Journal article
Local synthesis of estradiol in the rostral ventromedial medulla protects against widespread muscle pain in male mice
eNeuro, Vol.11(8), pp.ENEURO.0332-24.2024
08/2024
DOI: 10.1523/ENEURO.0332-24.2024
PMCID: PMC11360981
PMID: 39111835
Abstract
Animal studies consistently demonstrate that testosterone is protective against pain in multiple models, including an animal model of activity-induced muscle pain. In this model, females develop widespread muscle hyperalgesia, and reducing testosterone levels in males results in widespread muscle hyperalgesia. Widespread pain is believed to be mediated by changes in the central nervous system, including the rostral ventromedial medulla (RVM). The enzyme that converts testosterone to estradiol, aromatase, is highly expressed in the RVM. Therefore, we hypothesized that testosterone is converted by aromatase to estradiol locally in the RVM to prevent development of widespread muscle hyperalgesia in male mice. This was tested through pharmacological inhibition of estrogen receptors (ER), aromatase, or ER-α in the RVM which resulted in contralateral hyperalgesia in male mice (C57BL/6J). ER inhibition in the RVM had no effect on hyperalgesia in female mice. As prior studies show modulation of estradiol signaling alters GABA receptor and transporter expression, we examined if removal of testosterone in males would decrease mRNA expression of GABA receptor subunits and vesicular GABA transporter (VGAT). However, there were no differences in mRNA expression of GABA receptor subunits of VGAT between gonadectomized and sham control males. Lastly, we used RNAscope to determine expression of ER-α in the RVM and show expression in inhibitory (VGAT+), serotonergic (tryptophan hydroxylase 2+), and μ-opioid receptor expressing (MOR+) cells. In conclusion, testosterone protects males from development of widespread hyperalgesia through aromatization to estradiol and activation of ER-α which is widely expressed in multiple cell types in the RVM.Significance Statement This study's findings reveal, for the first time, that testosterone protects males from development of widespread muscle hyperalgesia through aromatization to estradiol and activation of ER-α within the RVM. The findings also show, for the first time, ER-α expression in the RVM in male mice, and the distribution patterns of this expression among multiple cell types. Thus, together our data suggest a unique endogenous mechanism in the RVM for protection against widespread pain in males only.Animal studies consistently demonstrate that testosterone is protective against pain in multiple models, including an animal model of activity-induced muscle pain. In this model, females develop widespread muscle hyperalgesia, and reducing testosterone levels in males results in widespread muscle hyperalgesia. Widespread pain is believed to be mediated by changes in the central nervous system, including the rostral ventromedial medulla (RVM). The enzyme that converts testosterone to estradiol, aromatase, is highly expressed in the RVM. Therefore, we hypothesized that testosterone is converted by aromatase to estradiol locally in the RVM to prevent development of widespread muscle hyperalgesia in male mice. This was tested through pharmacological inhibition of estrogen receptors (ER), aromatase, or ER-α in the RVM which resulted in contralateral hyperalgesia in male mice (C57BL/6J). ER inhibition in the RVM had no effect on hyperalgesia in female mice. As prior studies show modulation of estradiol signaling alters GABA receptor and transporter expression, we examined if removal of testosterone in males would decrease mRNA expression of GABA receptor subunits and vesicular GABA transporter (VGAT). However, there were no differences in mRNA expression of GABA receptor subunits of VGAT between gonadectomized and sham control males. Lastly, we used RNAscope to determine expression of ER-α in the RVM and show expression in inhibitory (VGAT+), serotonergic (tryptophan hydroxylase 2+), and μ-opioid receptor expressing (MOR+) cells. In conclusion, testosterone protects males from development of widespread hyperalgesia through aromatization to estradiol and activation of ER-α which is widely expressed in multiple cell types in the RVM.Significance Statement This study's findings reveal, for the first time, that testosterone protects males from development of widespread muscle hyperalgesia through aromatization to estradiol and activation of ER-α within the RVM. The findings also show, for the first time, ER-α expression in the RVM in male mice, and the distribution patterns of this expression among multiple cell types. Thus, together our data suggest a unique endogenous mechanism in the RVM for protection against widespread pain in males only.
Details
- Title: Subtitle
- Local synthesis of estradiol in the rostral ventromedial medulla protects against widespread muscle pain in male mice
- Creators
- Ashley N Plumb - University of IowaJoseph B Lesnak - University of IowaLouis J Kolling - University of IowaCatherine A Marcinkiewcz - University of IowaKathleen A Sluka - University of Iowa
- Resource Type
- Journal article
- Publication Details
- eNeuro, Vol.11(8), pp.ENEURO.0332-24.2024
- DOI
- 10.1523/ENEURO.0332-24.2024
- PMID
- 39111835
- PMCID
- PMC11360981
- NLM abbreviation
- eNeuro
- ISSN
- 2373-2822
- eISSN
- 2373-2822
- Publisher
- SOC NEUROSCIENCE
- Grant note
- National Institutes of Health (NIH): AR073187 NIH: GM067795, NS045549
ER alpha lox lox mice were generously gifted from Dr. Mangalam at the University of Iowa. This work was supported by the National Institutes of Health (NIH) AR073187 (K.A.S.), NIH NS045549 (A.N.P.), Foundation for Physical Therapy Research Promotion of Doctoral Studies (PODS) I (J.B.L.), and NIH GM067795 (J.B.L.) . The study and its contents are the authors' sole responsibility.
- Language
- English
- Electronic publication date
- 08/07/2024
- Date published
- 08/2024
- Academic Unit
- Iowa Neuroscience Institute; Nursing; Physical Therapy and Rehabilitation Science; Neuroscience and Pharmacology
- Record Identifier
- 9984696856002771
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