4.7 Article

Kappa-Opioid Receptor Blockade Ameliorates Obesity Caused by Estrogen Withdrawal via Promotion of Energy Expenditure through mTOR Pathway

期刊

出版社

MDPI
DOI: 10.3390/ijms23063118

关键词

energy expenditure; estrogens; kappa-opioid; obesity

资金

  1. FEDER/Ministerio de Ciencia, Innovacion y Universidades-Agencia Estatal de Investigacion [PID2020-116628GB-I00, BFU2017-83934-P, RTI2018-099413-B-I00, RTI2018-101840-B-I00, BFU2017-90578-REDT/Adipoplast]
  2. Instituto de Salud Carlos III-European Union [OA-M: PI21/01216]
  3. Atresmedia Corporacion
  4. Fundacion BBVA
  5. la Caixa Foundation [100010434]
  6. European Foundation for the Study of Diabetes
  7. ERC
  8. Xunta de Galicia [2019-2022-ED431G 2019/02]
  9. European Union (European Regional Development Fund-ERDF)
  10. Centro de Investigacion Biomedica en Red (CIBER) de Fisiopatologia de la Obesidad y Nutricion (CIBERobn)
  11. Instituto de Salud Carlos III (ISCIII) of Spain
  12. ERDF funds
  13. Juan de la Cierva-Incorporacion fellowship [IJCI-2017-32606]
  14. Ministerio de Ciencia, Innovacion y Universidades, Spain [CP20/00146]
  15. ISCIII

向作者/读者索取更多资源

Weight gain is a common symptom of decreased estradiol levels due to menopause or surgical ovariectomy. This study shows that the kappa-opioid receptor system plays a role in mediating weight gain associated with estradiol withdrawal. It also suggests that the hypothalamic mTOR pathway is involved in regulating weight and adiposity in ovariectomized mice.
Weight gain is a hallmark of decreased estradiol (E2) levels because of menopause or following surgical ovariectomy (OVX) at younger ages. Of note, this weight gain tends to be around the abdomen, which is frequently associated with impaired metabolic homeostasis and greater cardiovascular risk in both rodents and humans. However, the molecular underpinnings and the neuronal basis for these effects remain to be elucidated. The aim of this study is to elucidate whether the kappa-opioid receptor (k-OR) system is involved in mediating body weight changes associated with E2 withdrawal. Here, we document that body weight gain induced by OVX occurs, at least partially, in a k-OR dependent manner, by modulation of energy expenditure independently of food intake as assessed in Oprk1-/-global KO mice. These effects were also observed following central pharmacological blockade of the k-OR system using the k-OR-selective antagonist PF-04455242 in wild type mice, in which we also observed a decrease in OVX-induced weight gain associated with increased UCP1 positive immunostaining in brown adipose tissue (BAT) and browning of white adipose tissue (WAT). Remarkably, the hypothalamic mTOR pathway plays an important role in regulating weight gain and adiposity in OVX mice. These findings will help to define new therapies to manage metabolic disorders associated with low/null E2 levels based on the modulation of central k-OR signaling.

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