TY - JOUR
T1 - A symmetrical fluorous dendron-cyanine dye-conjugated bimodal nanoprobe for quantitative 19f MRI and NIR fluorescence bioimaging
AU - Wang, Zhe
AU - Yue, Xuyi
AU - Wang, Yu
AU - Qian, Chunqi
AU - Huang, Peng
AU - Lizak, Marty
AU - Niu, Gang
AU - Wang, Fu
AU - Rong, Pengfei
AU - Kiesewetter, Dale O.
AU - Ma, Ying
AU - Chen, Xiaoyuan
PY - 2014/8
Y1 - 2014/8
N2 - 19F MRI and optical imaging are two powerful noninvasive molecular imaging modalities in biomedical applications. 19F MRI has great potential for high resolution in vivo imaging, while fluorescent probes enable ultracontrast cellular/tissue imaging with high accuracy and sensitivity. A bimodal nanoprobe is developed, integrating the merits of 19F MRI and fluorescence imaging into a single synthetic molecule, which is further engineered into nanoprobe, by addressing shortcomings of conventional contrast agents to explore the quantitative 19F MRI and fluorescence imaging and cell tracking. Results show that this bimodal imaging nanoprobe presents high correlation of 19F MR signal and NIR fluorescence intensity in vitro and in vivo. Additionally, this nanoprobe enables quantitative 19F MR analysis, confirmed by a complementary fluorescence analysis. This unique feature can hardly be obtained by traditional 19F MRI contrast agents. It is envisioned that this nanoprobe can hold great potential for quantitative and sensitive multi-modal molecular imaging.
AB - 19F MRI and optical imaging are two powerful noninvasive molecular imaging modalities in biomedical applications. 19F MRI has great potential for high resolution in vivo imaging, while fluorescent probes enable ultracontrast cellular/tissue imaging with high accuracy and sensitivity. A bimodal nanoprobe is developed, integrating the merits of 19F MRI and fluorescence imaging into a single synthetic molecule, which is further engineered into nanoprobe, by addressing shortcomings of conventional contrast agents to explore the quantitative 19F MRI and fluorescence imaging and cell tracking. Results show that this bimodal imaging nanoprobe presents high correlation of 19F MR signal and NIR fluorescence intensity in vitro and in vivo. Additionally, this nanoprobe enables quantitative 19F MR analysis, confirmed by a complementary fluorescence analysis. This unique feature can hardly be obtained by traditional 19F MRI contrast agents. It is envisioned that this nanoprobe can hold great potential for quantitative and sensitive multi-modal molecular imaging.
KW - Biodegradable polymers
KW - Fluorescence imaging
KW - Nanoparticles
KW - Stem cells
UR - https://www.scopus.com/pages/publications/84906057845
U2 - 10.1002/adhm.201400088
DO - 10.1002/adhm.201400088
M3 - 文章
C2 - 24789108
AN - SCOPUS:84906057845
SN - 2192-2640
VL - 3
SP - 1326
EP - 1333
JO - Advanced Healthcare Materials
JF - Advanced Healthcare Materials
IS - 8
ER -