Microbubble drug conjugate and focused ultrasound blood brain barrier delivery of AAV-2 SIRT-3.
Authors: Trinh D, Nash J, Goertz D, Hynynen K, Bulner S, Iqbal U, Keenan J
Delivery of viral vectors as gene therapies to treat neurodegenerative diseases has been hampered by the inability to penetrate the blood brain barrier (BBB) and invasive or non-targeted delivery options prone to inducing immune responses. MR guided focused ultrasound (MR-g-FUS) and microbubbles have demonstrated safe, temporary, targeted BBB permeabilization clinically. We developed clinically scalable, microbubble drug conjugates (MDCs) for the viral gene therapy, AAV.SIRT3-myc [adeno-associated virus expressing myc-tagged SIRT3], which has previously been shown to have disease modifying effects in animal models of Parkinson's disease (PD). The lipid shells of the perfluorocarbon gas MDCs were covalently conjugated to antibodies with binding specificity to AAVs. Following systemic (iv) delivery of AAV.SIRT3-myc MDCs, MR-g-FUS was used to deliver SIRT3-myc to brain regions affected in PD. SIRT3-myc expression was determined post mortem, using immunohistochemistry. An <i>in vitro</i>, SH-SY5Y cell culture model was used to show that the localized destruction of MDCs using ultrasound exposures within biological safety limits dissociated AAV2-GFP (green fluorescent protein) from the MDCs in the targeted area while maintaining their transduction capacity. In rats, MR-g-FUS resulted in BBB permeabilization in the striatum and substantia nigra (SNc). SIRT3-myc was expressed in the striatum, but not the SNc. These studies demonstrate that MDCs combined with MR-g-FUS are an effective method for delivery of viral vector gene therapies, such as AAV.SIRT3, to brain regions affected in PD. This technology may prove useful as a disease-modifying strategy in PD and other neurodegenerative disorders.
Introduction
Purpose
Drug delivery with BBB opening
Study Objective
To develop and evaluate clinically scalable microbubble drug conjugates carrying AAV.SIRT3-myc combined with MR-guided focused ultrasound for targeted, noninvasive delivery of SIRT3 gene therapy across the blood–brain barrier to Parkinson’s disease–affected brain regions.
Animal model / Human subject
Rat (Rattus norvegicus), Sprague-Dawley, adult (350–400 g; age not specified), male
Disease model
Healthy
MRI or image guidance method
MR-guided focused ultrasound using a 7 T MRI (T2-weighted imaging for target localization and T1-weighted post-contrast MRI to confirm BBB opening)
Targeted brain region(s)
Striatum
Cargo name and characteristics
AAV (adeno-associated virus) gene therapy vectors: primary cargo = AAV2 encoding myc‑tagged SIRT3 (AAV2.CB7.CI.Sirt3-myc.WPRE.rBG; AAV2.SIRT3-myc), used for in vivo delivery (reported stock ~9.86×10^12 GC/mL). In vitro reporter used = AAV2-eGFP/AAV2-GFP (rAAV2/Tre-eGFP, ~6.7×10^12 VM/mL).
Route of administration
intravenous (tail-vein)
Outcomes and Safety
Summary of Outcomes
MR-guided focused ultrasound with AAV-conjugated microbubbles transiently permeabilized the BBB and enabled AAV2.SIRT3-myc expression in the rat striatum (but not in the substantia nigra), and in vitro FUS-mediated destruction of MDCs released AAV that retained transduction capacity and increased GFP+ cells. Successful sonication parameters reported: 0.4 MPa peak pressure, 1 ms pulse length, 1 Hz pulse repetition frequency, 120 s duration (targets: 2 striatal sites, 1 SNc site).
Duration of biological effect
14 days
Safety-related matter
The authors note that MR-guided focused ultrasound (MR-g-FUS) with microbubbles has demonstrated safe, temporary, targeted BBB permeabilization clinically and that in vitro ultrasound exposures were within biological safety limits; no adverse effects or safety issues are reported in the described in vivo rat experiments.
Brain Region
Ultrasound Parameters
Ultrasound instrument
Valpy Fisher 1 MHz spherically focused transducer (Valpy Fisher, Hopkinton, MA, USA) — 3.75 cm diameter; 15 cm focal length; ~1.0 cm −6 dB beam width at focus; EPIQ 7G ultrasound imaging system with L12-5 probe (Phillips, Amsterdam, Netherlands); LP100 ultrasound treatment system (LP100, FUS Instruments Inc., Toronto, ON, Canada) using a spherically focused 580 kHz transducer F0.50NO.8D75CH25-1 (0.8 focal number; 7.5 cm diameter) with 16 mm wide PZT hydrophone
FUS Frequency
1 MHz; 580 kHz
FUS Pressure
0.6 MPa, 0.4 MPa
FUS Mode
pulsed
Pulse duration
10 ms
Duration of a single FUS session
120 s
Focal Characteristics
Focal depth: 1.0 cm (−6 dB beam width at focus, in vitro); Focal length: 15 cm (in vitro); Aperture size: 3.75 cm diameter (in vitro); 7.5 cm diameter (in vivo)
Treatment frequency
single
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