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Membrane-permeabilized sonodynamic therapy enhances drug delivery into macrophages
- Source :
- PLoS ONE, PLoS ONE, Vol 14, Iss 6, p e0217511 (2019)
- Publication Year :
- 2019
- Publisher :
- Public Library of Science, 2019.
-
Abstract
- Macrophages play a pivotal role in the formation and development of atherosclerosis as a predominant inflammatory cell type present within atherosclerotic plaque. Promoting anti-atherosclerotic drug delivery into macrophages may provide a therapeutic potential on atherosclerotic plaque. In this study, we investigated whether membrane-permeabilized sonodynamic therapy (MP-SDT) enhances drug delivery into THP-1 macrophages. Images of confocal microscopy confirmed that the optimal plasma distribution of the sonosensitizer protoporphyrin IX (PpIX) was at 1 hour incubation. The non-lethal parameter of MP-SDT was determined by cell viability as measured by a CCK-8 assay. Bright field microscopy demonstrated plasma membrane deformation in response to MP-SDT. Using SYTOX Green, a model drug for cellular uptake, we found that MP-SDT significantly induced membrane permeabilization dependent on ultrasound intensity and exposure time. Using Fluo-3 AM, intracellular calcium elevation during MP-SDT was confirmed as a result of membrane permeabilization. Membrane perforation of MP-SDT-treated cells was observed by scanning electron microscopy and transmission electron microscopy. Moreover, MP-SDT-induced membrane permeabilization and perforation were remarkably prevented by scavenging reactive oxygen species (ROS) during MP-SDT. Furthermore, we assessed the therapeutic effect of MP-SDT in combination with anti-atherosclerotic drug atorvastatin. Our results showed that MP-SDT increased the therapeutic effect of atorvastatin on lipid-laden THP-1-derived foam cells, including decreasing lipid droplets, increasing the cholesterol efflux and the expression of PPARĪ³ and ABCG1. In conclusion, MP-SDT might become a promising approach to facilitating the delivery of anti-atherosclerotic drugs into macrophages via membrane permeabilization.
- Subjects :
- Cell Membrane Permeability
THP-1 Cells
Ultrasonic Therapy
Cell Membranes
Protoporphyrins
02 engineering and technology
Biochemistry
Calcium in biology
law.invention
Diagnostic Radiology
White Blood Cells
law
Animal Cells
Lipid droplet
Ultrasound Imaging
Medicine and Health Sciences
Atorvastatin
Membrane potential
Membrane Potential, Mitochondrial
0303 health sciences
Multidisciplinary
Chemistry
Pharmaceutics
Radiology and Imaging
021001 nanoscience & nanotechnology
Lipids
Plaque, Atherosclerotic
Cholesterol
Drug delivery
Medicine
Cellular Types
Cellular Structures and Organelles
0210 nano-technology
Research Article
Imaging Techniques
Cell Survival
Science
Immune Cells
Perforation (oil well)
Immunology
Research and Analysis Methods
Cell Line
03 medical and health sciences
Confocal microscopy
Diagnostic Medicine
Fluorescence Imaging
Humans
Viability assay
030304 developmental biology
Blood Cells
Macrophages
Sonodynamic therapy
Cell Membrane
Biology and Life Sciences
Cell Biology
Intracellular Membranes
Lipid Droplets
Atherosclerosis
Biophysics
Calcium
Drug Delivery
Reactive Oxygen Species
Membrane Characteristics
Foam Cells
Subjects
Details
- Language :
- English
- ISSN :
- 19326203
- Volume :
- 14
- Issue :
- 6
- Database :
- OpenAIRE
- Journal :
- PLoS ONE
- Accession number :
- edsair.doi.dedup.....9bf5f3ec19a46be4fb5ddd8856a420b8