Pitt Shield

Strategies to Improve Drug Delivery Across the Blood-Brain Barrier for Glioblastoma.

Authors: Narsinh KH, Perez E, Haddad AF, Young JS, Savastano L, Villanueva-Meyer JE, Winkler E, de Groot J

Glioblastoma remains resistant to most conventional treatments. Despite scientific advances in the past three decades, there has been a dearth of effective new treatments. New approaches to drug delivery and clinical trial design are needed. We discuss how the blood-brain barrier and tumor microenvironment pose challenges for development of effective therapies for glioblastoma. Next, we discuss treatments in development that aim to overcome these barriers, including novel drug designs such as nanoparticles and antibody-drug conjugates, novel methods of drug delivery, including convection-enhanced and intra-arterial delivery, and novel methods to enhance drug penetration, such as blood-brain barrier disruption by focused ultrasound and laser interstitial thermal therapy. Lastly, we address future opportunities, positing combination therapy as the best strategy for effective treatment, neoadjuvant and window-of-opportunity approaches to simultaneously enhance therapeutic effectiveness with interrogation of on-treatment biologic endpoints, and adaptive platform and basket trials as imperative for future trial design. New approaches to GBM treatment should account for the blood-brain barrier and immunosuppression by improving drug delivery, combining treatments, and integrating novel clinical trial designs.

Introduction

Purpose Drug delivery with BBB opening
Study Objective To review challenges to glioblastoma treatment—particularly the blood–brain barrier and tumor microenvironment—and to discuss emerging drug-delivery strategies and clinical trial designs to improve therapeutic outcomes.
Disease model Glioblastoma
Cargo name and characteristics Nanoparticles (nanoparticle-based therapeutics) and antibody–drug conjugates (ADCs: monoclonal antibody linked to cytotoxic small-molecule payload)
Route of administration Convection-enhanced (direct intracerebral/intratumoral) infusion; intra-arterial delivery; systemic (intravenous) delivery enhanced by blood–brain barrier disruption via focused ultrasound or laser interstitial thermal therapy

Outcomes and Safety

Summary of Outcomes The review highlights that focused ultrasound–mediated blood–brain barrier disruption can enhance drug penetration into glioblastoma and that combining improved delivery methods with combination therapies and novel trial designs may improve outcomes; the paper did not test or report specific focused ultrasound parameter settings or identify any particular parameter set as successful.
Safety-related matter No safety issues or adverse effects are reported or discussed in the provided text.

Brain Region

Visualization unavailable

Ultrasound Parameters

Focal Characteristics Focal depth: None; Focal length: None; Aperture size: None

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