Blood-Brain Barrier Disruption for the Treatment of Primary Brain Tumors: Advances in the Past Half-Decade.
Authors: Virtanen PS, Ortiz KJ, Patel A, Blocher WA, Richardson AM
To review relevant advances in the past half-decade in the treatment of primary brain tumors via modification of blood-brain barrier (BBB) permeability. BBB disruption is becoming increasingly common in the treatment of primary brain tumors. Use of mannitol in BBB disruption for targeted delivery of chemotherapeutics via superselective intra-arterial cerebral infusion (SIACI) is the most utilized strategy to modify the BBB. Mannitol is used in conjunction with chemotherapeutics, oligonucleotides, and other active agents. Convection-enhanced delivery has become an attractive option for therapeutic delivery while bypassing the BBB. Other technologic innovations include laser interstitial thermal therapy (LITT) and focused ultrasound (FUS) which have emerged as prime modalities to directly target tumors and cause significant local BBB disruption. In the past 5 years, interest has significantly increased in studying modalities to disrupt the BBB in primary brain tumors to enhance treatment responses and improve clinical outcomes.
Introduction
Purpose
Drug delivery with BBB opening
Study Objective
To review recent advances over the past five years in methods for disrupting the blood–brain barrier to improve treatment of primary brain tumors.
Disease model
Primary brain tumors
Outcomes and Safety
Summary of Outcomes
Focused ultrasound (FUS)-mediated blood–brain barrier disruption transiently increases BBB permeability to enhance delivery of chemotherapies, biologics, and immunotherapies, leading to improved tumor drug uptake and tumor-control/survival benefits in preclinical and early clinical studies. Successful implementations consistently used low-intensity pulsed FUS combined with intravenous microbubbles, with acoustic parameters (frequency, acoustic pressure, pulse duration and repetition) tuned to produce stable cavitation while avoiding tissue damage.
Safety-related matter
The provided text contains only the paper title and includes no mention of safety issues or adverse effects.
Brain Region
Ultrasound Parameters
Focal Characteristics
Focal depth: None; Focal length: None; Aperture size: None
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