Pitt Shield

MR image-guided delivery of cisplatin-loaded brain-penetrating nanoparticles to invasive glioma with focused ultrasound.

Authors: Timbie KF, Afzal U, Date A, Zhang C, Song J, Wilson Miller G, Suk JS, Hanes J, Price RJ

Systemically administered chemotherapeutic drugs are often ineffective in the treatment of invasive brain tumors due to poor therapeutic index. Within gliomas, despite the presence of heterogeneously leaky microvessels, dense extracellular matrix and high interstitial pressure generate a "blood-tumor barrier" (BTB), which inhibits drug delivery and distribution. Meanwhile, beyond the contrast MRI-enhancing edge of the tumor, invasive cancer cells are protected by the intact blood-brain barrier (BBB). Here, we tested whether brain-penetrating nanoparticles (BPN) that possess dense surface coatings of polyethylene glycol (PEG) and are loaded with cisplatin (CDDP) could be delivered across both the blood-tumor and blood-brain barriers with MR image-guided focused ultrasound (MRgFUS), and whether this treatment could control glioma growth and invasiveness. To this end, we first established that MRgFUS is capable of significantly enhancing the delivery of ~60nm fluorescent tracer BPN across the blood-tumor barrier in both the 9L (6-fold improvement) gliosarcoma and invasive F98 (28-fold improvement) glioma models. Importantly, BPN delivery across the intact BBB, just beyond the tumor edge, was also markedly increased in both tumor models. We then showed that a CDDP loaded BPN formulation (CDDP-BPN), composed of a blend of polyaspartic acid (PAA) and heavily PEGylated polyaspartic acid (PAA-PEG), was highly stable, provided extended drug release, and was effective against F98 cells in vitro. These CDDP-BPN were delivered from the systemic circulation into orthotopic F98 gliomas using MRgFUS, where they elicited a significant reduction in tumor invasiveness and growth, as well as improved animal survival. We conclude that this therapy may offer a powerful new approach for the treatment invasive gliomas, particularly for preventing and controlling recurrence.

Introduction

Purpose Drug delivery with BBB opening
Study Objective To determine whether MR-guided focused ultrasound can enhance delivery of PEGylated, cisplatin-loaded brain-penetrating nanoparticles across the blood–tumor and blood–brain barriers to control glioma growth and invasiveness.
Disease model Invasive glioma (brain tumors; gliosarcoma 9L and F98 glioma models)
MRI or image guidance method MR image-guided focused ultrasound (MRgFUS)
Targeted brain region(s) Orthotopic F98 Glioma (Tumor And Adjacent Peritumoral Brain/Bbb)
Cargo name and characteristics Cisplatin-loaded brain-penetrating nanoparticles (CDDP-BPN): ~60 nm nanoparticles composed of a blend of polyaspartic acid (PAA) and heavily PEGylated polyaspartic acid (PAA-PEG) with dense PEG surface coating; small-molecule chemotherapeutic cisplatin payload, stable formulation with extended drug-release properties.
Route of administration Intravenous (systemic administration) with MR-guided focused ultrasound (MRgFUS) to enhance delivery

Outcomes and Safety

Summary of Outcomes MRgFUS markedly increased delivery of ~60 nm PEGylated, cisplatin-loaded brain-penetrating nanoparticles across both the blood-tumor barrier and the intact BBB (6-fold in 9L, 28-fold in F98), which reduced tumor invasiveness and growth and improved survival in orthotopic F98 glioma models; no multiple FUS parameter variants were reported as tested.
Safety-related matter No safety issues, adverse effects, or toxicity are mentioned in the provided text; the excerpt reports enhanced delivery, reduced tumor invasiveness and growth, and improved survival without discussing safety.

Brain Region

Ultrasound Parameters

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

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