addiction

Suppressing Neurons Curbs Withdrawal-Induced Pain Hypersensitivity

Insights From Mouse Study Could Aid Treatment for Opioid Use Disorder

man with neck pain

A headache or stubbed toe is annoying enough as it is, but for people in recovery from opioid use disorder, everyday aches and pains — and even sensations that would ordinarily not be painful at all — can be amped up to the point that they become quite distressing. A new IRP mouse study has helped scientists home in on the specific brain cells that might cause this phenomenon, providing a first step towards an intervention that could make it easier for people to stop using addictive opioid medications or illegal drugs like heroin.

Hunger Hormone Feeds Alcohol Cravings

IRP Researchers Pursue New Approaches to Treating Alcohol Use Disorder

man eating pasta

While most adults in the U.S. consume alcohol in moderation, for nearly 30 million of them, going even one day without alcohol feels nearly impossible. For these Americans, alcohol use disorder (AUD) is a serious condition that harms their health, relationships, and career. Unfortunately, only a small percentage of people with AUD receive treatment, and even then, for many patients, the chances of a relapse are high.

As the search for a reliable and effective treatment continues, IRP senior investigator Lorenzo Leggio, M.D., Ph.D., is exploring the biological processes that underlie alcohol cravings to unlock new approaches to therapy. April is Alcohol Awareness Month, so we took the opportunity to speak with him about recent discoveries made by his IRP team and its collaborators.

Examining the Roots of Opioid Use Disorder

IRP Researchers Are Peering Into the Brain to Learn Why Opioid Drugs Are So Hard to Quit

oxycodone pills and pill bottle

The ancient Egyptians, despite their significant anatomical knowledge, thought the heart was the seat of intelligence. Over the millennia, that view changed as philosophers and scientists alike came to appreciate the extraordinary role of the brain. It is partly thanks to them that we celebrate Brain Awareness Week every March. In honor of this observance, we took the opportunity to talk with IRP senior investigator Yihong Yang, Ph.D., and postdoctoral fellow Ida Fredriksson, Ph.D., Pharm.D., about their investigation into how cravings for opioids build during a period of prolonged abstinence, often leading to relapse.

NIH Scientists Redesign Neurons to Enable Targeted Therapies

New Receptors and Radioactively Labeled Molecules Could Provide Useful Tools for Research and Medicine

neurons firing

Genetically modifying neurons to enable scientists and clinicians to influence brain activity probably sounds like the stuff of science fiction. However, the technology has existed for more than a decade, allowing scientists to make important leaps in understanding how neurons communicate with one another in healthy individuals and those with psychological and neurological conditions. What’s more, recent improvements to these tools developed by researchers led by IRP investigator Mike Michaelides, Ph.D., may allow neurologists to use them to deliver drugs to just the right brain cells to treat those ailments effectively without the side effects caused by current treatments.

Electronic Cigarettes Lure Former Smokers Back to Old Habits

High-Tech Nicotine Delivery Technologies Raise Risk for Relapse

examples of electronic nicotine delivery systems (ENDS)

Scholars have long debated about the use of nuclear power, gene editing, and many other technologies that can have both positive and negative effects on society. Recently, researchers have been having similar discussions about the public health effects of electronic cigarettes. Adding to this debate, a new NIH study highlights a concerning drawback of e-cigarettes by showing they increase the risk that people who have successfully quit smoking will resume using tobacco products.

Postbac Poster Day Goes Virtual

Hundreds of Young Researchers Present Their Work Online

Amy Kwarteng

The COVID-19 pandemic has dramatically altered the way scientists are doing their work. Nevertheless, scientific research is a highly collaborative and interactive enterprise, so it remains essential for researchers to share and discuss their ideas and discoveries.

Every spring, the NIH’s Postbac Poster Day offers recent college graduates participating in the NIH’s Postbaccalaureate IRTA program the chance to show off the fruits of their labors and talk about their projects with both their fellow postbacs and the NIH’s many seasoned scientific veterans. Due to the need to maintain social distancing, the NIH's Office of Intramural Training and Education (OITE) went through considerable effort to move this year’s Postbac Poster Day to an online forum. The OITE staff's hard work paid off handsomely, with more than 870 postbacs presenting their research via WebEx on April 28, 29, and 30. Keep reading for a few examples of the fascinating scientific questions NIH’s latest crop of postbacs has been investigating.

NIH Research Festival Hosts Postdoc Poster-Palooza

Annual Event Highlights Contributions of IRP Postdoctoral Fellows

Dr. Subhash Verma

At lunchtime last Wednesday, the NIH Clinical Center’s FAES Terrace echoed with the joyful sounds of scientists nourishing their bodies and their brains. While those stopping by the annual NIH Research Festival poster session could be forgiven for making a beeline straight for the food — including the submissions to this year’s Scientific Directors’ baking competition — once their plates were full, they took advantage of the opportunity to satiate their scientific curiosity as well by checking out the dozens of posters on display.

Stress-Relieving Chemical Could Combat Alcohol Use Disorder

Targeting Brain’s Stress Circuitry Curbs Rats’ Alcohol Consumption

chemical structure of the oxytocin molecule

For social drinkers, alcohol brings to mind barbecues and bar-hopping with friends, but for the roughly 16 million Americans with alcohol use disorder (AUD), drinking is a source of significant stress. Unfortunately, those negative emotions — particularly those experienced during withdrawal — drive people with AUD to drink even more. A recent IRP study points to a potential way to curb the desire to drink in people who abuse alcohol by altering the behavior of a brain structure that governs negative emotions.

Star-Shaped Brain Cells May Contribute to Marijuana Addiction

astrocytes

The recent spate of state laws legalizing marijuana for medical or recreational purposes has prompted concerns that increased marijuana use will boost the number of people who become dependent on and abuse the drug, a condition known as cannabis use disorder (CUD). Treating the growing number of patients with CUD will require a greater understanding of how chronic marijuana use can lead to addiction. New IRP research has revealed that star-shaped brain cells called astrocytes may play a role in the pleasurable effects of marijuana and contribute to the drug’s addictive properties.

Neuronal Building Block Underlies Alcohol Addiction

3D structure of the NMDA receptor

While many people can easily stop after a beer or two, for others one drink begets many more, ultimately leading to an addiction that drives continuously increasing alcohol consumption over time. New IRP research has identified a specific type of neuronal receptor involved in the development of alcohol dependence in mice, suggesting a possible approach to curbing problematic drinking behaviors in humans addicted to alcohol.