Improvement of glymphatic-lymphatic drainage of beta-amyloid by focused ultrasound in Alzheimer's disease model.
Authors: Lee Y, Choi Y, Park EJ, Kwon S, Kim H, Lee JY, Lee DS
Drainage of parenchymal waste through the lymphatic system maintains brain homeostasis. Age-related changes of glymphatic-lymphatic clearance lead to the accumulation beta-amyloid (Aβ) in dementia models. In this study, focused ultrasound treatment in combination with microbubbles (FUS-MB) improved Aβ drainage in early dementia model mice, 5XFAD. FUS-MB enhanced solute Aβ clearance from brain, but not plaques, to cerebrospinal fluid (CSF) space and then deep cervical lymph node (dCLN). dCLN ligation exaggerated memory impairment and progress of plaque formation and also the beneficial effects of FUS-MB upon Aβ removal through CSF-lymphatic routes. In this ligation model, FUS-MB improved memory despite accumulation of Aβ in CSF. In conclusion, FUS-MB enhances glymphatic-lymphatic clearance of Aβ mainly by increasing brain-to-CSF Aβ drainage. We suggest that FUS-MB can delay dementia progress in early period and benefits of FUS-MB depend on the effect of Aβ disposal through CSF-lymphatics.
Introduction
Purpose
Transport without BBB opening
Study Objective
To determine whether focused ultrasound with microbubbles (FUS-MB) enhances glymphatic–lymphatic clearance of beta-amyloid from brain parenchyma to CSF and deep cervical lymph nodes and thereby mitigates cognitive decline in 5XFAD mice.
Animal model / Human subject
Mus musculus (mouse), 5XFAD, age not specified, sex not specified
Disease model
Alzheimer's disease (5XFAD mouse model)
Cargo name and characteristics
Focused ultrasound (FUS): a non‑invasive acoustic therapeutic intervention applied to the mouse brain to enhance glymphatic–lymphatic clearance and brain-to-CSF drainage of beta‑amyloid (Aβ) in the 5XFAD dementia model.
Outcomes and Safety
Summary of Outcomes
Focused ultrasound with microbubbles (FUS‑MB) enhanced glymphatic–lymphatic clearance of soluble Aβ from brain parenchyma into CSF and deep cervical lymph nodes, reduced parenchymal Aβ deposits and microglial activation, prevented neuronal loss, and improved working memory in 5XFAD mice. These benefits were observed following repeated FUS‑MB treatments (reported as 4–6 sessions targeting ~one‑third of a hemisphere around the hippocampus with confirmed BBB opening); no other FUS parameter variations were tested/reported as comparators.
Safety-related matter
The authors report that FUS-MB did not induce neuronal loss, reactive astrocytes, or microglial activation and in fact prevented neuronal loss and glial activation induced by dCLN ligation; no adverse effects were observed or reported.
Brain Region
Ultrasound Parameters
Focal Characteristics
Focal depth: None; Focal length: None; Aperture size: None
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