Intracranial glioma xenograft model rapidly reestablishes blood-brain barrier integrity for longitudinal imaging of tumor progression using fluorescence molecular tomography and contrast agents.
Authors: Habimana-Griffin L, Ye D, Carpenter J, Prior J, Sudlow G, Marsala L, Mixdorf M, Rubin J, Chen H, Achilefu S
The blood-brain barrier (BBB) is a major obstacle to detecting and treating brain tumors. Overcoming this challenge will facilitate the early and accurate detection of brain lesions and guide surgical resection of tumors. We generated an orthotopic brain tumor model that simulates the pathophysiology of gliomas at early stages; determine the BBB integrity and breakdown over the time course of tumor progression using generic and cancer-targeted near-infrared (NIR) fluorescent molecular probes. We developed an intracranial tumor xenograft model that rapidly reestablished BBB integrity and monitored tumor progression by bioluminescence imaging. Sham control mice were injected with phosphate-buffered saline only. Fluorescence molecular tomography (FMT) was used to quantify the uptake of tumor-targeted and passive NIR fluorescent imaging agents in orthotopic glioma (U87-GL-GFP PDE7B H217Q cells) tumor model. Cancer-induced and transient (with focused ultrasound, FUS) disruption of BBB integrity was monitored with NIR fluorescent dyes. Stereotactic injection of 50,000 cells into mouse brain allowed rapid reestablishment of BBB integrity within a week, as determined by the inability of both tumor-targeted and generic NIR imaging agents to extravasate into the brain. Tumor-induced BBB disruption was observed 7 weeks after tumor implantation. FUS achieved a similar effect at any time point after reestablishing BBB integrity. While tumor uptake and retention of the passive NIR dye, indocyanine green, was negligible, both actively tumor-targeting agents exhibited selective accumulation in the tumor region. The tumor-targeting molecular probe that clears rapidly from nontumor brain tissue exhibits higher contrast than the analogous vascular-targeting agent and helps delineate tumors from sham control. We highlight the utility of FMT imaging for longitudinal assessment of brain tumors and the interplay between the stages of BBB disruption and molecular probe retention in tumors, with potential application to other neurological diseases.
Introduction
Purpose
Drug delivery with BBB opening
Study Objective
To create an orthotopic glioma model and longitudinally assess blood–brain barrier integrity and tumor uptake of passive and targeted near-infrared fluorescent probes (with and without focused ultrasound) using fluorescence molecular tomography.
Animal model / Human subject
Mouse (Mus musculus); strain not specified; age not specified; sex not specified
Disease model
glioma
MRI or image guidance method
Not specified
Targeted brain region(s)
Tumor
Target coordinates
Not specified
Cargo name and characteristics
ICG (Cardiogreen, Sigma-Aldrich, Missouri) or Cypate-cyclo
Route of administration
Stereotactic intracranial injection
Outcomes and Safety
Summary of Outcomes
Transient focused ultrasound (FUS) permeabilization of the blood–brain barrier enabled delivery and significantly enhanced tumor uptake and retention of the active NIR probe LS301 (but not the passive ICG), with LS301 showing higher tumor-to-background contrast and faster background clearance than AF‑Tf and tumor-induced BBB breakdown observed by ~7 weeks post-implantation — no multiple FUS parameter variations were reported.
Duration of biological effect
1 week
Safety-related matter
No explicit safety concerns or adverse effects are reported; the authors state the implantation caused minimal perturbation of the BBB and that FUS-mediated BBB disruption is transient and likely does not perturb tumor tissue, minimizing nonspecific accumulation.
Brain Region
Ultrasound Parameters
Ultrasound instrument
VIFU 2000, Alpinion US Inc., Washington
FUS Frequency
1.5 MHz
FUS Pressure
0.85 MPa
FUS Mode
pulsed
Pulse duration
6.7 ms
Duration of a single FUS session
1 min
Focal Characteristics
60 mm
Treatment frequency
Single
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