infectious disease

Highlighting NIH’s Newest Lasker Scholars

IRP Program Enhances Research Capabilities of Talented Doctors

Dr. Jeffrey Strich (left) and Dr. Michael Sargen (right)

Just like many important scientific breakthroughs require the expertise of scientists specializing in multiple disciplines, developing new medical treatments requires both laboratory-based investigations into the nitty-gritty details of biology and clinical studies involving patients. In recognition of that fact, the IRP’s Lasker Clinical Research Scholars Program provides incredible support and resources to researchers who conduct both types of studies.

Over the past year, two more doctors have joined the prestigious pantheon of Lasker Scholars at NIH: one pursuing treatments for patients struck by potentially lethal infections and the other aiming to head off dangerous skin cancers before they become life-threatening. Read on to learn about the important research they are pursuing with the winds of the Lasker Program at their backs.

Experimental Antibody Tightens Up Leaky Blood Vessels

Treatment Could Benefit Patients With a Variety of Illnesses

blood vessels

Our blood is a miraculous mix of cells and critical fluids that keep our organs running and fight off dangerous infections. Of course, for blood to do its job, it has to stay in our veins and arteries, which is easier said than done for people with certain illnesses. Fortunately, a recent IRP study has demonstrated the promise of a potential new treatment for people with dangerously leaky blood vessels.

Several life-threatening conditions, including Ebola and sepsis due to an uncontrolled infection, cause the fluid component of blood to leak out of blood vessels. IRP senior investigator Kirk Druey, M.D., however, came to study the phenomenon through a very rare ailment called Clarkson disease, which causes patients to periodically experience ‘flares’ or ‘episodes’ when their veins and arteries suddenly and inexplicably start leaking.

A History of NIH in 12 Objects

Lecture Explains Trinkets’ Links to Important Milestones

watch fob

The history of NIH and its precursor institution, the Hygienic Laboratory, stretches back nearly 140 years — way longer than any human being has ever lived. Even when those who have witnessed history are still around, the fading of memories threatens to erase our knowledge of the past. Fortunately, with proper storage and care, objects like those in the collections of the Office of NIH History and Stetten Museum can last hundreds of years, providing enduring reminders of important historical milestones.

On December 11, Stetten Museum curator Michele Lyons used a dozen such objects to describe the evolution of NIH from its origins to the modern day. Her presentation touched on topics ranging from NIH’s founding in New York to its key role in creating national standards for heart valve replacement surgery to the American AIDS crisis of the 1980s and 1990s.

Seeking Antibiotic Alternatives to Annihilate Infections

IRP’s Darryl Zeldin Investigates New Ways to Combat Bacterial Pneumonia

a pile of pills

Our immune system is supposed to block infections like pneumonia, and in most instances, it does. Even so, nearly 1 million Americans each year become sick enough from pneumonia to require a visit to the hospital, and for about 50,000, the lung infection is deadly.

Multiple types of infectious organisms can cause pneumonia, and doctors use antibiotics to treat cases caused by bacteria. Unfortunately, bacteria are resilient organisms that have waged an evolutionary battle against our antibiotics ever since penicillin was first discovered, leading to alarming rates of antibiotic-resistant infections. It’s no wonder, then, that the public health community calls attention to this life-threatening conundrum each November during Antibiotic Awareness Week.

Fighting the Fungus Among Us

Overactive Immune Response Sets Stage for Infection

various fungi growing in a petri dish

Fungal infections are a serious medical threat to many people, especially those who are critically ill or have weakened immune systems. What’s more, outbreaks are on the rise, as studies show that rising global temperatures are causing fungi to evolve into new strains and grow in regions that were once too cold for comfort. Recent outbreaks include a tragic incident at a Michigan paper mill that sickened nearly 100 people and caused one death, as well as a cluster of fungal infections that have killed at least seven women who underwent cosmetic surgery at clinics in Mexico.

Commemorating Fungal Disease Awareness Week this week brings attention to the importance of combating fungal threats to our well-being. The theme this year is ‘Think Fungus,’ and that’s exactly what IRP senior investigator Michail Lionakis, M.D., Sc.D., has been doing for the last 20 years.

Preventing Cellular Rust Hinders Tuberculosis

Study Suggests New Treatment Approach for Deadly Lung Infection

tuberculosis bacteria

Oxygen is, quite literally, the air we breathe (or, more accurately, 21 percent of it). However, just as oxygen in the air can turn a handy garden tool into a useless hunk of rust, certain unstable, oxygen-containing molecules in our bodies can wreak havoc on our cells. According to new IRP research, revving up cellular systems that prevent this kind of damage could significantly improve outcomes for people with tuberculosis.

NIH Mourns the Passing of Ji Ming Wang

Dr. Ji Ming Wang

The IRP community is profoundly saddened by the recent passing of Ji Ming Wang, M.D., Ph.D., Senior Investigator and Head of the Chemoattractant Receptor and Signal Section in the Cancer Innovation Laboratory at NIH's National Cancer Institute (NCI). He died unexpectedly on December 24, 2022.

Dr. Wang studied the role of chemoattractant receptors in infection, inflammation, immune responses and cancer progression for over 30 years. In 1998, Ji Ming was the first to identify a critical role for the receptors in mediating cancer cell metastasis to distant organs. His later work focused on leukocyte infiltration, a hallmark of inflammation and cancer progression.

A Year of Honors for IRP Cancer Researchers

Four NIH Scientists Received Prestigious Recognition in 2022

clockwise from top-left: Dr. Michael Lichten, Dr. Susan Lea, Dr. Kandice Tanner, and Dr. Deborah Morrison

The complexities of cancer, which is actually a collection of many diseases, has made conquering it an enormous challenge. Fortunately, researchers in the NIH Intramural Research Program are up to the task. This year, four IRP investigators in NIH’s National Cancer Institute (NCI) have been recognized for their groundbreaking contributions to answering fundamental questions about the disease and the immune system’s response to similar threats.

Leading the Charge Against Infectious Disease

Government Awards Recognize H. Clifford Lane’s Four Decades of Research Achievements

Dr. H. Clifford Lane

The remarkable career of H. Clifford Lane, M.D., might have gone very differently if a NIH scientist hadn’t accidentally eavesdropped on Dr. Lane’s conversation with a colleague in 1979. After hearing Dr. Lane mention that he had missed the deadline to apply for a position at NIH, the NIH researcher made some calls and discovered a spot there had just opened up — one that was perfect for Dr. Lane, who would spend the ensuing decades conducting life-saving research to understand and combat some of the world’s most dangerous infectious diseases.

Now the Clinical Director at the National Institute for Allergy and Infectious Disease (NIAID), Dr. Lane has been named a finalist for the 2022 Samuel J. Heyman Service to America Medals’ Career Achievement Award in recognition of his crucial contributions to the fight against HIV/AIDS, Ebola, COVID-19, and other illnesses. Also known as the “Sammies,” the awards recognize federal employees who are “breaking down barriers, overcoming huge challenges, and getting results.”

IRP’s Carolina Barillas-Mury Elected to National Academy of Medicine

NIH Researcher Recognized for Important Insights Into Malaria Transmission

Dr. Carolina Barillas-Mury

In many parts of the world, the high-pitched buzz of a mosquito is a harbinger of more than an annoying itch — it’s a warning of possible malaria infection. Malaria, a disease spread by mosquitos that causes high fever and flu-like illness, is a serious risk for nearly half of the world’s population. According to the World Health Organization, there were 241 million cases of malaria and 627,000 deaths in 2020 alone. More than 95 percent of them occurred in Africa.

Efforts to combat malaria using measures like preventative treatments and environmental mitigation have helped to reduce infections and deaths over the past decade, but those improvements have recently plateaued, according to IRP Distinguished Investigator Carolina Barillas-Mury, M.D., Ph.D., section chief in the Laboratory of Malaria and Vector Research in the National Institute of Allergy and Infectious Diseases (NIAID).