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Detection of Extracellular Vesicles with Colocalized Surface Markers via a Capture–Release–Capture Strategy for Treatment Monitoring in Ewing Sarcoma
- Ji, You‐Ren;
- Ju, Yong;
- Kong, Hui;
- Xu, Yaya;
- Zhao, Chen;
- Zhang, Ryan;
- Ma, Yue;
- Zheng, Lynn L;
- Shi, Lucy R;
- Wu, Alex;
- Lin, Lu‐An;
- Wu, Carina Peijia;
- Qian, Audrey;
- Ren, Emily;
- Zhang, Christine;
- Vo, Kenny;
- Dry, Sarah;
- Crompton, Joseph G;
- Federman, Noah;
- Zhu, Yazhen;
- Jonas, Steven J;
- Tseng, Hsian‐Rong;
- Lu, Shaohua;
- Lee, Junseok
Published Web Location
https://doi.org/10.1002/adhm.202505917Abstract
Ewing Sarcoma (ES) is a rare but aggressive malignancy of bone tissue in adolescents and young adults, where early detection of progression and real-time treatment monitoring remain unmet clinical needs. Tumor extracellular vesicles (EVs) carry surface markers and nucleic acid cargo that can serve as minimally invasive biomarkers, but single-marker EV assays often lack specificity, and colocalized-marker approaches may suffer from low sensitivity. Here, we report the ES EV Capture-Release-Capture (CaReCa) assay, a two-step enrichment strategy that combines desthiobiotin (DTB)-mediated capture/release of CD99+ EVs with click chemistry-mediated recapture of CD99+/B7-H3+ EVs, introducing molecular specificity to suppress background signals. To overcome limited yield from EVs with colocalized markers, we incorporated RT-digital PCR quantification of encapsulated ACTB mRNA, a stable housekeeping transcript, as a sensitive proxy for EV abundance. Using only 100 µL of plasma, the ES EV CaReCa assay distinguished ES patients (n = 20) from healthy donors (n = 20) with an AUROC of 0.98. Longitudinal analysis further demonstrated that dynamic changes in the assay readouts paralleled disease progression and treatment response, consistent with PET/CT findings. Together, these results establish CaReCa as a sensitive, specific, and scalable liquid biopsy platform with translational potential for noninvasive monitoring of ES patients.
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