Premium
A Non‐Invasive Nanoprobe for In Vivo Photoacoustic Imaging of Vulnerable Atherosclerotic Plaque
Author(s) -
Ge Xiaoxiao,
Cui Hongtu,
Kong Jian,
Lu ShiYu,
Zhan Rui,
Gao Jianing,
Xu Yangkai,
Lin Shuangyan,
Meng Kaixin,
Zu Lingyun,
Guo Shaojun,
Zheng Lemin
Publication year - 2020
Publication title -
advanced materials
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 10.707
H-Index - 527
eISSN - 1521-4095
pISSN - 0935-9648
DOI - 10.1002/adma.202000037
Subject(s) - nanoprobe , in vivo , materials science , osteopontin , photoacoustic imaging in biomedicine , vulnerable plaque , fluorescence , fluorescence lifetime imaging microscopy , biomedical engineering , indocyanine green , medicine , nanotechnology , pathology , nanoparticle , biology , optics , physics , microbiology and biotechnology
Vulnerable atherosclerotic (AS) plaque is the major cause of cardiovascular death. However, clinical methods cannot directly identify the vulnerable AS plaque at molecule level. Herein, osteopontin antibody (OPN Ab) and NIR fluorescence molecules of ICG co‐assembled Ti 3 C 2 nanosheets are reported as an advanced nanoprobe (OPN Ab/Ti 3 C 2 /ICG) with enhanced photoacoustic (PA) performance for direct and non‐invasive in vivo visual imaging of vulnerable AS plaque. The designed OPN Ab/Ti 3 C 2 /ICG nanoprobes successfully realize obvious NIR fluorescence imaging toward foam cells as well as the vulnerable AS plaque slices. After intravenous injection of OPN Ab/Ti 3 C 2 /ICG nanoprobes into AS model mice, in vivo imaging results show a significantly enhanced PA signal in the aortic arch accumulated with vulnerable plaque, well indicating the remarkable feasibility of OPN Ab/Ti 3 C 2 /ICG nanoprobes to distinguish the vulnerable AS plaque. The proposed OPN Ab/Ti 3 C 2 /ICG nanoprobes not only overcome the clinical difficulty to differentiate vulnerable plaque, but also achieve the non‐invasively specific in vivo imaging of vulnerable AS plaque at molecule level, greatly promoting the innovation of cardiovascular diagnosis technology.