Area of research
Materials Chemistry · Biomedical Engineering
Research interest
Research topics from publications: Advances and prospects of RAFT polymerization-derived nanomaterials in MRI-assisted biomedical applications; Biomaterial-assisted photoimmunotherapy for synergistic suppression of cancer progression; 19F MRI Nanotheranostics for Cancer Management: Progress and Prospects; Preparation of PFPE-Based Polymeric Nanoparticles via Polymerization-Induced Self-Assembly as Contrast Agents for 19F MRI; Photo-Responsive Self-Assembled Polymeric Nanoparticle Probes for 19F MRI Theranostics. Representative work: Magnetic resonance imaging (MRI) is recognized as the most powerful clinical imaging modality due to its ability to produce detailed three-dimensional anatomical images and high spatial resolution in a non-invasive manner without the use of harmful radioactive nuclides or ionizing radiation. Conventional small molecule contrast agents (CAs) for MRI, such as paramagnetic transition metal ion chelates or iron oxide nanoparticles, are limited by lower relaxivity, shorter blood circulation time and their potential toxic effects. Functional polymers capable of being detected by MRI have therefore become attractive, offering the unique advantage of pre-design due to their chemical flexibility, str Abstract Fluorine magnetic resonance imaging ( 19 F MRI) is a promising imaging technique for cancer diagnosis because of its excellent soft tissue resolution and deep tissue penetration, as well as the inherent high natural abundance, almost no endogenous interference, quantitative analysis, and wide chemical shift range of the 19 F nucleus. In recent years, scientists have synthesized various 19 F MRI contrast agents. By further integrating a wide variety of nanomaterials and cutting‐edge construction strategies, magnetically equivalent 19 F atoms are super‐loaded and maintain satisfactory relaxation efficiency to obtain high‐intensity 19 F MRI signals. In this review, the nuclear magnetic
Advances and prospects of RAFT polymerization-derived nanomaterials in MRI-assisted biomedical applications
Biomaterial-assisted photoimmunotherapy for synergistic suppression of cancer progression
Preparation of PFPE-Based Polymeric Nanoparticles via Polymerization-Induced Self-Assembly as Contrast Agents for <sup>19</sup>F MRI
Photo-Responsive Self-Assembled Polymeric Nanoparticle Probes for <sup>19</sup>F MRI Theranostics
<sup>19</sup>F MRI Nanotheranostics for Cancer Management: Progress and Prospects