Focused ultrasound widely broadens AAV-delivered Cas9 distribution and activity.
Authors: Gumusgoz E, Kasiri S, Youssef I, Verma M, Chopra R, Villarreal Acha D, Wu J, Marriam U, Alao E, Chen X, Guisso DR, Gray SJ, Shah BR, Minassian BA
Because children have little temporal exposure to environment and aging, most pediatric neurological diseases are inherent, i.e. genetic. Since postnatal neurons and astrocytes are mostly non-replicating, gene therapy and genome editing present enormous promise in child neurology. Unlike in other organs, which are highly permissive to adeno-associated viruses (AAV), the mature blood-brain barrier (BBB) greatly limits circulating AAV distribution to the brain. Intrathecal administration improves distribution but to no more than 20% of brain cells. Focused ultrasound (FUS) opens the BBB transiently and safely. In the present work we opened the hippocampal BBB and delivered a Cas9 gene via AAV9 intrathecally. This allowed brain first-pass, and subsequent vascular circulation and re-entry through the opened BBB. The mouse model used was of Lafora disease, a neuroinflammatory disease due to accumulations of misshapen overlong-branched glycogen. Cas9 was targeted to the gene of the glycogen branch-elongating enzyme glycogen synthase. We show that FUS dramatically (2000-fold) improved hippocampal Cas9 distribution and greatly reduced the pathogenic glycogen accumulations and hippocampal inflammation. FUS is in regular clinical use for other indications. Our work shows that it has the potential to vastly broaden gene delivery or editing along with clearance of corresponding pathologic basis of brain disease.
Introduction
Purpose
Drug delivery with BBB opening
Study Objective
To determine whether focused ultrasound opening of the hippocampal blood–brain barrier enhances intrathecal AAV9–Cas9 delivery to edit glycogen synthase and reduce pathogenic glycogen accumulation and inflammation in a mouse model of Lafora disease.
Animal model / Human subject
Mouse (Mus musculus); strain None; age None; sex None
Disease model
Lafora disease
Targeted brain region(s)
Hippocampus
Cargo name and characteristics
Cas9 gene (CRISPR-Cas9 gene-editing nuclease) delivered via AAV9 vector (AAV; gene therapy/gene-editing cargo), intrathecal administration, targeted to the glycogen synthase gene
Route of administration
intrathecal
Outcomes and Safety
Summary of Outcomes
Focused ultrasound transiently opened the hippocampal BBB to enable intrathecal AAV9-Cas9 delivery, producing ~2000-fold greater hippocampal Cas9 distribution and markedly reducing pathogenic glycogen accumulations and hippocampal inflammation; no specific FUS parameter variants were reported.
Safety-related matter
The paper states that focused ultrasound (FUS) opens the blood-brain barrier transiently and safely and notes FUS is in regular clinical use for other indications; no adverse effects or safety concerns are reported in the text.
Brain Region
Ultrasound Parameters
Focal Characteristics
Focal depth: None; Focal length: None; Aperture size: None
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