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  1. National Taiwan Ocean University Research Hub
  2. 電機資訊學院
  3. 電機工程學系
請用此 Handle URI 來引用此文件: http://scholars.ntou.edu.tw/handle/123456789/26263
標題: Pathology-tailored nanotherapy via Galectin-3-targeted and triple-responsive nanoparticles enables multimodal therapy against aortic dissection
作者: Lin, Chi
Chao, Hsin-Yi
Cheng, Tsai-Mu
Shih, Chun-Ming
Wu, Alexander T. H.
Cheng, Chia-Hsiung
Hsiao, Chen Yuan
Lu, Hsin-Ying
Shih, Chun-Che
Mi, Fwu-Long
關鍵字: Galectin-3 targeting;Modified citrus pectin;Self-assembly;Pathology-specific nanotherapy;Aortic dissection
公開日期: 2026
出版社: BMC
卷: 24
期: 1
起(迄)頁: 27
來源出版物: JOURNAL OF NANOBIOTECHNOLOGY
摘要: 
Aortic dissection (AD) is a life-threatening vascular disorder with high mortality and no effective pharmacological treatment. Addressing its multicellular and dynamic pathology requires strategies that precisely modulate inflammatory and degenerative processes, yet existing targeted delivery approaches lack the spatiotemporal and cellular precision required. Here, we establish Galectin-3 (Gal-3) as a therapeutic delivery target for cardiovascular nanomedicine and introduce a modular, pathology-tailored nanoplatform synergizing nitric oxide (NO) therapy with multi-pathway intervention. Gal-3 is persistently expressed on inflamed endothelial cells, macrophages, and smooth muscle cells during AD progression, providing a tractable target for lesion-specific engagement. The nanoparticles, created from a previously unexplored integration of a Gal-3-binding polysaccharide, a nitric oxide-generating peptide, and a hydrophobic drug carrier, uniquely combine triple responsiveness to pH, protease, and oxidative stress with on-demand NO release and controlled resveratrol co-delivery. In vitro, they enhanced uptake across pathological cell types and attenuated inflammatory and degenerative phenotypes. In vivo, they achieved early lesion targeting, > 20-fold aortic accumulation, and marked reductions in AD incidence, vascular degeneration, and mortality. This work establishes Gal-3-targeted nanotherapy as a broadly applicable paradigm for pathology-adaptive intervention in AD and one that may be adapted for broader cardiovascular applications.
URI: http://scholars.ntou.edu.tw/handle/123456789/26263
DOI: 10.1186/s12951-025-04012-7
顯示於:體育教育組
機械與機電工程學系
河海工程學系
食品科學系
資訊工程學系
海洋環境與生態研究所
電機工程學系

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