Bluesky Facebook Reddit Email

Overlooked part of brain could play critical role in addiction recovery

08.24.23 | Indiana University School of Medicine

Apple iPhone 17 Pro

Apple iPhone 17 Pro delivers top performance and advanced cameras for field documentation, data collection, and secure research communications.

INDIANAPOLIS—Researchers from Indiana University School of Medicine have discovered a neglected brain region that could play a critical role in how likely a person with drug use disorders is to relapse, even after a long withdrawal period. Their findings were published recently in Biological Psychiatry .

“Past studies in the field of addiction research have focused on the medial prefrontal cortex, which is the part of the brain that controls decision making, but no effective prevention or treatment for drug relapse is available,” said Yao-Ying Ma, MD, PhD , associate professor of pharmacology and toxicology and an investigator with the Stark Neurosciences Research Institute at IU School of Medicine . “We focused instead on the supplementary motor cortex, and found this area plays a bigger role in the risk of relapse. It could be a new target for therapeutics to prevent relapse.”

Researchers studied cocaine-seeking behaviors in animal models, measuring excitability levels in the motor cortex after 45 days of withdrawal. They found hyperexcitability in the motor cortex was increased at this point and used an intervention to calm the excitability taking place in that part of the brain.

“One of the biggest challenges for patients with addiction is preventing relapse,” Ma said. “We know they need medication, community involvement, psychological support and other resources to help, but for many people who go back to take a drug, it just feels like an automatic behavior. If we can understand whether addiction behavior is subconscious or conscious behavior, we can find better ways to treat and prevent addiction and relapse.”

The supplementary motor cortex is typically known for directing how the body moves, so Ma said the finding that it plays a big role in addiction is novel and exciting.

“This brain region has never really gotten too much attention in addiction research, so we’re excited about this finding and how it can change the way we treat addiction by using less invasive methods, such as transcranial magnetic stimulation, as well as the trajectory of our work moving forward,” Ma said.

In the future, the team will study the effect of other addictive substances to see if the supplementary motor cortex is involved in other types of drug use disorders, such as opioid and alcohol use disorders.

The first author of the study, Donald Huang, was Ma’s PhD student. Huang recently received his PhD in Medical Neuroscience from IU School of Medicine and now works as a postdoctoral researcher at the University of Chicago.

About Indiana University School of Medicine

IU School of Medicine is the largest medical school in the U.S. and is annually ranked among the top medical schools in the nation by U.S. News & World Report. The school offers high-quality medical education, access to leading medical research and rich campus life in nine Indiana cities, including rural and urban locations consistently recognized for livability.

Biological Psychiatry

10.1016/j.biopsych.2023.06.002

Increased Excitability of Layer 2 Cortical Pyramidal Neurons in the Supplementary Motor Cortex Underlies High Cocaine-Seeking Behaviors

15-Jun-2023

Keywords

Article Information

Contact Information

Christina Griffiths
Indiana University School of Medicine
griffchm@iu.edu

Source

How to Cite This Article

APA:
Indiana University School of Medicine. (2023, August 24). Overlooked part of brain could play critical role in addiction recovery. Brightsurf News. https://www.brightsurf.com/news/19NWGPJ1/overlooked-part-of-brain-could-play-critical-role-in-addiction-recovery.html
MLA:
"Overlooked part of brain could play critical role in addiction recovery." Brightsurf News, Aug. 24 2023, https://www.brightsurf.com/news/19NWGPJ1/overlooked-part-of-brain-could-play-critical-role-in-addiction-recovery.html.