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1.
BMC Genomics ; 20(1): 141, 2019 Feb 15.
Artículo en Inglés | MEDLINE | ID: mdl-30770735

RESUMEN

BACKGROUND: Heat illness remains a significant cause of morbidity in susceptible populations. Recent research elucidating the cellular mechanism of heat stress leading to heat illness may provide information to develop better therapeutic interventions, risk assessment strategies, and early biomarkers of organ damage. microRNA (miRNA) are promising candidates for therapeutic targets and biomarkers for a variety of clinical conditions since there is the potential for high specificity for individual tissues and unique cellular functions. The objective of this study was to identify differentially expressed microRNAs and their putative mRNA targets in the heart, liver, kidney, and lung in rats at three time points: during heat stress (i.e., when core temperature reached 41.8 °C), or following a 24 or 48 h recovery period. RESULTS: Rats did not show histological evidence of tissue pathology until 48 h after heat stress, with 3 out of 6 rats showing cardiac inflammation and renal proteinosis at 48 h. The three rats with cardiac and renal pathology had 86, 7, 159, and 37 differentially expressed miRNA in the heart, liver, kidney, or lung, respectively compared to non-heat stressed control animals. During heat stress one differentially expressed miRNA was found in the liver and five in the lung, with no other modulated miRNA after 24 h or 48 h in animals with no evidence of organ injury. Pathway enrichment analysis revealed enrichment in functional pathways associated with heat stress, with the greatest effects observed in animals with histological evidence of cardiac and renal damage at 48 h. Inhibiting miR-21 in cultured cardiomyocytes increased the percent apoptotic cells five hours after heat stress from 70.9 ± 0.8 to 84.8 ± 2.2%. CONCLUSIONS: Global microRNA and transcriptomics analysis suggested that perturbed miRNA due to heat stress are involved in biological pathways related to organ injury, energy metabolism, the unfolded protein response, and cellular signaling. These miRNA may serve as biomarkers of organ injury and potential pharmacological targets for preventing heat illness or organ injury.


Asunto(s)
Trastornos de Estrés por Calor/genética , Respuesta al Choque Térmico/genética , MicroARNs/genética , MicroARNs/metabolismo , Animales , Apoptosis , Biomarcadores/metabolismo , Línea Celular , Metabolismo Energético/genética , Expresión Génica , Corazón/fisiología , Riñón/fisiología , Terapia Molecular Dirigida , Miocitos Cardíacos/fisiología , Ratas , Ratas Endogámicas F344 , Transducción de Señal/genética , Factores de Tiempo , Respuesta de Proteína Desplegada/genética
2.
Toxicol Sci ; 149(1): 67-88, 2016 Jan.
Artículo en Inglés | MEDLINE | ID: mdl-26396155

RESUMEN

Toxic industrial chemicals induce liver injury, which is difficult to diagnose without invasive procedures. Identifying indicators of end organ injury can complement exposure-based assays and improve predictive power. A multiplexed approach was used to experimentally evaluate a panel of 67 genes predicted to be associated with the fibrosis pathology by computationally mining DrugMatrix, a publicly available repository of gene microarray data. Five-day oral gavage studies in male Sprague Dawley rats dosed with varying concentrations of 3 fibrogenic compounds (allyl alcohol, carbon tetrachloride, and 4,4'-methylenedianiline) and 2 nonfibrogenic compounds (bromobenzene and dexamethasone) were conducted. Fibrosis was definitively diagnosed by histopathology. The 67-plex gene panel accurately diagnosed fibrosis in both microarray and multiplexed-gene expression assays. Necrosis and inflammatory infiltration were comorbid with fibrosis. ANOVA with contrasts identified that 51 of the 67 predicted genes were significantly associated with the fibrosis phenotype, with 24 of these specific to fibrosis alone. The protein product of the gene most strongly correlated with the fibrosis phenotype PCOLCE (Procollagen C-Endopeptidase Enhancer) was dose-dependently elevated in plasma from animals administered fibrogenic chemicals (P < .05). Semiquantitative global mass spectrometry analysis of the plasma identified an additional 5 protein products of the gene panel which increased after fibrogenic toxicant administration: fibronectin, ceruloplasmin, vitronectin, insulin-like growth factor binding protein, and α2-macroglobulin. These results support the data mining approach for identifying gene and/or protein panels for assessing liver injury and may suggest bridging biomarkers for molecular mediators linked to histopathology.


Asunto(s)
Perfilación de la Expresión Génica , Cirrosis Hepática/inducido químicamente , Hígado/patología , Animales , Quimiotaxis , Biología Computacional , Minería de Datos , Proteínas de la Matriz Extracelular/metabolismo , Glicoproteínas/sangre , Inflamación/etiología , Péptidos y Proteínas de Señalización Intercelular , Cirrosis Hepática/metabolismo , Cirrosis Hepática/patología , Masculino , Ratas , Ratas Sprague-Dawley
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