Dose response modelling of secretory cell loss in salivary glands using PSMA PET

Vineet Mohan, Natascha M. Bruin, Roel J.H.M. Steenbakkers, Walter Noordzij, Chris H.J. Terhaard, Bart de Keizer, Abrahim Al-Mamgani, Jeroen B. van de Kamer, Jan Jakob Sonke, Wouter V. Vogel*

*Corresponding author voor dit werk

Onderzoeksoutput: ArticleAcademicpeer review

8 Citaten (Scopus)
105 Downloads (Pure)

Samenvatting

Background and purpose: Xerostomia remains a common side effect of radiotherapy (RT) for patients with head and neck (H&N) cancer despite advancements in treatment planning and delivery. Secretory salivary gland cells express the prostate-specific membrane antigen (PSMA), and show significant uptake on PET scans using 68Ga/18F-PSMA-ligands. We aimed to objectively quantify the dose–response of salivary glands to RT using PSMA PET. Methods and materials: 28H&N cancer patients received RT with 70 Gy in 35 fractions over 7 weeks. PSMA PET/CT was acquired at baseline (BL), during treatment (DT) and at 1-&6-months post-treatment (PT1M/PT6M). Dose, BL- PT1M- and PT6M-SUV were extracted for every voxel inside each parotid (PG) and submandibular (SMG) gland. The PT1M/6M data was analysed using a generalised linear mixed effects model. Patient-reported xerostomia and DT-PSMA loss was also analysed. Results: Dose had a relative effect on BL SUV. For a population average gland (BL-SUV of 10), every 1 Gy increment, decreased the PT1M/PT6M-SUV by 1.6 %/1.6 % for PGs and by 0.9 %/1.8 % for SMGs. TD50 of the population curves was 26.5/31.3 Gy for PGs, and 22.9/27.8 Gy for SMGs at PT1M /PT6M. PSMA loss correlated well with patient-reported xerostomia at DT/PT1M (Spearman's ρ = -0.64, −0.50). Conclusion: A strong relationship was demonstrated between radiation dose and loss of secretory cells in salivary glands derived using PSMA PET/CT. The population curve could potentially be used as a dose planning objective, by maximising the predicted post-treatment SUV. BL scans could be used to further tailor this to individual patients.

Originele taal-2English
Pagina's (van-tot)164-171
Aantal pagina's8
TijdschriftRadiotherapy and Oncology
Volume177
Vroegere onlinedatum8-nov.-2022
DOI's
StatusPublished - dec.-2022

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