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Pt(IV) Prodrugs Designed to Embed in Nanotubes of a Polysaccharide for Drug Delivery.

Kun ChenLiqin CaiShixi YangShuang PengJinguo HuangJinglei XuZiang LuXiaojuan XuBoshi FuLi-Na ZhangXiang Zhou
Published in: ACS applied bio materials (2021)
Cisplatin exhibits a sufficient killing effect on cancer cells; however, it damages normal cells simultaneously. Herein, we developed a prodrug delivery system based on branched β-(1→3)-d-glucan. This natural biomacromolecule-based polysaccharide nanotube was modified with cisplatin embedded in the hollow cavity (BFCP), showing high anticancer activity and low toxicity in vitro . It is a broad-prospect system, which is based on biocompatible nanomaterials loaded with Pt(IV) prodrugs for cancer cell absorption with subsequent release in tumors by utilizing the intracellular reducibility. BFCP chains adopted a nanotube conformation in water, observed by transmission electron microscopy. In comparison to cisplatin, the Pt(IV) prodrugs not only displayed better antitumor properties but also had significant tumor targeting. A potent natural complex conjugated with redox-responsive platinum prodrugs is a significantly efficient tumor drug demonstrated in vitro and in vivo .
Keyphrases
  • cancer therapy
  • drug delivery
  • electron microscopy
  • drug release
  • induced apoptosis
  • oxidative stress
  • cell cycle arrest
  • emergency department
  • signaling pathway
  • cell proliferation
  • molecularly imprinted
  • high resolution