Induction of apoptosis in vivo in the rabbit brain with focused ultrasound and Optison.
Authors: Vykhodtseva N, McDannold N, Hynynen K
Histologic effects of focused ultrasound (FUS) exposures combined with an ultrasound contrast agent (Optison) were investigated to examine whether the lesions were dominated by apoptosis or necrosis. The rabbit brains (n = 17) were sonicated (1.5 MHz, peak rarefactional pressure amplitude: 1.4 to 8.8 MPa) after Optison was injected intravenously (IV). MRI and light microscopy were used to examine tissue effects. To detect apoptosis, TUNEL staining based on labeling of DNA strand breaks was used. The average number of apoptotic and necrotic cells in 300 x 220 microm microscopic fields were counted in 18 representative lesions. Lesions in the rabbit brains were created at lowered acoustic power levels when FUS was combined with Optison. In histology, the lesions exhibited red blood cell extravasations and destruction of blood vessels. At 4 h after sonication, the lesions lost many cells, and the remaining cells exhibited both necrotic and apoptotic features. Overall, apoptosis dominated; there were, on average, 32.3 +/- 13.2 apoptotic cells per microscopic field compared with only 5.1 +/- 3.4 necrotic cells per field. In conclusion, FUS combined with Optison could produce lesions that are dominated by apoptosis, presumably induced primarily via ischemia after cavitation-produced damage to the brain vasculature.
Introduction
Purpose
Thermal ablation
Study Objective
To determine whether focused ultrasound combined with the microbubble contrast agent Optison can induce apoptosis in vivo in the rabbit brain.
Animal model / Human subject
Rabbit; strain not specified; age not specified; sex not specified
Disease model
Healthy
Outcomes and Safety
Summary of Outcomes
Focused ultrasound combined with the microbubble contrast agent Optison induced apoptosis in vivo in the rabbit brain. The provided text did not include specific focused ultrasound parameter settings or which parameter variations were successful.
Safety-related matter
The provided excerpt contains only the paper title and includes no mention of safety or adverse effects; no conclusions about safety can be drawn from this text.
Brain Region
Ultrasound Parameters
Focal Characteristics
Focal depth: None; Focal length: None; Aperture size: None
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