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Construction and performance evaluation of polyguluronic acid polysaccharides-based drug delivery systems.
Chen, Huilin; Xu, Ran; Xu, Enyu; Chen, Yan; Niu, Chunyu; Chen, Yin.
Affiliation
  • Chen H; College of Food and Pharmacy, Zhejiang Ocean University, Zhoushan 316022, People's Republic of China.
  • Xu R; College of Food and Pharmacy, Zhejiang Ocean University, Zhoushan 316022, People's Republic of China.
  • Xu E; College of Food and Pharmacy, Zhejiang Ocean University, Zhoushan 316022, People's Republic of China.
  • Chen Y; College of Food and Pharmacy, Zhejiang Ocean University, Zhoushan 316022, People's Republic of China.
  • Niu C; College of Food and Pharmacy, Zhejiang Ocean University, Zhoushan 316022, People's Republic of China. Electronic address: niuchunyu0808@126.com.
  • Chen Y; College of Food and Pharmacy, Zhejiang Ocean University, Zhoushan 316022, People's Republic of China. Electronic address: mojojo1984@163.com.
Colloids Surf B Biointerfaces ; 242: 114083, 2024 Jul 08.
Article in En | MEDLINE | ID: mdl-39029246
ABSTRACT
Polysaccharides have garnered significant attention as potential nanoparticle carriers for targeted tumor therapy due to their excellent biodegradability and biocompatibility. Polyguluronic acid (PG) is a homogeneous acidic polysaccharide fragment derived from alginate, which is found in brown algae, possesses excellent bioactivities, unique properties. This study explored the immunomodulatory activity of PG and developed PG-based nanogels through modified disulfide bonds and Ca2+ dual crosslinking. We characterized their structure, assessed their drug-loading and release properties, and ultimately validated both the safety of the nanocarrier and the in vitro anti-tumor efficacy of the encapsulated drug. Results indicated that PG significantly enhanced the proliferative activity and phagocytosis of RAW264.7 cells while promoting reactive oxygen species (ROS) production and cytokine secretion. The study identified TLR4 as the primary receptor for PG recognition in RAW264.7 cells. Furthermore, PG-based drug-carrying nanogels were prepared, exhibiting uniform sizes of about 184 nm and demonstrating exceptional encapsulation efficiency (82.15 ± 0.82 %) and drug loading capacity (8.12 ± 0.08 %). In vitro release experiments showed that these nanogels could responsively release drugs under conditions of high glutathione (GSH) reduction, facilitating drug accumulation at tumor sites and enhancing therapeutic efficacy. This research not only expands the application of PG in drug delivery systems but also provides valuable insights into leveraging natural immunomodulatory polysaccharides as carriers for targeted drug delivery.
Key words

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: Colloids Surf B Biointerfaces Journal subject: QUIMICA Year: 2024 Document type: Article

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: Colloids Surf B Biointerfaces Journal subject: QUIMICA Year: 2024 Document type: Article