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Updated: Sep 19, 2026

Generation and Quantitative Analysis of Pulsed Low Frequency Ultrasound to Determine the Sonic Sensitivity of Untreated and Treated Neoplastic Cells
Published on: July 22, 2015
P-50 Sonodynamic Therapy Synergizes With Chemotherapy to Induce Mitochondrial Apoptosis Via ROS Burst in
Peng Liu1, Jing Zhang1, Jiaqi An2
1Department of Oncology, Central Hospital of Dalian University of Technology, Dalian, China.
Objectives:
P-50 is a novel, water-soluble nanomolar porphyrin polymer that has not yet been explored as a sonosensitizer. This study investigates the effects of P-50-mediated sonodynamic therapy (SDT), in combination with oxaliplatin and cisplatin, on hepatocellular carcinoma (HepG2) and esophageal cancer (Eca-109) cells.
Methods:
The ultrasonic frequency used was 1.0 MHz, with a power of 1.5 W/cm² and a treatment duration of 30 seconds. The cellular uptake of P-50, the cytotoxic effects and apoptosis in SDT alone, chemotherapy drugs, and their combined application on tumor cells were explored.
Results:
Results showed efficient uptake of P-50 by both HepG2 and Eca-109 cells. Incubation with 5 μM P-50 for 6 hours exhibited no significant cytotoxicity. Notably, P-50-mediated SDT, when combined with chemotherapy drugs, induced clear signs of late-stage apoptosis and the strongest ROS fluorescence staining in both HepG2 and Eca-109 cells compared to monotherapy. Additionally, an elevated mitochondrial membrane potential was observed in Eca-109 cells, along with the strongest calcium ion fluorescence in HepG2 cells.
Conclusions:
These findings suggest that P-50, possessing minimal inherent cytotoxicity, can serve as an effective sonosensitizer for SDT, promoting apoptosis in HepG2 and Eca-109 cells. Furthermore, combined treatment offers a more potent treatment strategy than monotherapy, enhances apoptosis and antitumor effects likely through ROS upregulation, mitochondrial and calcium disorders triggered by SDT.
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