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Total and anatomically contextualized quantitative 18F-DCFPyL PET at biochemical recurrence to predict subsequent biochemical progression-free survival in patients with prostate cancer.

Song, Hong ; Anand, Aseem LU ; Sjöstrand, Karl LU ; Ferri, Valentina ; Duan, Heying ; Shah, Jagruti ; Moradi, Farshad ; Mari Aparici, Carina ; Franc, Benjamin Lewis and Davidzon, Guido , et al. (2024) In Journal of Clinical Oncology 42. p.33-33
Abstract

33Background: PSMA PET has been shown to detect more metastasis and alter management at biochemical recurrence (BCR), but it remains to be determined that it changes oncologic outcome. We assessed the quantitative parameters on 18F-DCFPyL PET at BCR and evaluated their association with tumor volume, metastatic locations with the subsequent biochemical progression free survival (bPFS). Methods: This is a retrospective image analysis and longitudinal follow up of a prospective study evaluating 18F-DCFPyL PET in BCR. Patients were treated with androgen deprivation therapy (ADT) and/or metastatic directed therapy (MDT) based on imaging findings. The 18F-DCFPyL PET images were quantitatively analyzed by the... (More)

33Background: PSMA PET has been shown to detect more metastasis and alter management at biochemical recurrence (BCR), but it remains to be determined that it changes oncologic outcome. We assessed the quantitative parameters on 18F-DCFPyL PET at BCR and evaluated their association with tumor volume, metastatic locations with the subsequent biochemical progression free survival (bPFS). Methods: This is a retrospective image analysis and longitudinal follow up of a prospective study evaluating 18F-DCFPyL PET in BCR. Patients were treated with androgen deprivation therapy (ADT) and/or metastatic directed therapy (MDT) based on imaging findings. The 18F-DCFPyL PET images were quantitatively analyzed by the aPROMISE application, a semi-automated software for comprehensive analysis and structured reporting of PSMA PET/CT. aPROMISE uses deep learning to segment detailed anatomical information from the CT images and uses this information in combination with the PET image to detect and quantify candidates for prostate cancer lesions. The reader works in tandem with the software to vet the final list of lesions, from which the quantitative assessments and final report is created automatically. Based on the Prostate Cancer Molecular Imaging Standardized Evaluation (PROMISE) criteria. SUV mean, PSMA positive total tumor volume (PSMAttv) and aPSMA scores, a quantitative score for tumor burden measuring the interaction of tumor volume and uptake stratified by local tumors (aPSMA-miT), regional lymph nodes (aPSMA-miN) and distant metastases (aPSMA-miMa for extrapelvic metastases, miMb for bone metastases and miMc for other organ metastases) were obtained based on the miTNM classification. The association of these quantitative parameters with the subsequent bPFS was evaluated. Results: 143 patients (age 70.5 ± 7.9, range 50 -93 years; median PSA 2.8, range 0.12 – 1125.9 ng/mL) were included in the quantitative image analysis. 80 of 143 patients (56%) had nodal metastases 51/143 patients (36%) had bone metastases, only 16 of 143 patients (11%) had visceral metastases. With median follow up of 40 months, 82 of 143 patients (57%) have progressed again biochemically after MDT. The median bPFS was 26.9 months. Quantitative analysis of 18F-DCFPyL PET found that the subsequent bPFS is significantly associated with aPSMA-miMb (P = 0.003), aPSMA-miN (P = 0.005), aPSMA-miT (P < 0.001), and PSMAttv (P = 0.006), but not with SUVmean, SUVmax or aPSMA-miMc. Conclusions: Quantitative image analysis of 18F-DCFPyL PET at BCR may be useful in predicting the subsequent bPFS. Given many patients were treated with MDT and/or ADT, clinical implication of the findings remains to be elucidated to guide treatment intensification based on findings on 18F-DCFPyL PET.

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published
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Journal of Clinical Oncology
volume
42
pages
1 pages
publisher
Lippincott Williams & Wilkins
external identifiers
  • scopus:105024676702
ISSN
0732-183X
DOI
10.1200/JCO.2024.42.4_suppl.33
language
English
LU publication?
yes
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Publisher Copyright: © 2024
id
366d14fb-e02a-41d3-a9f3-4c06aff68eef
date added to LUP
2026-03-06 13:34:56
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2026-03-06 14:16:38
@article{366d14fb-e02a-41d3-a9f3-4c06aff68eef,
  abstract     = {{<p>33Background: PSMA PET has been shown to detect more metastasis and alter management at biochemical recurrence (BCR), but it remains to be determined that it changes oncologic outcome. We assessed the quantitative parameters on <sup>18</sup>F-DCFPyL PET at BCR and evaluated their association with tumor volume, metastatic locations with the subsequent biochemical progression free survival (bPFS). Methods: This is a retrospective image analysis and longitudinal follow up of a prospective study evaluating <sup>18</sup>F-DCFPyL PET in BCR. Patients were treated with androgen deprivation therapy (ADT) and/or metastatic directed therapy (MDT) based on imaging findings. The <sup>18</sup>F-DCFPyL PET images were quantitatively analyzed by the aPROMISE application, a semi-automated software for comprehensive analysis and structured reporting of PSMA PET/CT. aPROMISE uses deep learning to segment detailed anatomical information from the CT images and uses this information in combination with the PET image to detect and quantify candidates for prostate cancer lesions. The reader works in tandem with the software to vet the final list of lesions, from which the quantitative assessments and final report is created automatically. Based on the Prostate Cancer Molecular Imaging Standardized Evaluation (PROMISE) criteria. SUV mean, PSMA positive total tumor volume (PSMAttv) and aPSMA scores, a quantitative score for tumor burden measuring the interaction of tumor volume and uptake stratified by local tumors (aPSMA-miT), regional lymph nodes (aPSMA-miN) and distant metastases (aPSMA-miMa for extrapelvic metastases, miMb for bone metastases and miMc for other organ metastases) were obtained based on the miTNM classification. The association of these quantitative parameters with the subsequent bPFS was evaluated. Results: 143 patients (age 70.5 ± 7.9, range 50 -93 years; median PSA 2.8, range 0.12 – 1125.9 ng/mL) were included in the quantitative image analysis. 80 of 143 patients (56%) had nodal metastases 51/143 patients (36%) had bone metastases, only 16 of 143 patients (11%) had visceral metastases. With median follow up of 40 months, 82 of 143 patients (57%) have progressed again biochemically after MDT. The median bPFS was 26.9 months. Quantitative analysis of <sup>18</sup>F-DCFPyL PET found that the subsequent bPFS is significantly associated with aPSMA-miMb (P = 0.003), aPSMA-miN (P = 0.005), aPSMA-miT (P &lt; 0.001), and PSMAttv (P = 0.006), but not with SUVmean, SUVmax or aPSMA-miMc. Conclusions: Quantitative image analysis of <sup>18</sup>F-DCFPyL PET at BCR may be useful in predicting the subsequent bPFS. Given many patients were treated with MDT and/or ADT, clinical implication of the findings remains to be elucidated to guide treatment intensification based on findings on <sup>18</sup>F-DCFPyL PET.</p>}},
  author       = {{Song, Hong and Anand, Aseem and Sjöstrand, Karl and Ferri, Valentina and Duan, Heying and Shah, Jagruti and Moradi, Farshad and Mari Aparici, Carina and Franc, Benjamin Lewis and Davidzon, Guido and Bergstrom, Colin P. and Fan, Alice C. and Shah, Sumit and Khaki, Ali Raza and Srinivas, Sandy and Iagaru, Andrei}},
  issn         = {{0732-183X}},
  language     = {{eng}},
  pages        = {{33--33}},
  publisher    = {{Lippincott Williams & Wilkins}},
  series       = {{Journal of Clinical Oncology}},
  title        = {{Total and anatomically contextualized quantitative <sup>18</sup>F-DCFPyL PET at biochemical recurrence to predict subsequent biochemical progression-free survival in patients with prostate cancer.}},
  url          = {{http://dx.doi.org/10.1200/JCO.2024.42.4_suppl.33}},
  doi          = {{10.1200/JCO.2024.42.4_suppl.33}},
  volume       = {{42}},
  year         = {{2024}},
}