatively engineer a nano-composite by coupling IAA with generation 4 polyamidoamine (G4 PAMAM) dendrimer to form G4-IAA nano-complex through host-guest interaction. G4-IAA shows significantly improved solubility of IAA and thus enhances its bioavailability. This G4-IAA complex facilitates direct aerosol-based pulmonary administration by inhaled strategy, exhibiting enhanced absorption by respiratory epithelial cells and prolonged lung retention. Our experimental findings reveal that inhalation therapy employing the G4-IAA complex mitigates inflammatory stress and augments pulmonary function in COPD murine models. Single-cell sequencing reveals macrophages may contribute to the functional shifts by G4-IAA, promoting an anti-inflammatory phenotype characteristic of M2 polarization. This research introduces a promising therapeutic strategy, offering improved symptomatic relief and reduced risk of acute exacerbations for individuals afflicted with COPD.
Inhaled PAMAM-based nano-formulation prolonged lung retention for alleviating pulmonary inflammation of COPD.
吸入式 PAMAM 纳米制剂可延长肺部滞留时间,从而缓解 COPD 的肺部炎症
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作者:Wang Chen, Hu Xiao-Yan, Ji Ri, Lu Yi-Fan, Shen Xiang, Wang Zhang, Wang Fei, Shi Guo-Chao, Feng Yun
| 期刊: | Materials Today Bio | 影响因子: | 10.200 |
| 时间: | 2025 | 起止号: | 2025 May 6; 32:101845 |
| doi: | 10.1016/j.mtbio.2025.101845 | 研究方向: | 免疫/内分泌 |
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