科研速览 · Science Skim继续刷下去 · Keep skimming →
◆ Communications Chemistry2026-03-18· Hyperpolarization (physics)

Ultra-low field 13C MRI of hyperpolarized pyruvate

Thomas Boele, Stephen McBride, Megan Pike, Erica Curran, Patrick TomHon, Hester Braaksma, Sheng Shen, Néha Koonjoo, David E. Korenchan, Eduard Chekmenev, Thomas Theis, David E. J. Waddington, Matthew S. Rosen

原始摘要(英文原文)· Original abstract
Medicine is evolving beyond therapy largely predicated on anatomical information and towards incorporating patient-specific molecular biomarkers of disease for more accurate diagnosis and effective treatment. The complementary combination of hyperpolarization by spin-lock induced crossing signal amplification by reversible exchange (SLIC SABRE) and low field magnetic resonance imaging (MRI) can enable accessible metabolic imaging to advance personalized medicine. Hyperpolarized 13C-enriched pyruvate has demonstrated promise for imaging metabolism in cancer, heart disease and neurodegenerative disorders; however, broader clinical adoption awaits validated clinical indications, and is further constrained by the cost and limited availability of current hyperpolarization technology. Parahydrogen-based polarization techniques, paired with low-cost high-performance MRI at millitesla fields, offer a means of broadening the reach of metabolic imaging. Here we show results demonstrating in situ hyperpolarization of pyruvate at 6.5 mT by SLIC SABRE, followed by immediate readout without field cycling or sample shuttling. We achieve 13C signal enhancements several million times above thermal equilibrium at 6.5 mT, corresponding to polarization levels of approximately 3%. Leveraging this enhancement, we perform 13C MRI and acquire NMR spectra with resolution sufficient to distinguish chemical shifts between pyruvate isotopomers. These results show a viable pathway towards accessible metabolic imaging with hyperpolarized 13C MRI at ultra-low field. Hyperpolarized 13C-enriched pyruvate has demonstrated promise for imaging metabolism in cancer, heart disease and neurodegenerative disorders; however, broader clinical adoption is constrained by the cost and limited availability of current hyperpolarization technology. Here, the authors report in situ hyperpolarization of pyruvate at 6.5mT by SLIC SABRE, demonstrating its application in low-cost high-performance 13C MRI at milli Tesla fields with sufficient resolution to distinguish chemical shifts between pyruvate isotopomers.
读原文 · Read the paper ↗

AI 追问PRO

登录后使用 AI 追问

讨论区

登录后参与讨论

相关论文 · Related

Ultra-low field 13C MRI of hyperpolarized pyruvate — 科研速览 Science Skim