Radiosensitisation by olaparib through focused ultrasound delivery in a diffuse midline glioma model.
Authors: 't Hart E, Bianco J, Bruin MAC, Derieppe M, Besse HC, Berkhout K, Chin Joe Kie LA, Su Y, Hoving EW, Huitema ADR, Ries MG, van Vuurden DG
Diffuse midline glioma H3K27-altered (DMG) is an aggressive, inoperable, predominantly paediatric brain tumour. Treatment strategies are limited, resulting in a median survival of only 11 months. Currently, radiotherapy (RT), often combined with temozolomide, is considered the standard of care but remains palliative, highlighting the urgency for new therapies. Radiosensitisation by olaparib, an inhibitor of PARP1 and subsequently PAR-synthesis, is a promising treatment option. We assessed whether PARP1 inhibition enhances radiosensitivity in vitro and in vivo following focused ultrasound mediated blood-brain barrier opening (FUS-BBBO). Effects of PARP1 inhibition were evaluated in vitro using viability, clonogenic, and neurosphere assays. In vivo olaparib extravasation and pharmacokinetic profiling following FUS-BBBO was measured by LC-MS/MS. Survival benefit of FUS-BBBO combined with olaparib and RT was assessed using a patient-derived xenograft (PDX) DMG mouse model. Treatment with olaparib in combination with radiation delayed tumour cell proliferation in vitro through the reduction of PAR. Prolonged exposure of low olaparib concentration was more efficient in delaying cell growth than short exposure of high concentration. FUS-BBBO increased olaparib bioavailability in the pons by 5.36-fold without observable adverse effects. A Cmax of 54.09 μM in blood and 1.39 μM in the pontine region was achieved following administration of 100 mg/kg olaparib. Although RT combined with FUS-BBBO mediated olaparib extravasation delayed local tumour growth, survival benefits were not observed in an in vivo DMG PDX model. Olaparib effectively radiosensitises DMG cells in vitro and reduces primary tumour growth in vivo when combined with RT. Further studies are needed to investigate the therapeutic benefit of olaparib in suitable preclinical PDX models.
Introduction
Purpose
Drug delivery with BBB opening
Study Objective
To evaluate whether focused ultrasound-mediated delivery of olaparib can enhance radiosensitivity in a diffuse midline glioma model.
Animal model / Human subject
Mouse, athymic nude Foxn1-/-, 5-12 weeks old, female
Disease model
diffuse midline glioma
Targeted brain region(s)
Pons
Cargo name and characteristics
Olaparib — small-molecule PARP inhibitor (radiosensitizer)
Route of administration
Intraperitoneal
Outcomes and Safety
Summary of Outcomes
FUS-BBBO increased olaparib concentration in the pons by 5.36 fold. Combination with radiotherapy delayed local tumor growth but did not improve survival
Safety-related matter
The provided text contains only the paper title and includes no mention of safety or adverse effects. Therefore, no adverse effects are reported in the supplied content.
Brain Region
Ultrasound Parameters
Ultrasound instrument
Mon-element FUS transducer
FUS Frequency
1 MHz
FUS Pressure
400 kPa
FUS Mode
pulsed
Pulse duration
10 ms
Duration of a single FUS session
2 minutes
Focal Characteristics
Focal depth: None; Focal length: None; Aperture size: None
Treatment frequency
multiple sessions
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