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Nanoplatform-based strategies for enhancing the lethality of current antitumor PDT.

Xin-Xin LuChun XueJian-Hui DongYi-Zhou ZhangFan Gao
Published in: Journal of materials chemistry. B (2024)
Photodynamic therapy (PDT) exhibits great application prospects in future clinical oncology due to its spatiotemporal controllability and good biosafety. However, the antitumor efficacy of PDT is seriously hindered by many factors, including tumor hypoxia, limited light penetration ability, and strong defense mechanisms of tumors. Considering that it is difficult to completely solve the first two problems, enhancing the lethality of antitumor PDT has become a good idea to extend its clinical application. Herein, we summarize the nanoplatform-involved strategies to effectively amplify the tumoricidal capability of current PDT and then discuss the present bottlenecks and prospects of the nanoplatform-based PDT sensitization strategies in tumor therapy. We hope this review will provide some references for others to design high-performance PDT nanoplatforms for tumor therapy.
Keyphrases
  • photodynamic therapy
  • fluorescence imaging
  • current status
  • mental health
  • endothelial cells
  • drug delivery
  • cell therapy
  • smoking cessation