University of Pennsylvania

08/16/2024 | Press release | Distributed by Public on 08/16/2024 09:02

Unveiling the brain’s reward circuitry

New research from Penn Nursing has made a significant breakthrough in understanding the complex neural circuitry underlying reward and addiction. Researchers identified 34 distinct subtypes of medium spiny neurons (MSNs) in the nucleus accumbens (NAc), a key brain region involved in pleasure and motivation. The findings, published in Scientific Reports by Nature, offer insights into the diversity of these neurons and their potential roles in substance use disorders.

Image: iStock/onimate

MSNs are the primary type of neuron in the NAc and have long been classified based on their expression of dopamine receptors. However, this new research reveals a far more intricate picture of MSN diversity. By analyzing a massive dataset of single-nucleus RNA sequencing data from rat brains, the researchers identified 34 distinct MSN subtypes, each with its own unique genetic profile.

"Our study challenges the traditional view of MSNs as a homogenous population," says co-lead author Heath D. Schmidt,professor in Penn Nursing's Department of Biobehavioral Health Sciences. "By uncovering this level of diversity, we can begin to understand how specific MSN subtypes contribute to different aspects of reward processing and addiction."

The researchers have also found that these MSN subtypes are conserved across species, suggesting that the findings may have broad implications for human brain function and behavior. Additionally, by analyzing genetic data linked to substance use disorders, the team identified potential differences in the roles of specific MSN subtypes in these conditions.

Read more at Penn Nursing News.