Roles of β-Endorphin in Stress, Behavior, Neuroinflammation, and Brain Energy Metabolism

Роль β-эндорфина в стрессе, поведении, нейровоспалении и энергетическом метаболизме мозга
Alexander Pilozzi, Caitlin Carro, Xudong Huang
2020-12-30

Brain energy metabolismMu opioid receptorsNeuroinflammationPro-opiomelanocortin (POMC)β-Endorphin
β-Endorphins are peptides that exert a wide variety of effects throughout the body. Produced through the cleavage pro-opiomelanocortin (POMC), β-endorphins are the primarily agonist of mu opioid receptors, which can be found throughout the body, brain, and cells of the immune system that regulate a diverse set of systems. As an agonist of the body's opioid receptors, β-endorphins are most noted for their potent analgesic effects, but they also have their involvement in reward-centric and homeostasis-restoring behaviors, among other effects. These effects have implicated the peptide in psychiatric and neurodegenerative disorders, making it a research target of interest. This review briefly summarizes the basics of endorphin function, goes over the behaviors and regulatory pathways it governs, and examines the variability of β-endorphin levels observed between normal and disease/disorder affected individuals.
1
Beyond potent analgesia, β-endorphin participates in reward-related behaviors and homeostasis-restoring processes.
2
Its broad physiological effects implicate β-endorphin in psychiatric and neurodegenerative disorders.
3
β-Endorphin influences stress responses, behavior, neuroinflammation, and brain energy metabolism through diverse regulatory pathways.
4
β-Endorphin is produced by cleavage of pro-opiomelanocortin (POMC) and primarily activates mu opioid receptors throughout the body, brain, and immune system.
5
β-Endorphin levels vary between healthy individuals and those affected by diseases or disorders, motivating its investigation as a potential research target.

β-endorphin signaling and levels in the body, brain, and immune-system cells

β-endorphin roles in stress, behavior, neuroinflammation, brain energy metabolism, and differences between healthy and disease-affected states

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2020-12-30
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Alexander Pilozzi
Caitlin Carro
Xudong Huang
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