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Sonodynamic Therapy and Sonosensitizers for Glioma Treatment: A Systematic Qualitative Review
Neel H Mehta1, Harshal A Shah2, Randy S D'Amico2
1Department of Biology, Cornell University, Ithaca, New York, USA.
Abstract:
Sonodynamic therapy (SDT) has emerged as an encouraging noninvasive technique that uses ultrasound to activate targeted agents to induce antitumor effects for the treatment of glioma. With extensive variation in the types of sonosensitizers, protocols for sonication, and model systems, a comprehensive overview of existing preclinical data on the efficacy of SDT in glioma treatment is warranted. Here, we conduct a systematic review of preclinical and early clinical literature on implementing SDT to treat in vitro and in vivo models of glioma. Our findings suggest that coupling sonosensitizers such as 5-aminolevulinic acid, hematoporphyrin monomethyl ether, and sinoporphyrin sodium with focused ultrasound induces robust cytotoxic activity in tumor cells (in vitro and in vivo). These effects are likely mediated by the oxidative stress induced by reactive oxygen species production, apoptotic signaling cascades, and intracellular calcium overload. Future research is needed to better understand the biochemical and mechanistic properties of SDT, and ongoing trials may help elucidate the clinical feasibility of glioma treatment with optimized sonically activated treatments.
Insights
Sonodynamic therapy (SDT) shows promise for treating glioma by using ultrasound to activate drugs, leading to tumor cell death. This review covers preclinical data, highlighting SDT
Area of Science:
- Biomedical Engineering
- Oncology
- Photodynamic Therapy
Background:
- Sonodynamic therapy (SDT) is a developing noninvasive treatment for glioma.
- Variations in sonosensitizers and protocols necessitate a review of current preclinical data.
Conclusions:
- SDT demonstrates robust efficacy in preclinical glioma models.
- Further research into SDT mechanisms and clinical trials are essential for optimizing glioma treatment.
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