PsyPost
  • Mental Health
  • Social Psychology
  • Cognitive Science
  • Neuroscience
  • About
No Result
View All Result
Join
My Account
PsyPost
No Result
View All Result
Home Exclusive Mental Health

Study finds immune response in the gut may be key to preventing Parkinson’s disease

by University of Iowa
September 26, 2016
Reading Time: 2 mins read
(Photo credit: decade3d/Fotolia)

(Photo credit: decade3d/Fotolia)

Share on TwitterShare on Facebook

Your gut may play a pivotal role in preventing the onset of Parkinson’s disease. And the reason may be its knack for sleuthing.

Researchers at the University of Iowa have found that the gut may be key to preventing Parkinson’s disease. Cells located in the intestine spark an immune response that protects nerve cells, or neurons, against damage connected with Parkinson’s disease. Acting like detectives, the immune intestinal cells identify damaged machinery within neurons and discard the defective parts. That action ultimately preserves neurons whose impairment or death is known to cause Parkinson’s.

“We think somehow the gut is protecting neurons,” says Veena Prahlad, assistant professor in biology at the UI and corresponding author on the paper published Aug. 30 in the journal Cell Reports.

Parkinson’s disease is a brain disorder that erodes motor control and balance over time. It affects some 500,000 people in the U.S., according to the National Institutes of Health. The disease occurs when neurons—nerve cells—in the brain that control movement become impaired or die. Normally, these neurons produce dopamine, and when they are damaged or killed, the resulting dopamine shortage causes the motor-control problems associated with the disease.

Scientists have previously linked Parkinson’s to defects in mitochondria, the energy-producing machinery found in every human cell. Why and how mitochondrial defects effect neurons remain a mystery. Some think the impaired mitochondria starve neurons of energy; others believe they produce a neuron-harming molecule. Whatever the answer, damaged mitochondria have been linked to other nervous disorders as well, including ALS and Alzheimer’s, and researchers want to understand why.

Prahlad’s team exposed roundworms to a poison called rotenone, which researchers know kills neurons whose death is linked to Parkinson’s. As expected, the rotenone began damaging the mitochondria in the worms’ neurons. To the researchers’ surprise, though, the damaged mitochondria did not kill all of the worms’ dopamine-producing neurons; in fact, over a series of trials, an average of only seven percent of the worms, roughly 210 out of 3,000, lost dopamine-producing neurons when given the poison.

“That seemed intriguing, and we wondered whether there was some innate mechanism to protect the animal from the rotenone,” Prahlad says.

It turns out there was. The roundworms’ immune defenses, activated when the rotenone was introduced, discarded many of the defected mitochondria, halting a sequence that would’ve led to the loss of dopamine-producing neurons. Importantly, the immune response originated in the intestine, not the nervous system.

Google News Preferences Add PsyPost to your preferred sources

“If we can understand how this is done in the roundworm, we can understand how this may happen in mammals,” Prahlad says.

The researchers plan to conduct more experiments, but they’ve got some interesting hypotheses. One is the intestinal immune cells are, according to Prahlad, “constantly surveilling mitochondria for defects.”

Even more, those cellular watchdogs may be keeping their eyes on the mitochondria “because they don’t trust them,” Prahlad suggests. The reason has to do with the prevailing theory that mitochondria originated independently as a type of bacterium and were only later incorporated into the cells of animal, plants, and fungi as an energy producer.

If that theory is correct, the intestinal immune responders may be especially sensitive to changes in mitochondrial function not only for its potential damaging effects, but because of the mitochondria’s ancient and foreign past as well.

“How it’s happening is suggestive of the possibility that the innate immune response is constantly checking its mitochondria,” Prahlad says, “perhaps because of the bacterial origin of the mitochondria.”

TweetSendScanShareSendPin1ShareShareShareShareShare

Follow PsyPost

The latest research, however you prefer to read it.

Daily newsletter

One email a day. The newest research, nothing else.

Google News

Get PsyPost stories in your Google News feed.

Add PsyPost to Google News
RSS feed

Use your favorite reader.

Copy RSS URL
Social media
Support independent science journalism

Ad-free reading, full archives, and weekly deep dives for members.

Become a member

Trending

  • A man began hearing voices from his body parts after receiving testosterone injections
  • Women globally place higher importance on moral identity than men
  • Could a simple supplement combo help adolescents with ADHD stay on task?
  • Neuroscientists uncover a universal mechanism for human decision making
  • Breathing exercises blunt the body’s physical reaction to acute stress

Science of Money

  • Costly content, cheap imitation, and the incentive problem for AI platforms
  • When a “good economy” feels worse: How economic optimism can deepen a sense of powerlessness
  • When kids pick between gambles, what looks like risk aversion is often something else entirely
  • When Bitcoin miners race and lose: the hidden energy cost of near-simultaneous wins
  • Early career stability is linked to savings and homeownership, even after accounting for income

Recent

  • Sexually assertive individuals tend to be more satisfied with their relationships, study finds
  • Early antidepressant use is linked to higher levels of sexual boredom
  • Men face an elevated risk of suicide immediately following a relationship breakdown
  • Taxi and ambulance drivers show significantly lower Alzheimer’s risk in national mortality study
  • Lower-class employees face greater professional backlash for negotiating their salaries
  • Brain scans reveal two distinct biological profiles of migraine
  • Brain scans reveal lasting tissue and chemical changes in both long COVID and recovered patients
  • Children can understand falsification through evidence as early as age 4
  • A man began hearing voices from his body parts after receiving testosterone injections
  • Brains of teens with depression remain on high alert to social rejection

PsyPost is a psychology and neuroscience news website dedicated to reporting the latest research on human behavior, cognition, and society. (READ MORE...)

  • Mental Health
  • Neuroimaging
  • Personality Psychology
  • Social Psychology
  • Artificial Intelligence
  • Cognitive Science
  • Psychopharmacology
  • Contact us
  • Disclaimer
  • Privacy policy
  • Terms and conditions

(c) PsyPost Media Inc

Welcome Back!

Login to your account below

Forgotten Password?

Retrieve your password

Please enter your username or email address to reset your password.

Log In

Add New Playlist

Subscribe
  • My Account
  • Cognitive Science Research
  • Mental Health Research
  • Social Psychology Research
  • Drug Research
  • Relationship Research
  • About PsyPost
  • Contact
  • Privacy Policy

(c) PsyPost Media Inc