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18F-FAPI-74 Positron Emission Tomography/Computed Tomography Noninvasively Monitoring the Fibrosis of Cardiac
Huiling Li1, Yufei Wei1,2, Zhuoqi Qin1,2
1Department of Nuclear Medicine First Hospital of Shanxi Medical University Taiyuan China.
Insights
18F-FAPI-74 PET/CT imaging shows promise for monitoring cardiac allograft vasculopathy (CAV) fibrosis. This technique successfully visualized activated fibroblasts in rat models, correlating with CAV severity.
Area of Science:
- Cardiovascular Research
- Medical Imaging
- Fibrosis Research
Background:
- Cardiac allograft vasculopathy (CAV) significantly limits long-term survival in heart transplant recipients.
- Current methods for monitoring CAV fibrosis are insufficient.
- Novel imaging techniques are needed to assess CAV progression.
Purpose of the Study:
- To evaluate the feasibility of 18F-FAPI-74 positron emission tomography/computed tomography (PET/CT) for monitoring cardiac allograft vasculopathy (CAV) fibrosis.
- To assess the accuracy of 18F-FAPI-74 PET/CT in detecting and quantifying fibrosis in a rat model of CAV.
Main Methods:
- Established rat models of CAV.
- Performed dynamic and serial static 18F-FAPI-74 PET/CT imaging in allograft and isograft groups.
- Corroborated in vivo findings with ex vivo imaging, biodistribution studies, and histological analysis.
Main Results:
- 18F-FAPI-74 PET/CT demonstrated significantly higher tracer uptake in the allografts of CAV rats compared to controls.
- Uptake peaked at 15 weeks post-transplantation, correlating with fibrosis severity.
- Blocking experiments confirmed tracer specificity for activated fibroblasts.
Conclusions:
- 18F-FAPI-74 PET/CT successfully achieved molecular imaging of activated fibroblasts in CAV rat models.
- This imaging modality shows potential as a valuable tool for evaluating fibrosis progression in CAV.
- 18F-FAPI-74 PET/CT may improve the management of heart transplant recipients by enabling earlier and more accurate fibrosis assessment.
Background:
Cardiac allograft vasculopathy (CAV) is the primary cause of limited long-term survival among heart transplant recipients. This study aimed to evaluate the feasibility of 18F-FAPI-74 positron emission tomography/computed tomography (PET/CT) imaging for monitoring the fibrosis of CAV.
Methods:
Rat models of CAV were established and 1 hour dynamic PET/CT imaging was performed in the 15th week postoperation. Serial static 18F-FAPI-74 PET/CT imaging in the allograft and isograft groups were performed from week 3 to 17. Blocking experiments were performed on allograft rats to confirm the tracer's targeting specificity. In vivo PET/CT imaging findings were further corroborated by ex vivo PET/CT imaging and biodistribution studies. Histological examination was conducted to validate the model's effectiveness, and the correlation between FAP expression levels and imaging results was ascertained.
Results:
Dynamic PET/CT imaging revealed peak graft heart (Ht) uptake in the allograft group at 60 minutes post 18F-FAPI-74 injection. PET/CT imaging and biodistribution studies at all time points confirmed significantly higher radioactivity uptake in Ht of the allograft group, as compared with both their native hearts and Ht of the isograft group, and peaking at week 15. There was almost no radioactive accumulation of Ht in the allograft rats blocked by FAPI. Histological analysis confirmed significantly elevated FAP expression in Ht of the allograft group compared with the isograft group, consistent with the severity of CAV.
Conclusions:
We successfully achieved molecular imaging of activated fibroblasts in CAV rat models, indicating that 18F-FAPI-74 PET/CT may be a valuable means of evaluating fibrosis progression of CAV.
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