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Microbubbles offer unique properties as combined carriers of therapeutic payloads and diagnostic agents. Here we report on the development of novel microbubble architectures that in addition to the usual lipid shell have an actin cytoskeletal cortex assembled on their exterior. We show, using atomic force microscopy that this biomimetic coating creates a thin mesh that allows tuning of the mechanical properties of microbubbles and that the nature of actin assembly is determined by the fluidity of the lipid layer. Further, we show that it is possible to attach payloads and targeting-ligands to the actin scaffold. Resistance to gas permeation showed that the additional actin layer reduces gas diffusion across the shell and thus increases bubble lifetime. This study demonstrates a one step method to creating more complex microbubble architectures, which would be capable of further modification and tuning through the inclusion of actin binding proteins.
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http://dx.doi.org/10.1039/c3sm52199k | DOI Listing |
ACS Appl Bio Mater
August 2025
School of Medical Science and Technology, Indian Institute of Technology Kharagpur, Kharagpur, West Bengal 721302, India.
Breast cancer remains a major global health concern, demanding advancements in the detection and treatment modalities. Conventional methods like radiotherapy, chemotherapy, surgery, etc., while effective, have inherent limitations.
View Article and Find Full Text PDFAdv Sci (Weinh)
June 2025
School of Mechanical and Aerospace Engineering, Nanyang Technological University, Singapore, 639798, Singapore.
Superelastic aerogels with ultralow thermal conductivity have essential advantages for advanced thermal management systems in energy-efficient buildings. However, inorganic aerogels suffer from brittleness and poor processability, whereas their organic counterparts experience high production costs and inadequate elastic recovery. This study used a dual-template (ice and bubble) strategy to fabricate ultralight, superelastic aerogels with hierarchical porosity inspired by stress-dissipating dome architectures.
View Article and Find Full Text PDFComput Biol Med
August 2025
University Claude Bernard Lyon 1, Villeurbanne, France; Lyon Neuroscience Research Center, Lyon, France; CERMEP-Imaging Platform, Lyon, France.
Segmentation of medical images is a fundamental task with numerous applications. While MRI, CT, and PET modalities have significantly benefited from deep learning segmentation techniques, more recent modalities, like functional ultrasound (fUS), have seen limited progress. fUS is a non invasive imaging method that measures changes in cerebral blood volume (CBV) with high spatio-temporal resolution.
View Article and Find Full Text PDFUltrasound Med Biol
August 2025
Center for Ultrasound Molecular Imaging and Therapeutics, Pittsburgh Heart, Lung, Blood and Vascular Medicine Institute, University of Pittsburgh, Pittsburgh, PA, USA. Electronic address:
Objective: Doxorubicin (Dox) is standard of care for treatment of sarcomas, but cumulative dosing is often limited by cardiotoxicity. We hypothesized that ultrasound targeted microbubble (MB) cavitation (UTMC) of a liposomal doxorubicin (LDox) conjugated polymer microbubble complex (DoxLPX) would enhance tumor inhibition and limit Dox cardiotoxicity.
Methods: DoxLPX was intravenously injected in MCA205 sarcoma-bearing mice and concurrent ultrasound was delivered to the tumor site (DoxLPX + UTMC).
IEEE Trans Ultrason Ferroelectr Freq Control
July 2025
The development of new imaging paradigms in the field of contrast-enhanced ultrasound (CEUS) is hindered by the difficulty to control complex experimental variables in a laboratory setting, such as vascular geometries, nonlinear ultrasound wave propagation in tissue, or microbubble positions within vessels as a function of time. This development would greatly benefit from the ability to control and reproduce independently these conditions in a simulated environment. Here, we report a physically realistic CEUS simulator, PROTEUS, that generates synthetic contrast-enhanced radio frequency (RF) data.
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