Dose response modelling of secretory cell loss in salivary glands using PSMA PET.
prospective_cohort · Level II
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- Record sourced from PubMed, PMID 36368471.
- Also identified by DOI 10.1016/j.radonc.2022.10.038.
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Abstract
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 <sup>68</sup>Ga/<sup>18</sup>F-PSMA-ligands. We aimed to objectively quantify the dose-response of salivary glands to RT using PSMA PET. 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 (PT<sub>1M</sub>/PT<sub>6M</sub>). Dose, BL- PT<sub>1M</sub>- and PT<sub>6M</sub>-SUV were extracted for every voxel inside each parotid (PG) and submandibular (SMG) gland. The PT<sub>1M/6M</sub> data was analysed using a generalised linear mixed effects model.Patient-reported xerostomia and DT-PSMA loss was also analysed. Dose had a relative effect on BL SUV. For a population average gland (BL-SUV of 10), every 1 Gy increment, decreased the PT<sub>1M</sub>/PT<sub>6M</sub>-SUV by 1.6 %/1.6 % for PGs and by 0.9 %/1.8 % for SMGs. TD<sub>50</sub> of the population curves was 26.5/31.3 Gy for PGs, and 22.9/27.8 Gy for SMGs at PT<sub>1M</sub> /PT<sub>6M</sub>. PSMA loss correlated well with patient-reported xerostomia at DT/PT<sub>1M</sub> (Spearman's ρ = -0.64, -0.50). 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.
Medical subject headings
- Xerostomia
- Head and Neck Neoplasms