Pulsed focused ultrasound alters the proteomic profile of the tumor microenvironment in a syngeneic mouse model of glioblastoma.
Authors: Chen H, Koul D, Zhang Y, Ghobadi SN, Zhu Y, Hou Q, Chang E, Habte FG, Paulmurugan R, Khan S, Zheng Y, Graeber MB, Herschmann I, Lee KS, Wintermark M
Glioblastoma (GBM), a lethal primary adult malignancy, is difficult to treat because of the restrictive nature of the blood-brain barrier (BBB), blood-tumor barrier (BTB), and the immunosuppressive tumor microenvironment (TME). Since pulsed focused ultrasound (pFUS) is currently used to improve therapeutic deliveries across these barriers, this study aims to characterize the impact of pFUS on the TME proteomics upon opening the BBB and BTB. We utilized MRI-guided, pFUS with ultrasound contrast microbubbles (termed 'pFUS' herein) to selectively and transiently open the BBB and BTB investigating proteomic modifications in the TME. Utilizing an orthotopically-allografted mouse GL26 GBM model (Ccr2RFP/wt - Cx3cr1GFP/wt), pFUS's effect on glioma proteomics was evaluated using a Luminex 48-plex assay. pFUS treated tumors exhibited increases in pro-inflammatory cytokines, chemokines, and trophic factors (CCTFs). Proteomic changes in tumors tend to peak at 24 h after single pFUS session (1x), with levels then plateauing or declining over the subsequent 24 h. Tumors receiving three pFUS sessions (3x) showed elevated CCTFs levels peaking as early as 6 h after the third session. pFUS together with microbubbles induces a sterile inflammatory response in the TME of a mouse GBM tumor. Moreover, this proinflammatory shift can be sustained and perhaps primed for more rapid responses upon multiple sessions of pFUS. These findings raise the intriguing potential that pFUS-induced BBB and BTB opening may not only be effective in facilitating the therapeutic agent delivery, but also be harnessed to modify the TME to assist immunotherapies in overcoming immune evasion in GBM.
Introduction
Purpose
Drug delivery with BBB opening
Study Objective
To characterize how MRI-guided pulsed focused ultrasound with microbubbles alters tumor microenvironment proteomics when opening the blood–brain and blood–tumor barriers in a mouse glioblastoma model.
Animal model / Human subject
Mouse (Ccr2RFP/wt - Cx3cr1GFP/wt transgenic), orthotopically allografted with GL26 glioma cells; age: not reported; sex: not reported
Disease model
Glioblastoma
MRI or image guidance method
MRI-guided
Targeted brain region(s)
Glioblastoma Tumor Tissue And Adjacent Brain Parenchyma
Target coordinates
2 mm posterior, 1.7 mm lateral to bregma, depth 3.5 mm
Outcomes and Safety
Summary of Outcomes
Single pFUS elevated pro-inflammatory cytokines, chemokines and trophic factors with peak levels at 24 h, three pFUS sessions accelarated and sustained these proteomic changes, priming the tumor microenvironment for inflammatory reponses.
Duration of biological effect
48 h
Safety-related matter
pFUS combined with microbubbles caused only transient BBB/BTB disruption; no obvious tissue damage, hemorrhage or other adverse effect observed.
Brain Region
Ultrasound Parameters
Ultrasound instrument
Spherically focused transducer (spherical radius = 20+- 2 mm, active diameter = 25 mm [focal ratio = 0.8]; Imasonic , Voray sur I'Ognon, France)
FUS Frequency
1.5 MHz
FUS Pressure
0.5 Mpa
FUS Mode
pulsed
Pulse duration
20 ms
Duration of a single FUS session
90 s
Focal Characteristics
Focal depth: None; Focal length: None; Aperture size: None
Treatment frequency
Both single (1x) and multiple (3x) sessions
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