TY - JOUR
T1 - Selenite Downregulates STAT3 Expression and Provokes Lymphocytosis in the Liver of Chronically Exposed Syrian Golden Hamsters
AU - Camacho-Moll, María E.
AU - Sampayo-Reyes, Adriana
AU - Castorena-Torres, Fabiola
AU - Lozano-Garza, Gerardo
AU - Alarcón-Galván, Gabriela
AU - Hernández, Alba
AU - Marcos, Ricard
AU - Alcocer-González, Juan
AU - Tamez-Guerra, Reyes
AU - León, Mario Bermúdez de
N1 - Publisher Copyright:
© 2021 by the authors. Licensee MDPI, Basel, Switzerland.
PY - 2021/9/16
Y1 - 2021/9/16
N2 - Arsenic is considered a worldwide pollutant that can be present in drinking water. Arsenic exposure is associated with various diseases, including cancer. Antioxidants as selenite and α-tocopherol-succinate have been shown to modulate arsenic toxic effects. Since changes in STAT3 and PSMD10 gene expression have been associated with carcinogenesis, the aim of this study was to evaluate the effect of arsenic exposure and co-treatments with selenite or α-tocopherol-succinate on the expression of these genes, in the livers of chronically exposed Syrian golden hamsters. Animals were divided into six groups: (i) control, (ii) chronically treated with 100 ppm arsenic, (iii) treated with 6 ppm α-tocopherol-succinate (α-TOS), (iv) treated with 8.5 ppm selenite, (v) treated with arsenic + α-TOS, and (vi) treated with arsenic + selenite. Urine samples and livers were collected after 20 weeks of continuous exposure. The urine samples were analyzed for arsenic species by atomic absorption spectrophotometry, and real-time RT-qPCR analysis was performed for gene expression evaluation. A reduction in STAT3 expression was observed in the selenite-treated group. No differences in PSMD10 expression were found among groups. Histopathological analysis revealed hepatic lymphocytosis in selenite-treated animals. As a conclusion, long-term exposure to arsenic does not significantly alter the expression of STAT3 and PSMD10 oncogenes in the livers of hamsters; however, selenite down-regulates STAT3 expression and provokes lymphocytosis.
AB - Arsenic is considered a worldwide pollutant that can be present in drinking water. Arsenic exposure is associated with various diseases, including cancer. Antioxidants as selenite and α-tocopherol-succinate have been shown to modulate arsenic toxic effects. Since changes in STAT3 and PSMD10 gene expression have been associated with carcinogenesis, the aim of this study was to evaluate the effect of arsenic exposure and co-treatments with selenite or α-tocopherol-succinate on the expression of these genes, in the livers of chronically exposed Syrian golden hamsters. Animals were divided into six groups: (i) control, (ii) chronically treated with 100 ppm arsenic, (iii) treated with 6 ppm α-tocopherol-succinate (α-TOS), (iv) treated with 8.5 ppm selenite, (v) treated with arsenic + α-TOS, and (vi) treated with arsenic + selenite. Urine samples and livers were collected after 20 weeks of continuous exposure. The urine samples were analyzed for arsenic species by atomic absorption spectrophotometry, and real-time RT-qPCR analysis was performed for gene expression evaluation. A reduction in STAT3 expression was observed in the selenite-treated group. No differences in PSMD10 expression were found among groups. Histopathological analysis revealed hepatic lymphocytosis in selenite-treated animals. As a conclusion, long-term exposure to arsenic does not significantly alter the expression of STAT3 and PSMD10 oncogenes in the livers of hamsters; however, selenite down-regulates STAT3 expression and provokes lymphocytosis.
KW - Administration, Oral
KW - Animals
KW - Antioxidants/administration & dosage
KW - Arsenic
KW - Arsenic/administration & dosage
KW - Down-Regulation/drug effects
KW - Hamster
KW - Kaplan-Meier Estimate
KW - Liver
KW - Liver/drug effects
KW - Lymphocytosis/chemically induced
KW - Male
KW - Mesocricetus
KW - Oncogenes
KW - Proteasome Endopeptidase Complex/genetics
KW - STAT3 Transcription Factor/genetics
KW - Selenious Acid/administration & dosage
KW - Selenite
KW - Weight Gain/drug effects
KW - alpha-Tocopherol/pharmacology
KW - α-tocopherol
UR - https://doi.org/10.3390/molecules26185614
UR - http://www.scopus.com/inward/record.url?scp=85115318154&partnerID=8YFLogxK
UR - https://www.mendeley.com/catalogue/fb4ff72d-2f2f-3c9f-812d-a6d8c8bd9324/
M3 - Article
C2 - 34577085
SN - 1420-3049
VL - 26
SP - 26: 5614
JO - Molecules
JF - Molecules
IS - 18
M1 - 5614
ER -