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Preclinical Verification of the Efficacy and Safety of Aqueous Plasma for Ovarian Cancer Therapy.

Kae NakamuraNobuhisa YoshikawaYuko MizunoMiwa ItoHiromasa TanakaMasaaki MizunoShinya ToyokuniMasaru HoriFumitaka KikkawaHiroaki Kajiyama
Published in: Cancers (2021)
Epithelial ovarian cancer (EOC) is the most lethal gynecologic malignancy. The major cause of EOC's lethality is that intraperitoneal recurrence occurs with high frequency due to occult metastasis. We had demonstrated that plasma-activated medium (PAM) exerts a metastasis-inhibitory effect on ovarian cancer in vitro and in vivo. Here we investigated how PAM inhibits intraperitoneal metastasis. We studied PAM's inhibition of micro-dissemination onto the omentum by performing in vivo imaging in combination with a sequential histological analysis. The results revealed that PAM induced macrophage infiltration into the disseminated lesion. The iNOS-positive signal was co-localized at the macrophages in the existing lesion, indicating that PAM might induce M1-type macrophages. This may be another mechanism of the antitumor effect through a PAM-evoked immune response. Intraperitoneal lavage with plasma-activated lactate Ringer's solution (PAL) significantly improved the overall survival rate in an ovarian cancer mouse model. Our results demonstrated the efficiency and practicality of aqueous plasma for clinical applications.
Keyphrases
  • high frequency
  • immune response
  • mouse model
  • transcranial magnetic stimulation
  • ionic liquid
  • stem cells
  • mass spectrometry
  • dendritic cells
  • bone marrow
  • smoking cessation
  • atomic force microscopy