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Publication:
Optoacoustically augmented magnetic guidewire for radiation-free minimally invasive therapies

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SCHOOL OF MEDICINE
Upper Org Unit
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KU-Authors

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Co-Authors

Wang, Fan

Bao, Xianqiang

Yildiz, Erdost

Yu, Yan

Dean-Ben, Xose Luis

Kang, Wenbin

Zhang, Shuaizhong

Sheehan, Devin

Soon, Ren Hao

Zinnanti, Jelena

Date

Language

eng

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No

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Abstract

Endovascular interventions are essential for treating cerebrovascular diseases, yet their monitoring methods commonly rely on ionizing radiation and contrast agents, posing unnecessary risks to patients and clinicians. We present a multifunctional optoacoustically augmented magnetic guidewire (OptoMaG) that integrates optoacoustic imaging with magnetic navigation to enable radiation-free, image-guided interventions. The similar to 250-micrometer flexible guidewire incorporates a 460-nanometer luminescent core with an enhanced optoacoustic signature and a FePt magnetic tip for precise, steerable control. Proof-of-concept studies show that OptoMaG can be actively navigated with external magnetic fields to traverse a 3D human-scale cerebrovascular phantom and accurately reach target brain sites. Beyond navigation, the FePt tip enables localized thermal ablation under remote radiofrequency stimulation, highlighting its theranostic potential for tumor treatment. In addition, OptoMaG functions as a light source for photodynamic therapy, selectively activating photosensitizers to destroy tumor cells while preserving healthy tissue. Collectively, OptoMaG provides a safe, radiation-free platform merging real-time navigation with targeted therapeutic capabilities.

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Publisher

American Association for the Advancement of Science

Citation

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Source

Science Advances

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DOI

10.1126/sciadv.aea0201

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CC BY (Attribution)

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Creative Commons license

Except where otherwise noted, this item's license is described as CC BY (Attribution)

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