Amyloid-β plaque reduction, endogenous antibody delivery and glial activation by brain-targeted, transcranial focused ultrasound.
Authors: Jordão JF, Thévenot E, Markham-Coultes K, Scarcelli T, Weng YQ, Xhima K, O'Reilly M, Huang Y, McLaurin J, Hynynen K, Aubert I
Noninvasive, targeted drug delivery to the brain can be achieved using transcranial focused ultrasound (FUS), which transiently increases the permeability of the blood-brain barrier (BBB) for localized delivery of therapeutics from the blood to the brain. Previously, we have demonstrated that FUS can deliver intravenously-administered antibodies to the brain of a mouse model of Alzheimer's disease (AD) and rapidly reduce plaques composed of amyloid-β peptides (Aβ). Here, we investigated two potential effects of transcranial FUS itself that could contribute to a reduction of plaque pathology, namely the delivery of endogenous antibodies to the brain and the activation of glial cells. We demonstrate that transcranial FUS application leads to a significant reduction in plaque burden four days after a single treatment in the TgCRND8 mouse model of AD and that endogenous antibodies are found bound to Aβ plaques. Immunohistochemical and western blot analyses showed an increase in endogenous immunoglobulins within the FUS-targeted cortex. Subsequently, microglia and astrocytes in FUS-treated cortical regions show signs of activation through increases in protein expression and changes in glial size, without changes in glial cell numbers. Enhanced activation of glia correlated with increased internalization of Aβ in microglia and astrocytes. Together these data demonstrate that FUS improved the bioavailability of endogenous antibodies and led to a temporal activation of glial cells, providing evidence towards antibody- and glia-dependent mechanisms of FUS-mediated plaque reduction.
Introduction
Purpose
Drug delivery with BBB opening
Study Objective
To determine whether transcranial focused ultrasound increases delivery of endogenous antibodies to the brain and activates glial cells, thereby contributing to amyloid-β plaque reduction in a TgCRND8 mouse model of Alzheimer's disease.
Animal model / Human subject
mouse, TgCRND8, none, none
Disease model
Alzheimer's disease (TgCRND8 mouse model)
MRI or image guidance method
MRI-guided (MRIgFUS)
Targeted brain region(s)
Cortex
Outcomes and Safety
Summary of Outcomes
Focused ultrasound reduced amyloid-β plaque burden and increased endogenous antibody delivery in the cortex.
Duration of biological effect
4 days
Safety-related matter
No tissue damage reported.
Brain Region
Ultrasound Parameters
Ultrasound instrument
focused ultrasound transducer
FUS Pressure
0.3 MPa
FUS Mode
pulsed
Pulse duration
10 ms
Duration of a single FUS session
120 s
Treatment frequency
single
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