Electrotherapy for the treatment of brain tumours
Publication Date
July 24, 2020
Creator
Abstract
Introduction
The scarcity of effective treatment options for high grade brain tumours has led to a wide ranging search for alternative means of therapy for these difficult to treat tumours. Electrical field therapy is one such area that has been considered. The OptuneTM system is an FDA approved novel anti-mitotic device that delivers continuous alternating electric fields to the patient for the treatment of primary and recurrent Glioblastoma multiforme (GBM) (TTFields). Alternative electric fields delivery systems are also being investigated for the treatment of various cancers. Here we present our explorative study into the feasibility of repurposing deep brain stimulating (DBS) electric fields for the treatment of brain tumours, as well as our investigations into the effects of TTFields on paediatric brain tumour cell lines.
Methods
A variety of high-grade adult and paediatric brain tumour cell lines were treated with DBS electric fields and TTFields. The effects of electric fields were assessed through a number of avenues including; viability, gene expression, cell cycle, and combinational effects with chemotherapies.
Results
We observed that both DBS electric fields and TTFields affected our brain tumour cell lines with regards to viability, cell cycling, and gene expression. Both of the treatments may be optimised through manipulations of frequency and intensity and may be potentiated with the addition of a variety of chemotherapies.
Conclusions
We have demonstrated efficacy of repurposed DBS electric fields against high-grade brain tumours, as well as TTFields against paediatric high-grade brain tumours. We have also elucidated multiple mechanisms of action while providing avenues for future research.
Item Type
ethesis
Thesis Type
PhD
Supervisors
Subjects (LC)
Associated Schools / Departments
School of Medicine
eprints ID
59585
UoN Repository URI
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THESIS CORRECTED.pdf
Type
Full-text
Description
Examined
Size
6.72 MB
Format
Adobe PDF
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