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Updated: May 12, 2026

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Activación de fibroblastos basada en proteína de radio-teranósticos que atenúa la fibrosis miocárdica postinfarto
Songlu Liu1, Lina Li1, Zhuxing Wang1
1Department of Nuclear Medicine, Beijing Chaoyang Hospital, Capital Medical University, 8th Gongtinanlu Road, Chaoyang District, Beijing 100020, China.
Abstract:
Excessive fibrosis drives adverse remodeling after myocardial infarction (MI), yet targeted theranostic strategies remain limited. To enable precise diagnosis and intervention, we developed a FAP-dimer-based imaging/therapeutic platform using 68Ga-DOTA-2P(FAPI)2 for noninvasive visualization of fibroblast activation and its therapeutic analogue 177Lu-DOTA-2P(FAPI)2 for radionuclide therapy. Cardiac function and fibrosis progression were assessed by echocardiography and histopathology, biosafety was evaluated via serum biochemistry and organ staining, and single-cell RNA sequencing (scRNA-seq) was performed to elucidate the underlying mechanisms. 68Ga-DOTA-2P(FAPI)2 demonstrated a high and specific uptake in early post-MI fibrotic regions. Therapeutic administration of 177Lu-DOTA-2P(FAPI)2 at day 7 significantly reduced myocardial fibrosis and improved cardiac function in both short- and long-term (3 and 28 days) evaluations. No significant toxicity was observed within 7 days post-treatment. scRNA-seq revealed selective depletion of activated fibroblasts and suppression of pro-inflammatory signaling in the infarct border zone, confirming the antifibrotic mechanism.
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