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Updated: Mar 27, 2026

Radiation Treatment of Organotypic Cultures from Submandibular and Parotid Salivary Glands Models Key In Vivo Characteristics
Published on: May 17, 2019
Radiation-Induced Loss of Salivary Gland Function Is Driven by Cellular Senescence and Prevented by IL6 Modulation
Yitzhak Marmary1, Revital Adar1, Svetlana Gaska1
1Goldyne-Savad Institute of Gene Therapy, Hadassah Hebrew University Hospital, Jerusalem, Israel.
Abstract:
Head and neck cancer patients treated by radiation commonly suffer from a devastating side effect known as dry-mouth syndrome, which results from the irreversible loss of salivary gland function via mechanisms that are not completely understood. In this study, we used a mouse model of radiation-induced salivary hypofunction to investigate the outcomes of DNA damage in the head and neck region. We demonstrate that the loss of salivary function was closely accompanied by cellular senescence, as evidenced by a persistent DNA damage response (γH2AX and 53BP1) and the expression of senescence-associated markers (SA-βgal, p19ARF, and DcR2) and secretory phenotype (SASP) factors (PAI-1 and IL6). Notably, profound apoptosis or necrosis was not observed in irradiated regions. Signs of cellular senescence were also apparent in irradiated salivary glands surgically resected from human patients who underwent radiotherapy. Importantly, using IL6 knockout mice, we found that sustained expression of IL6 in the salivary gland long after initiation of radiation-induced DNA damage was required for both senescence and hypofunction. Additionally, we demonstrate that IL6 pretreatment prevented both senescence and salivary gland hypofunction via a mechanism involving enhanced DNA damage repair. Collectively, these results indicate that cellular senescence is a fundamental mechanism driving radiation-induced damage in the salivary gland and suggest that IL6 pretreatment may represent a promising therapeutic strategy to preserve salivary gland function in head and neck cancer patients undergoing radiotherapy.
Insights
Radiation therapy for head and neck cancer causes dry mouth by damaging salivary glands. This study reveals cellular senescence drives this damage, but IL6 pretreatment may protect salivary function.
Area of Science:
- Oncology
- Radiation Biology
- Cellular Biology
Background:
- Head and neck cancer radiotherapy often causes dry mouth (xerostomia).
- The underlying mechanisms of radiation-induced salivary gland dysfunction are not fully understood.
- Salivary gland hypofunction results from irreversible damage following radiation treatment.
Purpose of the Study:
- To investigate the role of DNA damage and cellular senescence in radiation-induced salivary hypofunction.
- To explore the potential of Interleukin-6 (IL6) as a therapeutic target for preserving salivary gland function.
Main Methods:
- Utilized a mouse model of radiation-induced salivary hypofunction.
- Assessed DNA damage response (γH2AX, 53BP1) and senescence markers (SA-βgal, p19ARF, DcR2).
- Examined senescence-associated secretory phenotype (SASP) factors (PAI-1, IL6) and IL6 knockout mice.
Main Results:
- Radiation induced cellular senescence, not significant apoptosis, in salivary glands.
- Cellular senescence and SASP factor IL6 were sustained long after radiation exposure.
- IL6 knockout mice showed impaired recovery, while IL6 pretreatment protected against senescence and hypofunction.
- IL6 pretreatment enhanced DNA damage repair mechanisms.
Conclusions:
- Cellular senescence is a key mechanism underlying radiation-induced salivary gland damage.
- Sustained IL6 expression is critical for radiation-induced senescence and hypofunction.
- IL6 pretreatment represents a potential therapeutic strategy to mitigate dry mouth in cancer patients undergoing radiotherapy.
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