Polymer nanocarriers for targeted local delivery of agents in treating brain tumors.
Authors: Josowitz AD, Bindra RS, Saltzman WM
Glioblastoma (GBM), the deadliest brain cancer, presents a multitude of challenges to the development of new therapies. The standard of care has only changed marginally in the past 17 years, and few new chemotherapies have emerged to supplant or effectively combine with temozolomide. Concurrently, new technologies and techniques are being investigated to overcome the pharmacokinetic challenges associated with brain delivery, such as the blood brain barrier (BBB), tissue penetration, diffusion, and clearance in order to allow for potent agents to successful engage in tumor killing. Alternative delivery modalities such as focused ultrasound and convection enhanced delivery allow for the local disruption of the BBB, and the latter in particular has shown promise in achieving broad distribution of agents in the brain. Furthermore, the development of polymeric nanocarriers to encapsulate a variety of cargo, including small molecules, proteins, and nucleic acids, have allowed for formulations that protect and control the release of said cargo to extend its half-life. The combination of local delivery and nanocarriers presents an exciting opportunity to address the limitations of current chemotherapies for GBM toward the goal of improving safety and efficacy of treatment. However, much work remains to establish standard criteria for selection and implementation of these modalities before they can be widely implemented in the clinic. Ultimately, engineering principles and nanotechnology have opened the door to a new wave of research that may soon advance the stagnant state of GBM treatment development.
Introduction
Purpose
Drug delivery with BBB opening
Study Objective
To evaluate the potential of combining local delivery modalities such as convection enhanced delivery with polymeric nanocarriers to overcome brain-delivery barriers and improve the safety and efficacy of glioblastoma treatments.
Animal model / Human subject
None.
Disease model
Glioblastoma (GBM)
MRI or image guidance method
Not stated
Targeted brain region(s)
Blood-Brain Barrier (Bbb)
Cargo name and characteristics
Polymeric nanocarriers (nanoparticles) designed to encapsulate therapeutic cargo — including small-molecule chemotherapeutics, proteins, and nucleic acids — that protect payloads, control release, extend half-life, and enable local brain delivery (e.g., via convection-enhanced delivery) for glioblastoma treatment.
Route of administration
Convection-enhanced delivery (local intracranial) and focused ultrasound-mediated disruption of the blood–brain barrier (local brain delivery)
Outcomes and Safety
Summary of Outcomes
Local delivery techniques (e.g., focused ultrasound, convection-enhanced delivery) combined with polymeric nanocarriers improve brain distribution and controlled release of therapeutics, potentially enhancing glioblastoma tumor killing and treatment safety.
Duration of biological effect
17 years
Safety-related matter
The authors state that combining local delivery and nanocarriers could improve the safety and efficacy of GBM treatments, but note that further work and standard criteria are needed before clinical implementation.
Brain Region
Ultrasound Parameters
Ultrasound instrument
None in text.
Focal Characteristics
Intracranial (brain parenchyma/tumor region)
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