A Facile NMR Method for Pre-MRI Evaluation of Trigger-Responsive T 1 Contrast Enhancement

There is a growing interest in developing paramagnetic nanoparticles as responsive magnetic resonance imaging (MRI) contrast agents, which feature switchable T image contrast of water protons upon biochemical cues for better discerning diseases. However, performing an MRI is pragmatically limited by...

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Veröffentlicht in:Small methods 2024-03, p.e2301603
Hauptverfasser: Jian, Cheng-Bang, Wu, Ying-Yann, Lin, Ming-Huang, Gao, Hua-De, Chen, Chong-Yan, Leong, Shwee Khuan, Tzou, Der-Lii M, Hwang, Dennis W, Lee, Hsien-Ming
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Sprache:eng
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Zusammenfassung:There is a growing interest in developing paramagnetic nanoparticles as responsive magnetic resonance imaging (MRI) contrast agents, which feature switchable T image contrast of water protons upon biochemical cues for better discerning diseases. However, performing an MRI is pragmatically limited by its cost and availability. Hence, a facile, routine method for measuring the T contrast is highly desired in early-stage development. This work presents a single-point inversion recovery (IR) nuclear magnetic resonance (NMR) method that can rapidly evaluate T contrast change by employing a single, optimized IR pulse sequence that minimizes water signal for "off-state" nanoparticles and allows for sensitively measuring the signal change with "switch-on" T contrast. Using peptide-induced liposomal gadopentetic acid (Gd -DTPA) release and redox-sensitive manganese oxide (MnO ) nanoparticles as a demonstration of generality, this method successfully evaluates the T shortening of water protons caused by liposomal Gd -DTPA release and Mn formation from MnO reduction. Furthermore, the NMR measurement is highly correlated to T -weighted MRI scans, suggesting its feasibility to predict the MRI results at the same field strength. This NMR method can be a low-cost, time-saving alternative for pre-MRI evaluation for a diversity of responsive T contrast systems.
ISSN:2366-9608
2366-9608
DOI:10.1002/smtd.202301603