Convection-enhanced delivery for diffuse intrinsic pontine glioma treatment Journal Article


Authors: Zhou, Z. P.; Singh, R.; Souweidane, M. M.
Article Title: Convection-enhanced delivery for diffuse intrinsic pontine glioma treatment
Abstract: Convection-enhanced delivery (CED) is a technique designed to deliver drugs directly into the brain or tumors. Its ability to bypass the blood-brain barrier (BBB), one of the major hurdles in delivering drugs to the brain, has made it a promising drug delivery method for the treatment of primary brain tumors. A number of clinical trials utilizing CED of various therapeutic agents have been conducted to treat patients with supratentorial high-grade gliomas. Significant responses have been observed in certain patients in all of these trials. However, the insufficient ability to monitor drug distribution and pharmacokinetics hampers CED from achieving its potentials on a larger scale. Brainstem CED for diffuse intrinsic pontine glioma (DIPG) treatment is appealing because this tumor is compact and has no definitive treatment. The safety of brainstem CED has been established in small and large animals, and recently in early stage clinical trials. There are a few current clinical trials of brainstem CED in treating DIPG patients using targeted macromolecules such as antibodies and immunotoxins. Future advances for CED in DIPG treatment will come from several directions including: choosing the right agents for infusion; developing better agents and regimen for DIPG infusion; improving instruments and technique for easier and accurate surgical targeting and for allowing multisession or prolonged infusion to implement optimal time sequence; and better understanding and control of drug distribution, clearance and time sequence. CED-based therapies for DIPG will continue to evolve with new understanding of the technique and the disease.
Keywords: glioma; biopsy; drug distribution; therapeutic target; interstitial infusion; glioblastoma-multiforme; rat-brain; convection-enhanced delivery; recurrent malignant glioma; high-grade gliomas; stereotactic; receptor-alpha; diffuse intrinsic pontine; catheter design; pediatric brain-stem; increased efficacy
Journal Title: Current Neuropharmacology
Volume: 15
Issue: 1
ISSN: 1570-159X
Publisher: Bentham Science Publishers  
Date Published: 2017-01-01
Start Page: 116
End Page: 128
Language: English
ACCESSION: WOS:000391855800013
DOI: 10.2174/1570159x14666160614093615
PROVIDER: wos
PUBMED: 27306036
PMCID: PMC5327456
Notes: Review -- Source: Wos
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