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1.
Cancer Res ; 76(5): 1170-80, 2016 Mar 01.
Article in English | MEDLINE | ID: mdl-26759233

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-ßgal, 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.


Subject(s)
Cellular Senescence , Head and Neck Neoplasms/radiotherapy , Interleukin-6/pharmacology , Salivary Glands/radiation effects , Animals , Apoptosis/radiation effects , DNA Damage , DNA Repair , Female , Histones/analysis , Humans , Mice , Mice, Inbred C57BL , Receptors, Interleukin-6/physiology , Salivary Glands/physiology
2.
Clin Exp Pharmacol Physiol ; 40(4): 262-72, 2013 Apr.
Article in English | MEDLINE | ID: mdl-23384058

ABSTRACT

In vitro studies suggest that combined activation of hypoxia-inducible factor (HIF) and signal transducer and activator of transcription 3 (STAT3) promotes the hypoxia response. However, their interrelationship in vivo remains poorly defined. The present study investigated the possible relationship between HIF-1 upregulation and STAT3 activation in the rodent kidney in vivo. Activation of HIF-1 and STAT3 was analysed by immunohistochemical staining and western blot analysis in: (i) models of hypoxia-associated kidney injury induced by radiocontrast media or rhabdomyolysis; (ii) following activation of STAT3 by the interleukin (IL)-6-soluble IL-6 receptor complex; or (iii) following HIF-1α stabilization using hypoxic and non-hypoxic stimuli (mimosine, FG-4497, CO, CoCl(2)) and in targeted von Hippel-Lindau-knockout mice. Western blot analysis and immunostaining revealed marked induction of both transcription factors under all conditions tested, suggesting that in vivo STAT3 can trigger HIF and vice versa. Colocalization of HIF-1α and phosphorylated STAT3 was detected in some, but not all, renal cell types, suggesting that in some cells a paracrine mechanism may be responsible for the reciprocal activation of the two transcription factors. Nevertheless, in several cell types spatial concordance was observed under the majority of conditions tested, suggesting that HIF-1 and STAT3 may act as cotranscription factors. These in vivo studies suggest that, in response to renal hypoxic-stress, upregulation of HIF-1 and activation of STAT3 may be both reciprocal and cell type dependent.


Subject(s)
Hypoxia-Inducible Factor 1, alpha Subunit/metabolism , Hypoxia/metabolism , Kidney/metabolism , STAT3 Transcription Factor/metabolism , Acute Kidney Injury/genetics , Acute Kidney Injury/metabolism , Animals , Hypoxia/genetics , Male , Mice , Mice, Inbred BALB C , Mice, Knockout , Oxygen/pharmacology , Rats , Rats, Sprague-Dawley , Up-Regulation/drug effects , Von Hippel-Lindau Tumor Suppressor Protein/genetics
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