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Stimulation of hypothalamic oxytocin neurons suppresses colorectal cancer progression in mice. | LitMetric

Stimulation of hypothalamic oxytocin neurons suppresses colorectal cancer progression in mice.

Elife

Key Laboratory of Environmental Health, Ministry of Education, Department of Toxicology, School of Public Health, Tongji Medical College, Wuhan, China.

Published: September 2021

AI Article Synopsis

  • Emerging research indicates that the nervous system, particularly hypothalamic oxytocin (Oxt) neurons, plays a significant role in the progression of colitis-associated cancer (CAC) in mice.
  • Both depleting and activating Oxt neurons can increase or decrease CAC progression, with celastrol effectively stimulating these neurons and inhibiting cancer development.
  • The findings suggest that Oxt neurons influence CAC by modulating sympathetic neuronal activity, pointing to potential new treatments for colorectal cancer through the activation of these neurons.

Article Abstract

Emerging evidence suggests that the nervous system is involved in tumor development in the periphery, however, the role of the central nervous system remains largely unknown. Here, by combining genetic, chemogenetic, pharmacological, and electrophysiological approaches, we show that hypothalamic oxytocin (Oxt)-producing neurons modulate colitis-associated cancer (CAC) progression in mice. Depletion or activation of Oxt neurons could augment or suppress CAC progression. Importantly, brain treatment with celastrol, a pentacyclic triterpenoid, excites Oxt neurons and inhibits CAC progression, and this anti-tumor effect was significantly attenuated in Oxt neuron-lesioned mice. Furthermore, brain treatment with celastrol suppresses sympathetic neuronal activity in the celiac-superior mesenteric ganglion (CG-SMG), and activation of β2 adrenergic receptor abolishes the anti-tumor effect of Oxt neuron activation or centrally administered celastrol. Taken together, these findings demonstrate that hypothalamic Oxt neurons regulate CAC progression by modulating the neuronal activity in the CG-SMG. Stimulation of Oxt neurons using chemicals, for example, celastrol, might be a novel strategy for colorectal cancer treatment.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8536257PMC
http://dx.doi.org/10.7554/eLife.67535DOI Listing

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