In vivo imaging of reactive oxygen species (ROS)-producing pro-inflammatory macrophages in murine carotid atheromas using a CD44-targetable and ROS-responsive nanosensor

  • Park, E.J.; 
  • Song, J.W.; 
  • Kim, H.J.; 
  • Kim, C.-S.; 
  • Song, Y.J.; 
  • ... Park, Kyeonoon; 
  • 외 3명
Citations

WEB OF SCIENCE

28
Citations

SCOPUS

29

초록

In this study, we report the in vivo imaging of reactive oxygen species (ROS)-overproducing pro-inflammatory macrophages in atherosclerotic plaques using a fluorescent ROS nanosensor. We designed the nanosensor by chemically conjugating hyaluronic acid (HA, a targeting ligand for CD44 receptor), chlorin e6 [Ce6; a near-infrared fluorescent (NIRF) dye], and a thioketal (TK) linker (ROS-degradable linker). The self-assembled nanosensor emitted weak NIRF signals in normal physiological conditions, whereas it emitted strong NIRF signals under ROS-abundant conditions. The cytocompatible nanosensor showed higher intracellular internalization via receptor-mediated endocytosis, which enabled the visualization of intracellular ROS in pro-inflammatory macrophages. Moreover, we demonstrated that the nanosensor enabled the successful targeting and imaging of CD44- and ROS-overproducing pro-inflammatory macrophages in atherosclerotic plaques, as validated by confocal microscopy and immunohistological analyses. These data suggest that our ROS nanosensor is suitable for ROS imaging in pro-inflammatory macrophages in vitro and in vivo and will be a promising approach for imaging atherosclerotic tissues and evaluating the effects of antioxidants. © 2020 The Korean Society of Industrial and Engineering Chemistry

키워드

Atherosclerotic plaques; hyaluronan receptors; pro-inflammatory macrophages; reactive oxygen species (ROS) imaging; ROS-sensitive nanosensor; Fluorescence; Hyaluronic acid; Infrared devices; Macrophages; Molecular biology; Oxygen; Reactive oxygen species; Atherosclerotic plaque; Chlorin e6; In-vitro; In-Vivo imaging; Near-infrared fluorescent; Physiological condition; Receptor-mediated endocytosis; Targeting ligands; Nanosensors
제목
In vivo imaging of reactive oxygen species (ROS)-producing pro-inflammatory macrophages in murine carotid atheromas using a CD44-targetable and ROS-responsive nanosensor
저자
Park, E.J.; Song, J.W.; Kim, H.J.; Kim, C.-S.; Song, Y.J.; Yang, D.H.; Yoo, H.; Kim, J.W.; Park, Kyeonoon
DOI
10.1016/j.jiec.2020.08.034
발행일
2020-12-25
유형
Article
저널명
Journal of Industrial and Engineering Chemistry
권
92
페이지
158 ~ 166