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Int J Radiat Oncol Biol Phys ; 104(3): 644-655, 2019 07 01.
Artículo en Inglés | MEDLINE | ID: mdl-30844421

RESUMEN

PURPOSE: The impairment of the salivary glands is a permanent side effect of 131I ablation therapy for patients with differentiated thyroid cancer. Effective and safe treatments for protecting the salivary glands against 131I are currently not available. Mitochondria are susceptible to ionizing radiation, but alterations after 131I exposure are unknown. Here, we investigated the mechanisms of 131I damage in submandibular glands (SMGs) and evaluated the cytoprotective effect of phenylephrine (PE) against mitochondrial radiation damage. METHODS AND MATERIALS: Rats were randomly divided into 4 groups: control, PE alone, 131I alone, and 131I with PE pretreatment. The mitochondrial structure of SMGs was observed under transmission electron microscopy. Apoptosis was detected using terminal deoxynucleotidyl transferase-mediated dUTP nick end labeling. Cytochrome c, cleaved-caspase 3, SIRT1, NAMPT, and PGC-1α protein levels were determined with Western blot and immunohistochemistry. Levels of mitochondrial membrane potential, nicotinamide adenine dinucleotide (NAD), and adenosine triphosphate (ATP) were measured with relevant kits. RESULTS: After exposing rat SMGs to 131I, the mitochondrial membrane structures were destroyed, the mitochondrial membrane potential decreased, the release of cytochrome c increased, and cleaved-caspase 3 and cell apoptosis were activated. Moreover, the expression of SIRT1, NAMPT, and PGC-1α was downregulated, and the levels of NAD and ATP decreased. In contrast, PE alleviated the 131I-induced mitochondrial damages and upregulated the expression of SIRT1/NAMPT/PGC-1α and the levels of NAD and ATP. CONCLUSIONS: These findings demonstrate that 131I impairs the salivary glands via the downregulation of SIRT1/NAMPT/PGC-1α signal pathways, which disturbs mitochondrial homeostasis. PE alleviated the 131I damage in SMGs at the mitochondrial level, suggesting that PE could be used as a potential radioprotector for patients with differentiated thyroid cancer with radiation sialadenitis.


Asunto(s)
Radioisótopos de Yodo/efectos adversos , Mitocondrias/efectos de la radiación , Fenilefrina/uso terapéutico , Traumatismos Experimentales por Radiación/prevención & control , Protectores contra Radiación/uso terapéutico , Glándula Submandibular/efectos de la radiación , Adenosina Trifosfato/metabolismo , Adenosina Trifosfato/efectos de la radiación , Animales , Apoptosis/efectos de la radiación , Caspasa 3/metabolismo , Caspasa 3/efectos de la radiación , Citocromos c/metabolismo , Citocromos c/efectos de la radiación , Citocinas/metabolismo , Citocinas/efectos de la radiación , Regulación hacia Abajo , Homeostasis , Etiquetado Corte-Fin in Situ , Potencial de la Membrana Mitocondrial/efectos de los fármacos , Potencial de la Membrana Mitocondrial/efectos de la radiación , Mitocondrias/efectos de los fármacos , NAD/metabolismo , NAD/efectos de la radiación , Nicotinamida Fosforribosiltransferasa/metabolismo , Nicotinamida Fosforribosiltransferasa/efectos de la radiación , Coactivador 1-alfa del Receptor Activado por Proliferadores de Peroxisomas gamma/metabolismo , Coactivador 1-alfa del Receptor Activado por Proliferadores de Peroxisomas gamma/efectos de la radiación , Traumatismos Experimentales por Radiación/metabolismo , Distribución Aleatoria , Ratas , Ratas Wistar , Sirtuina 1/metabolismo , Sirtuina 1/efectos de la radiación , Glándula Submandibular/ultraestructura , Neoplasias de la Tiroides/radioterapia
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