Pitt Shield

Advances in Molecular Imaging of Locally Delivered Targeted Therapeutics for Central Nervous System Tumors.

Authors: Tosi U, Marnell CS, Chang R, Cho WC, Ting R, Maachani UB, Souweidane MM

Thanks to the recent advances in the development of chemotherapeutics, the morbidity and mortality of many cancers has decreased significantly. However, compared to oncology in general, the field of neuro-oncology has lagged behind. While new molecularly targeted chemotherapeutics have emerged, the impermeability of the blood-brain barrier (BBB) renders systemic delivery of these clinical agents suboptimal. To circumvent the BBB, novel routes of administration are being applied in the clinic, ranging from intra-arterial infusion and direct infusion into the target tissue (convection enhanced delivery (CED)) to the use of focused ultrasound to temporarily disrupt the BBB. However, the current system depends on a "wait-and-see" approach, whereby drug delivery is deemed successful only when a specific clinical outcome is observed. The shortcomings of this approach are evident, as a failed delivery that needs immediate refinement cannot be observed and corrected. In response to this problem, new theranostic agents, compounds with both imaging and therapeutic potential, are being developed, paving the way for improved and monitored delivery to central nervous system (CNS) malignancies. In this review, we focus on the advances and the challenges to improve early cancer detection, selection of targeted therapy, and evaluation of therapeutic efficacy, brought forth by the development of these new agents.

Introduction

Purpose Drug delivery with BBB opening
Study Objective To review advances and challenges in developing theranostic agents to enable monitored delivery, early detection, and evaluation of targeted therapies for central nervous system malignancies across the blood–brain barrier.
Disease model CNS malignancies (brain cancer)
Route of administration Systemic (intravenous), intra-arterial infusion, direct intracerebral infusion (convection-enhanced delivery, CED); focused ultrasound-assisted BBB disruption (adjunct to systemic delivery)

Outcomes and Safety

Summary of Outcomes Focused ultrasound can transiently disrupt the blood–brain barrier to improve delivery of chemotherapeutics to CNS tumors, and theranostic agents enable concurrent imaging and therapy for better monitoring of delivery, early detection, therapy selection, and evaluation of treatment efficacy. This review does not report testing of specific focused ultrasound parameters.
Safety-related matter No adverse effects or safety issues are mentioned 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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