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用褪黑素改善γ射线辐射致小鼠唾液腺损伤。

Amelioration of gamma irradiation-induced salivary gland damage in mice using melatonin.

机构信息

Tianjin Key Laboratory of Radiation Medicine and Molecular Nuclear Medicine, Institute of Radiation Medicine, Chinese Academy of Medical Sciences and Peking Union Medical College, Tianjin, China.

出版信息

J Pineal Res. 2023 Sep;75(2):e12897. doi: 10.1111/jpi.12897. Epub 2023 Jul 11.

Abstract

Salivary gland damage caused by ionizing radiation (IR) severely affects the patient quality of life and influences the efficacy of radiotherapy. Most current treatment modalities are palliative, so effective prevention of damage caused by IR is essential. Melatonin (MLT) is an antioxidant that has been reported to prevent IR-induced damage in a range of systems, including the hematopoietic system and gastrointestinal tract. In this study, we explored the effects of MLT on whole-neck irradiation (WNI)-induced salivary gland damage in mice. The results revealed that by protecting the channel protein AQP-5, MLT not only alleviates salivary gland dysfunction and maintains salivary flow rate, but also protects salivary gland structure and inhibits the WNI-induced reduction in mucin production and degree of fibrosis. Compared with WNI-treated mice, in those receiving MLT, we observed a modulation of oxidative stress in salivary glands via its effects on 8-OHdG and SOD2, as well as an inhibition of DNA damage and apoptosis. With respect to its radioprotective mechanism, we found that MLT may alleviate WNI-induced xerostomia partly by regulating RPL18A. In vitro, we demonstrated that MLT has radioprotective effects on salivary gland stem cells (SGSCs). In conclusion, our data this study indicate that MLT can effectively alleviate radiation-induced damage in salivary glands, thereby providing a new candidate for the prevention of WNI-induced xerostomia.

摘要

电离辐射 (IR) 引起的唾液腺损伤严重影响患者的生活质量,并影响放疗的疗效。大多数当前的治疗方法都是姑息性的,因此有效预防 IR 损伤至关重要。褪黑素 (MLT) 是一种抗氧化剂,已报道其可预防包括造血系统和胃肠道在内的多种系统中的 IR 诱导损伤。在这项研究中,我们探讨了 MLT 对小鼠全颈部照射 (WNI) 诱导的唾液腺损伤的影响。结果表明,通过保护通道蛋白 AQP-5,MLT 不仅缓解了唾液腺功能障碍和保持了唾液流速,还保护了唾液腺结构并抑制了 WNI 诱导的粘蛋白产生减少和纤维化程度。与 WNI 处理的小鼠相比,在接受 MLT 的小鼠中,我们观察到通过对 8-OHdG 和 SOD2 的影响,调节唾液腺中的氧化应激,以及抑制 DNA 损伤和细胞凋亡。就其放射防护机制而言,我们发现 MLT 可能通过调节 RPL18A 部分缓解 WNI 引起的口干症。在体外,我们证明 MLT 对唾液腺干细胞 (SGSCs) 具有放射保护作用。总之,我们这项研究的数据表明,MLT 可有效缓解辐射引起的唾液腺损伤,从而为预防 WNI 引起的口干症提供了一种新的候选药物。

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