Multifunctional Magnetic Gd3+‐Based Coordination Polymer Nanoparticles: Combination of Magnetic Resonance and Multispectral Optoacoustic Detections for Tumor‐Targeted Imaging in vivo. Issue 42 (14th September 2015)
- Record Type:
- Journal Article
- Title:
- Multifunctional Magnetic Gd3+‐Based Coordination Polymer Nanoparticles: Combination of Magnetic Resonance and Multispectral Optoacoustic Detections for Tumor‐Targeted Imaging in vivo. Issue 42 (14th September 2015)
- Main Title:
- Multifunctional Magnetic Gd3+‐Based Coordination Polymer Nanoparticles: Combination of Magnetic Resonance and Multispectral Optoacoustic Detections for Tumor‐Targeted Imaging in vivo
- Authors:
- An, Qiao
Liu, Jing
Yu, Meng
Wan, Jiaxun
Li, Dian
Wang, Changchun
Chen, Chunying
Guo, Jia - Abstract:
- Abstract : To overcome traditional barriers in optical imaging and microscopy, optoacoustic‐imaging has been changed to combine the accuracy of spectroscopy with the depth resolution of ultrasound, achieving a novel modality with powerful in vivo imaging. However, magnetic resonance imaging provides better spatial and anatomical resolution. Thus, a single hybrid nanoprobe that allows for simultaneous multimodal imaging is significant not only for cutting edge research in imaging science, but also for accurate clinical diagnosis. A core‐shell‐structured coordination polymer composite microsphere has been designed for in vivo multimodality imaging. It consists of a Fe3 O4 nanocluster core, a carbon sandwiched layer, and a carbocyanine‐Gd III (Cy‐Gd III ) coordination polymer outer shell (Fe3 O4 @C@Cy‐Gd III ). Folic acid‐conjugated poly(ethylene glycol) chains are embedded within the coordination polymer shell to achieve extended circulation and targeted delivery of probe particles in vivo. Control of Fe3 O4 core grain sizes results in optimal r 2 relaxivity (224.5 × 10 –3 m −1 s ‐1 ) for T 2 ‐weighted magnetic resonance imaging. Cy‐Gd III coordination polymers are also regulated to obtain a maximum 25.1% of Cy ligands and 5.2% of Gd III ions for near‐infrared fluorescence and T 1 ‐weighted magnetic resonance imaging, respectively. The results demonstrate their impressive abilities for targeted, multimodal, and reliable imaging. Abstract : Magnetic coordination polymerAbstract : To overcome traditional barriers in optical imaging and microscopy, optoacoustic‐imaging has been changed to combine the accuracy of spectroscopy with the depth resolution of ultrasound, achieving a novel modality with powerful in vivo imaging. However, magnetic resonance imaging provides better spatial and anatomical resolution. Thus, a single hybrid nanoprobe that allows for simultaneous multimodal imaging is significant not only for cutting edge research in imaging science, but also for accurate clinical diagnosis. A core‐shell‐structured coordination polymer composite microsphere has been designed for in vivo multimodality imaging. It consists of a Fe3 O4 nanocluster core, a carbon sandwiched layer, and a carbocyanine‐Gd III (Cy‐Gd III ) coordination polymer outer shell (Fe3 O4 @C@Cy‐Gd III ). Folic acid‐conjugated poly(ethylene glycol) chains are embedded within the coordination polymer shell to achieve extended circulation and targeted delivery of probe particles in vivo. Control of Fe3 O4 core grain sizes results in optimal r 2 relaxivity (224.5 × 10 –3 m −1 s ‐1 ) for T 2 ‐weighted magnetic resonance imaging. Cy‐Gd III coordination polymers are also regulated to obtain a maximum 25.1% of Cy ligands and 5.2% of Gd III ions for near‐infrared fluorescence and T 1 ‐weighted magnetic resonance imaging, respectively. The results demonstrate their impressive abilities for targeted, multimodal, and reliable imaging. Abstract : Magnetic coordination polymer composite microspheres are constructed for concurrent response to T 1 ‐ and T 2 ‐weighted magnetic resonance (MR) and optoacoustic signals. A Fe3 O4 nanocluster core is surrounded in a sandwiched carbon layer and a carbocyanine‐Gd III coordination polymer outer shell with anchored folic‐acid‐conjugated poly(ethylene glycol) chains. … (more)
- Is Part Of:
- Small. Volume 11:Issue 42(2015)
- Journal:
- Small
- Issue:
- Volume 11:Issue 42(2015)
- Issue Display:
- Volume 11, Issue 42 (2015)
- Year:
- 2015
- Volume:
- 11
- Issue:
- 42
- Issue Sort Value:
- 2015-0011-0042-0000
- Page Start:
- 5675
- Page End:
- 5686
- Publication Date:
- 2015-09-14
- Subjects:
- composite nanoparticles -- coordination polymers -- magnetic resonance imaging -- multiple‐modality imaging agents -- optoacoustic imaging
Nanotechnology -- Periodicals
Nanoparticles -- Periodicals
Microtechnology -- Periodicals
620.5 - Journal URLs:
- http://onlinelibrary.wiley.com/journal/10.1002/(ISSN)1613-6829 ↗
http://onlinelibrary.wiley.com/ ↗ - DOI:
- 10.1002/smll.201501491 ↗
- Languages:
- English
- ISSNs:
- 1613-6810
- Deposit Type:
- Legaldeposit
- View Content:
- Available online (eLD content is only available in our Reading Rooms) ↗
- Physical Locations:
- British Library DSC - 8309.952000
British Library DSC - BLDSS-3PM
British Library HMNTS - ELD Digital store - Ingest File:
- 2546.xml