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Encapsulation Thermogenic Preadipocytes for Transplantation into Adipose Tissue Depots
Published on: June 2, 2015
Pharmacological modulation of RORα controls fat browning, adaptive thermogenesis, and body weight in mice
Martine Auclair1, Natacha Roblot1, Emilie Capel1
1Centre de Recherche Saint-Antoine UMR_S938, Sorbonne Université-INSERM, Paris, France.
Abstract:
Beiging is an attractive therapeutic strategy to fight against obesity and its side metabolic complications. The loss of function of the nuclear transcription factor RORα has been related to a lean phenotype with higher thermogenesis in sg/sg mice lacking this protein. Here we show that pharmacological modulation of RORα activity exerts reciprocal and cell-autonomous effect on UCP1 expression ex vivo, in cellulo, and in vivo. The RORα inverse-agonist SR3335 upregulated UCP1 expression in brown and subcutaneous white adipose tissue (scWAT) explants of wild-type (WT) mice, whereas the RORα agonist SR1078 had the opposite effect. We confirmed the reciprocal action of these synthetic RORα ligands on gene expression, mitochondrial mass, and uncoupled oxygen consumption rate in cultured murine and human adipocytes. Time course analysis revealed stepwise variation in gene expression, first of TLE3, an inhibitor of the thermogenic program, followed by a reciprocal effect on PRDM16 and UCP1. Finally, RORα ligands were shown to be useful tools to modulate in vivo UCP1 expression in scWAT with associated changes in this fat depot mass. SR3335 and SR1078 provoked the opposite effects on the WT mice body weight, but without any effect on sg/sg mice. This slimming effect of SR3335 was related to an increased adaptive thermogenesis of the mice, as assessed by the rectal temperature of cold-stressed mice and induction of UCP1 in scWAT, as well as by indirect calorimetry in presence or not of a β3-adrenoceptor agonist. These data confirmed that RORα ligands could be useful tools to modulate thermogenesis and energy homeostasis.NEW & NOTEWORTHY The regulation of adipose tissue browning was not fully deciphered and required further studies explaining how the regulation of this process may be of interest for tackling obesity and related metabolic disorders. Our data confirmed the involvement of the transcription factor RORα in the regulation of nonshivering thermogenesis, and importantly, revealed the possibility to in vivo modulate its activity by synthetic ligands with beneficial consequences on fat mass and body weight of the mice.
Insights
Pharmacological modulation of the nuclear transcription factor RORα influences UCP1 expression and thermogenesis. RORα ligands offer a potential strategy for managing obesity and metabolic disorders by regulating fat mass and body weight.
Area of Science:
- Metabolic Regulation
- Adipose Tissue Biology
- Obesity Research
Background:
- Obesity and metabolic complications require effective therapeutic strategies.
- The nuclear transcription factor RORα is linked to a lean phenotype and increased thermogenesis.
- Understanding RORα's role in adipose tissue browning is crucial for metabolic disorder treatment.
Purpose of the Study:
- To investigate the effect of pharmacological RORα modulation on UCP1 expression and thermogenesis.
- To explore the therapeutic potential of RORα ligands in managing obesity and metabolic disorders.
Main Methods:
- Utilized RORα inverse-agonist (SR3335) and agonist (SR1078) in wild-type (WT) and RORα-deficient (sg/sg) mice.
- Assessed UCP1 expression in adipose tissue explants and cultured adipocytes (murine and human).
- Measured gene expression, mitochondrial mass, oxygen consumption, body weight, and thermogenesis via indirect calorimetry and rectal temperature.
Main Results:
- SR3335 upregulated UCP1 in brown and subcutaneous white adipose tissue (scWAT), while SR1078 had an opposite effect.
- RORα ligands modulated UCP1 expression, mitochondrial mass, and oxygen consumption in adipocytes.
- In vivo administration of SR3335 reduced body weight in WT mice by increasing adaptive thermogenesis and UCP1 in scWAT.
Conclusions:
- Pharmacological modulation of RORα activity reciprocally affects UCP1 expression and thermogenesis.
- RORα ligands are effective tools for modulating UCP1 expression in scWAT, impacting fat mass and body weight.
- RORα ligands represent a promising therapeutic avenue for modulating thermogenesis and energy homeostasis in obesity.

