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February 2, 2026Science Advances2 citationsOpen Access

An electrophilicity-engineered magnetic sensor for MRI detection of dormant tumor cell clusters

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ZLZeyu LiangBZBo ZhangXLXun Liu

Key Points

  • The aim is to develop a novel magnetic sensor for improved MRI contrast in detecting dormant tumor cell clusters.
  • Developed electrophilicity-engineered magnetic sensor (EEMS) using high-electronegativity metal atoms.
  • Utilized direct electrophilic catalytic dipolar interactions (ECD) to enhance MRI performance.
  • Evaluated T1 relaxation and imaging capabilities in vivo, specifically for tumor cell clusters.
  • Achieved a longitudinal relaxivity of 23.2 per millimolar per second at 9 tesla.
  • Successfully visualized tumor cell clusters as small as 68.5 micrometer in vivo.
  • Reached 100% survival in mice for 100 days post-surgery following precise resection of affected lymph nodes.

Abstract

In magnetic resonance imaging (MRI), direct dipole-dipole interactions between paramagnetic metal centers and water molecules govern the T 1 relaxation of contrast agents. Metal chelates featuring multiple unpaired electrons have long dominated MRI contrast agents. Despite theoretically offering more paramagnetic centers per probe, nanoparticle-based contrast agents have struggled because of the insufficient direct dipolar interactions with water, impeding their clinical adoption. Here, we present an electrophilicity-engineered magnetic sensor (EEMS), which leverages high-electronegativity metal atoms to enhance the electrophilicity of paramagnetic centers in nanosensors, enabling direct electrophilic catalytic dipolar interactions (ECD) with water for enhanced MRI. EEMS demonstrates robust T 1 contrast with a longitudinal relaxivity of 23.2 per millimolar per second at 9 tesla, visualizing tumor cell clusters as small as 68.5 micrometer in vivo. ECD-MRI allows detecting and precise resection of axillary lymph nodes containing dormant tumor cell clusters, achieving 100% survival in mice 100 days postsurgery. EEMS-enhanced ECD-MRI presents a transformative imaging principle for noninvasive visualization of previously undetectable biological entities.

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Cite This Study

Liang et al. (2026) studied this question.

synapsesocial.com/papers/6980fe8ac1c9540dea810adehttps://doi.org/10.1126/sciadv.aea5236
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