Journal of Materials Science: Materials in Medicine (Sep 2023)

Tumor-microenvironment responsive nano-carrier system for therapy of prostate cancer

  • Lujing Li,
  • Renjie Li,
  • Jiachun Li,
  • Jiyi Yao,
  • Qingyuan Zhang,
  • Qiao Ji,
  • Zuofeng Xu

DOI
https://doi.org/10.1007/s10856-023-06749-9
Journal volume & issue
Vol. 34, no. 10
pp. 1 – 10

Abstract

Read online

Abstract Poor selectivity, low bioavailability and serious systemic side-effects have limited the application of traditional chemotherapy method for treatment of prostate cancer. Stimuli-responsive drug delivery systems for chemotherapy are mainly based on the unique characteristics of tumor microenvironment. In this study, the GSH-sensitive poly-TTG-SS@DTX NPs (DTX-loaded poly-Tetraethylene glycol nanoparticles) were designed and synthesized, which were characterized with nanosized diameter (92.8 ± 2.5 nm) and negatively charged surface charge (−24.7 ± 5.56 mV). Experiments in vitro showed that poly-TTG-SS@DTX NPs had good compatibility to healthy cells and strong anti-tumor effect because of rapid and sustained drug release of DTX from poly-TTG-SS@DTX NPs under the tumor-microenvironment condition. The cellular activity remained greater than 90% when the concentration of poly-TTG-SS NPs reached as high as 100 µg/mL treated on healthy cells. The killing effect of DTX loading NPs group on C4-2 cells was stronger than that of free anti-tumor drug and free DTX combined with the blank nano-carrier (25.21% vs 19.93% vs 20.96%). In conclusion, poly-TTG-SS@DTX NPs may provide a new therapeutic strategy for the chemotherapy of prostate cancer. Graphical Abstract