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On page 1 showing 1 ~ 4 papers out of 4 papers

Feeding desensitizes A1 adenosine receptors in adipose through FOXO1-mediated transcriptional regulation.

  • Mitchell E Granade‎ et al.
  • Molecular metabolism‎
  • 2022‎

Adipose tissue is a critical regulator of energy balance that must rapidly shift its metabolism between fasting and feeding to maintain homeostasis. Adenosine has been characterized as an important regulator of adipocyte metabolism primarily through its actions on A1 adenosine receptors (A1R). We sought to understand the role A1R plays specifically in adipocytes during fasting and feeding to regulate glucose and lipid metabolism.


Adaptive thermogenesis in brown adipose tissue involves activation of pannexin-1 channels.

  • Subramanian Senthivinayagam‎ et al.
  • Molecular metabolism‎
  • 2021‎

Brown adipose tissue (BAT) is specialized in thermogenesis. The conversion of energy into heat in brown adipocytes proceeds via stimulation of β-adrenergic receptor (βAR)-dependent signaling and activation of mitochondrial uncoupling protein 1 (UCP1). We have previously demonstrated a functional role for pannexin-1 (Panx1) channels in white adipose tissue; however, it is not known whether Panx1 channels play a role in the regulation of brown adipocyte function. Here, we tested the hypothesis that Panx1 channels are involved in brown adipocyte activation and thermogenesis.


Macrophages sensing oxidized DAMPs reprogram their metabolism to support redox homeostasis and inflammation through a TLR2-Syk-ceramide dependent mechanism.

  • Vlad Serbulea‎ et al.
  • Molecular metabolism‎
  • 2018‎

Macrophages control tissue homeostasis and inflammation by sensing and responding to environmental cues. However, the metabolic adaptation of macrophages to oxidative tissue damage and its translation into inflammatory mechanisms remains enigmatic.


Pannexin 1 is required for full activation of insulin-stimulated glucose uptake in adipocytes.

  • Samantha E Adamson‎ et al.
  • Molecular metabolism‎
  • 2015‎

Defective glucose uptake in adipocytes leads to impaired metabolic homeostasis and insulin resistance, hallmarks of type 2 diabetes. Extracellular ATP-derived nucleotides and nucleosides are important regulators of adipocyte function, but the pathway for controlled ATP release from adipocytes is unknown. Here, we investigated whether Pannexin 1 (Panx1) channels control ATP release from adipocytes and contribute to metabolic homeostasis.


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