Targeted delivery of napabucasin with radiotherapy improves outcomes in diffuse midline glioma.
Authors: Gallitto M, Zhang X, De Los Santos G, Wei HJ, Fernández EC, Duan S, Sedor G, Yoh N, Kokossis D, Angel JC, Wang YF, White E, Kinslow CJ, Berg X, Tomassoni L, Zandkarimi F, Chio IIC, Canoll P, Bruce JN, Feldstein NA, Gartrell RD, Cheng SK, Garvin JH, Zacharoulis S, Wechsler-Reya RJ, Pavisic J, Califano A, Zhang Z, Wu CC
Diffuse midline glioma (DMG) is the most aggressive primary brain tumor in children. All previous studies examining the role of systemic agents have failed to demonstrate a survival benefit; the only standard of care is radiation therapy (RT). Successful implementation of radiosensitization strategies in DMG remains an essential and promising avenue of investigation. We explore the use of Napabucasin, an NAD(P)H quinone dehydrogenase 1 (NQO1)-bioactivatable reactive oxygen species (ROS)-inducer, as a potential therapeutic radiosensitizer in DMG. In this study, we conduct in vitro and in vivo assays using patient-derived DMG cultures to elucidate the mechanism of action of Napabucasin and its radiosensitizing properties. As penetration of systemic therapy through the blood-brain barrier (BBB) is a significant limitation to the success of DMG therapies, we explore focused ultrasound (FUS) and convection-enhanced delivery (CED) to overcome the BBB and maximize therapeutic efficacy. Napabucasin is a potent ROS-inducer and radiosensitizer in DMG, and treatment-mediated ROS production and cytotoxicity are dependent on NQO1. In subcutaneous xenograft models, combination therapy with RT improves local control. After optimizing targeted drug delivery using CED in an orthotopic mouse model, we establish the novel feasibility and survival benefit of CED of Napabucasin concurrent with RT. As nearly all DMG patients will receive RT as part of their treatment course, our validation of the efficacy of radiosensitizing therapy using CED to prolong survival in DMG opens the door for exciting novel studies of alternative radiosensitization strategies in this devastating disease while overcoming limitations of the BBB.
Introduction
Purpose
Drug delivery WITHOUT BBB opening
Study Objective
To evaluate Napabucasin as an NQO1-dependent ROS-inducing radiosensitizer for diffuse midline glioma and to assess focused ultrasound and convection-enhanced delivery strategies to overcome the blood–brain barrier.
Animal model / Human subject
Mouse (Mus musculus); strain not specified; age not specified; sex not specified
Disease model
Diffuse midline glioma (DMG)
Cargo name and characteristics
Napabucasin — small-molecule NQO1-bioactivatable reactive oxygen species (ROS) inducer and radiosensitizer
Route of administration
Convection-enhanced delivery (CED); focused ultrasound (FUS)
Outcomes and Safety
Summary of Outcomes
Napabucasin is a potent NQO1-dependent ROS inducer and radiosensitizer that improves local tumor control with radiation in subcutaneous xenografts and, when delivered via optimized convection-enhanced delivery (CED) concurrent with radiation, prolongs survival in an orthotopic DMG mouse model. Focused ultrasound (FUS) parameters: none reported as successful—CED (not FUS) was the optimized, effective delivery method.
Safety-related matter
No safety data or adverse effects are mentioned in the provided text; no adverse effects were reported.
Brain Region
Ultrasound Parameters
Focal Characteristics
Focal depth: None; Focal length: None; Aperture size: None
Treatment frequency
Multiple
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