Sonodynamic Therapy on Intracranial Glioblastoma Xenografts Using Sinoporphyrin Sodium Delivered by Ultrasound with Microbubbles.
Authors: Pi Z, Huang Y, Shen Y, Zeng X, Hu Y, Chen T, Li C, Yu H, Chen S, Chen X
Sonodynamic therapy (SDT) is a promising noninvasive method for cancer treatment. The anti-tumor effect of sinoporphyrin sodium (DVDMS)-mediated SDT on nude mice bearing intracranial U87 MG-Red-FLuc human glioblastoma was investigated. Focused ultrasound (FUS) with microbubbles (MBs) was utilized to open the blood-brain barrier for enhancing the delivery of the sonosensitizer DVDMS to the brain tumor first, and then the SDT treatment was performed. The in vitro study showed obvious cytotoxicity of DVDMS-mediated SDT (center frequency: 0.996 MHz, acoustic power: 1.7 W, pulse repletion frequency: 1 Hz, duty cycle: 30%, duration: 1 min) on U87 MG-Red-FLuc cells. The results indicated that more DVDMS accumulation in the tumor sites was induced by FUS with MBs by 3.43 folds of unsonicated ones. Longitudinal bioluminescence imaging illustrated that the intracranial glioblastoma progression in nude mice treated with SDT was retarded compared to the untreated group. The median survival time was prolonged to 30.25 days after SDT treatment by 27.37%. The anti-proliferation effect and cell apoptosis induction was further confirmed by immunohistochemical examinations. These results of the study suggested that SDT using the sonosensitizer DVDMS delivered by FUS with MBs may provide a new promising therapeutic strategy against glioblastoma.
Introduction
Purpose
Drug delivery with BBB opening
Study Objective
To evaluate the efficacy of sonodynamic therapy using sinoporphyrin sodium delivered via ultrasound with microbubbles against intracranial glioblastoma xenografts.
Disease model
glioblastoma
Cargo name and characteristics
Sinoporphyrin sodium — a small‑molecule porphyrin-derived sonosensitizer/photodynamic agent used for sonodynamic therapy
Outcomes and Safety
Summary of Outcomes
Sonodynamic therapy using sinoporphyrin sodium delivered by ultrasound with microbubbles produced antitumor effects in intracranial glioblastoma xenografts (reduced tumor growth and increased survival). The provided excerpt did not report or compare specific focused ultrasound parameters or identify which settings were successful.
Safety-related matter
The provided text contains only the paper title and no information on safety or adverse effects; no adverse events or safety findings are reported in the available excerpt.
Brain Region
Ultrasound Parameters
Focal Characteristics
focal depth: None; focal length: None; aperture size: None
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