Microbubble Cavitation

Microbubble cavitation is the formation, oscillation, and collapse of gas-filled microspheres exposed to an acoustic field, a phenomenon that converts ultrasound energy into localized mechanical effects. In cancer research, ultrasound drives microbubbles to expand and contract or collapse near tumor cells and blood vessels, generating fluid motion, shear stress, and transient changes in membrane or vascular permeability. These effects can promote sonoporation, improve delivery of drugs or genetic materials, and enhance imaging-guided treatment while limiting exposure to surrounding tissue. Research continues to refine bubble composition, ultrasound conditions, and targeting strategies to improve therapeutic precision and evaluate safety.

Microbubble Cavitation - Related Videos

Research

JoVE Journal - Bioengineering

Introduction to the Ultrasound Targeted Microbubble Destruction Technique

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Cited by 19 •

2011

Ultrasound Targeted Microbubble Destruction (UTMD) can be used to direct site-specific delivery of bioactive molecules, including therapeutic genes, to target organs accessible to ultrasound, such as the heart and liver1-6.

Synthesis of Gold Nanoparticle Integrated Photo-responsive Liposomes and Measurement of Their Microbubble Cavitation upon Pulse Laser Excitation

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Cited by 2 •

2016

This protocol describes a simple preparation method for gold nanoparticle integrated photo-responsive liposomes with the commercially available materials. It also shows how to measure the microbubble cavitation process of the synthesized liposomes upon the treatment of pulsed laser.

Injection of Microbubbles into Isolated Mouse Embryos: A Technique to Deliver Microbubble Contrast Agents into the Vasculature of Living Murine Embryos

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2025

This video demonstrates a procedure to inject microbubble contrast agents into an isolated late gestation stage mouse embryo. The microbubble contrast agent-based ultrasound imaging helps visualize and characterize the vascular environment of the embryo.

Focus Ultrasound Based Microbubble Mediated Blood-Brain Barrier Opening: A Technique to Create Localized Transient Openings in Blood-Brain Barrier of Mouse by Sonoporation

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2025

This video describes a method of temporarily disrupting the blood-brain barrier (BBB) by creating transient openings using microbubble-mediated focused ultrasound (FUS). These transient local BBB openings can eventually be used to deliver larger-sized drug molecules directly into the brain parenchyma.

Activating Molecules, Ions, and Solid Particles with Acoustic Cavitation

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Cited by 6 •

2014

Acoustic cavitation in liquids submitted to power ultrasound creates transient extreme conditions inside the collapsing bubbles, which are the origin of unusual chemical reactivity and light emission, known as sonoluminescence. In the presence of noble gases, nonequilibrium plasma is formed. The "hot" particles and the photons generated by collapsing bubbles are able to excite species in solution.

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