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Thermosensitive Liposomal Nanoplatform Based on Metal-Free Phthalocyanine with Copper(II)-Regulated Photoactivities.

Xin-Yue MaWen ZhangRong-Bin QueChao WangWen-Wen ShangYuan-Yuan ZhuBi-Yuan ZhengYu ChenMei-Rong KeJian-Dong Huang
Published in: ChemPlusChem (2022)
This work reports the development of a multifunctional thermosensitive liposomal nanoplatform (PcS 4 @Lip-FA) based on a metal-free phthalocyanine modified with tetra-sulfonates (PcPS 4 ), which exhibited photodynamic and photothermal activities simultaneously. Upon irradiation with a near infrared laser, thermosensitive PcS 4 @Lip-FA could release PcS 4 as a result of the local hyperthermia of PcS 4 . Interestingly, PcS 4 could easily chelate with Cu 2+ , leading to the enhancement of photothermal activity and decrease of photodynamic activity. In addition, in vivo fluorescence imaging revealed that PcS 4 @Lip-FA could selectively accumulate in tumor tissue of H22 tumor-bearing mice after tail vein injection, and exhibited a significant anticancer phototherapeutic effect, with a tumor inhibition rate of 83.5 %. Therefore, PcPS 4 @Lip-FA has realized fluorescence imaging-guided combined cancer treatment, providing a promising multifunctional nanoplatform for cancer diagnostics and therapy.
Keyphrases
  • photodynamic therapy
  • fluorescence imaging
  • cancer therapy
  • drug delivery
  • drug release
  • metabolic syndrome
  • stem cells
  • radiation therapy
  • emergency department
  • high resolution
  • bone marrow
  • young adults