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Updated: Sep 2, 2026

Retroductal Submandibular Gland Instillation and Localized Fractionated Irradiation in a Rat Model of Salivary Hypofunction
Published on: April 24, 2016
Integrating submandibular gland transfer with proton therapy to preserve salivary function
Sreenija Yarlagadda1, Geoffrey D Young2, Robert M Rohe1
1Department of Radiation Oncology, Miami Cancer Institute, Baptist Health South Florida, Miami, FL 33176, USA.
Objective:
Submandibular gland (SMG) transfer to the submental space in patients undergoing head and neck radiation therapy was historically performed to decrease radiation-associated xerostomia in the era of 2D/3D radiotherapy. In this study, we evaluated the dosimetric significance of SMG transfer with intensity modulated proton therapy (IMPT).
Methods:
We reviewed patients with oropharyngeal carcinoma who received curative intent definitive radiation and had contralateral (C/L) SMG transfer. We registered the baseline diagnostic computed tomography (CT) scan of these patients with the CT simulation images and delineated pre-transfer and post-transfer SMG locations. IMPT pre-transfer plans were generated, taking into consideration the initial reference SMG position, and then re-optimized based on the post-transfer SMG position. Each patients' dosimetric parameters from both plans were compared for mean SMG doses, target coverage and other OAR doses.
Results:
Seventeen patients were included in the analysis. All patients received definitive radiation (66-70 Gy/30-35 fractions). Pre-transfer plans had a C/L SMG mean dose of 32.92 Gy (range [R]: 17.82-47.6 Gy), which decreased to 20.22 Gy (R: 9.75-38.87 Gy), p < 0.001 on re-optimization. Post-transfer plans met the mean dose constraints more often than pre-transfer plans. The difference in C/L SMG mean dose with gland transfer was 12.02 Gy (95% CI: 9.46-14.59 Gy; p < 0.001). There was no significant difference in target coverage, ipsilateral SMG, and any other OARs between the plans.
Conclusion:
This pilot study demonstrates that SMG transfer enables better C/L SMG dose sparing during IMPT. Future prospective studies with larger patient cohorts are warranted to support clinical translation.

