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Relationships between the expression of adipose genes and profiles of hospitalized dogs. | LitMetric

AI Article Synopsis

  • Obesity in dogs is linked to various metabolic diseases, and the study focuses on how energy regulation in fat cells, influenced by the BMP pathway, affects this condition.
  • Researchers analyzed gene expression from the fat of 129 hospitalized dogs, looking at 23 genes related to fat cell function and metabolism, but couldn't find a reliable equation to connect these genes to body condition scores (BCS).
  • Results showed that as dogs age, BCS increases, and specific gene expressions related to fat cell differentiation decline, while others like Leptin increase, suggesting complex interactions between age, obesity, and gene expression in canine fat tissue.

Article Abstract

Obesity is one of the risk factors for the onset of various metabolic diseases in dogs. Energy expenditure in brown/beige adipocytes, which is partially regulated by the bone morphogenetic protein (BMP) pathway, is a key factor determining systemic energy balance. Here, we examined gene expression in the fat depots of 129 hospitalized dogs, and the relationship between the relative levels of gene expression and profiles of dogs. We evaluated the expression levels of 23 genes such as regulatory genes of adipocyte differentiation and function, adipokines, genes related to brown adipogenesis and uncoupling protein (Ucp), and genes involved in BMP signaling. A reliable equation of multiple regression was not obtained to explain the body condition score (BCS), which is an index of adiposity. Positive relationships were detected between the expression levels of many genes, except for Ucp1 or Ucp3. BCS was found to increase with age. BCS was negatively correlated to the expression levels of Pparγ and Fasn, and positively correlated to Leptin and Opn3 expression. Aging decreased the expression levels of genes related to adipocyte differentiation and function (Pparγ, Fabp4, Fasn, Hsl, and Insr) and Adipoq. In addition, age was negatively correlated with the expression of genes involved in brown adipogenesis and BMP signaling components (Prdm16, Bmp4, Alk3, Actr2a, and Actr2b). In contrast, the expression levels of Leptin and Ucp2 were found to increase with age. The present study clarifies BCS- and age-related gene expressions in the adipose tissue, which potentially contribute to elucidating the etiology of canine obesity.

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Source
http://dx.doi.org/10.1007/s11259-022-09989-2DOI Listing

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