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Identification of the protective mechanisms of Lactoferrin in the irradiated salivary gland.


ABSTRACT: Radiotherapy is commonly used in patients with head and neck cancer, and usually results in irreversible salivary glands damage and hypofunction. It is therefore important to manage such irradiation to prevent damage to the salivary glands. A previous study showed that Lactoferrin (LF) has a radioprotective effect, but the mechanism was not determined in salivary glands. In the present study, we investigated the detailed radioprotective effect of LF using both ex vivo submandibular salivary gland organ culture and ICR male mice in vivo. We found that LF had effects on both cell proliferation and CyclinD1-mediated cell-cycle progression which were regulated via the ERK1/2 and AKT signal transduction pathways. In addition, LF affected acinar cell structure and function after irradiation. These findings suggest that LF may be a useful agent to prevent irradiation effects in salivary glands.

SUBMITTER: Sakai M 

PROVIDER: S-EPMC5575150 | biostudies-literature | 2017 Aug

REPOSITORIES: biostudies-literature

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Identification of the protective mechanisms of Lactoferrin in the irradiated salivary gland.

Sakai Manabu M   Matsushita Takumi T   Hoshino Ryoko R   Ono Hitomi H   Ikai Kazuki K   Sakai Takayoshi T  

Scientific reports 20170829 1


Radiotherapy is commonly used in patients with head and neck cancer, and usually results in irreversible salivary glands damage and hypofunction. It is therefore important to manage such irradiation to prevent damage to the salivary glands. A previous study showed that Lactoferrin (LF) has a radioprotective effect, but the mechanism was not determined in salivary glands. In the present study, we investigated the detailed radioprotective effect of LF using both ex vivo submandibular salivary glan  ...[more]

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