Scientists find clues to how brain controls pain

Mechanism is similar to how a home thermostat can be used to turn up or down room temperature

Updated - October 17, 2019 01:09 pm IST

Published - October 17, 2019 01:20 am IST - Washington

Closeup sad boy with worried stressed face expression looking down with brain melting into lines question marks. Obsessive compulsive, adhd, anxiety disorders concept

Closeup sad boy with worried stressed face expression looking down with brain melting into lines question marks. Obsessive compulsive, adhd, anxiety disorders concept

Pain perception is essential for survival, but how much something hurts can sometimes be amplified or suppressed: for example, soldiers who sustain an injury in battle often recall not feeling anything at the time.

A new study published in Cell Reports honed in on the brain circuitry responsible for upgrading or downgrading these pain signals, likening the mechanism to how a home thermostat controls room temperature.

Yarimar Carrasquillo, the paper’s senior author and a scientist for the National Center for Complementary and Integrative Health (NCCIH), said the region responsible was the central amygdala, which according to her work appeared to play a dual role.

Studying mice, Ms. Carrasquillo and her colleagues found that the activity in neurons that express protein kinase C-delta amplified pain, while neurons that express somatostatin inhibited the chain of activity in the nerves required to communicate pain.

The central amygdala isn’t completely responsible for pain itself: if it were removed entirely, then “the ‘ouch’ of things, or the protective pain, would remain intact,” said Ms. Carrasquillo.

“It seems to be sitting there waiting for something to happen,” for example responding to stress or anxiety that amplifies pain, or being forced to focus on a task that diverts your attention and reduces pain.

Experiencing pain can be a vital warning to seek help, for example in a person experiencing appendicitis or a heart attack. People who are born with insensitivity to pain, meanwhile, often do not realise the severity of injuries and are at greater risk of early death.

But not all pain is useful. According to a 2012 survey, about 11% of U.S. adults have pain every day and more than 17% of them have severe levels of pain.

Often this leads to dependence on potent painkillers like opioids, or attempting to self-medicate through counterfeit or illicit drugs that are increasingly laced with deadly fentanyl.

By better understanding the brain mechanisms responsible for pain modulation, researchers hope to eventually find better cures: potentially ones that target only those forms of pain that are “bad” and not useful.

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