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Pulmonary Edema Could Be Countered by Cystic Fibrosis Drug

Attempts to treat pneumonia typically focus on pneumonia-causing pathogens. However, at Charité–Universitätsmedizin Berlin, researchers have been exploring a different approach. They are trying to strengthen the barrier function that is performed by the lungs’

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Attempts to treat pneumonia typically focus on pneumonia-causing pathogens. However, at Charité–Universitätsmedizin Berlin, researchers have been exploring a different approach. They are trying to strengthen the barrier function that is performed by the lungs’ blood vessels. These blood vessels, the researchers point out, are the source of the fluid in pneumonia—the fluid that can lead to pulmonary edema and acute respiratory distress syndrome (ARDS).

According to Prof. Dr. Wolfgang Kuebler, the scientist who is leading the researchers as director of Charité’s Institute of Physiology, a new approach is needed because pathogens such as SARS-CoV-2 and pneumococcus are continuing to wreak so much havoc. When these pathogens cause infections, the lungs’ blood vessels can become so permeable that airspaces fill with fluid instead of air, diminishing the exchange of gases. Getting enough oxygen becomes a struggle.

“Despite cutting-edge medical procedures, roughly 40% of patients with ARDS die in intensive care,” Kuebler observes. “The problem is that antibiotics, antivirals, and immune modulating therapies rarely work well enough. That’s why we took a very different approach in our study.”

Kuebler and colleagues uncovered the molecular mechanisms that cause barrier failure and fluid accumulation in the lungs. Then the scientists exploited these mechanisms to identify a potential new therapy: a cystic fibrosis drug called ivacaftor. The drug, a potentiator of the cystic fibrosis transmembrane conductance regulator (CFTR), proved effective in laboratory experiments, raising hope that it could be used to treat pneumonia regardless of the pathogen that caused it.

This work was reported recently in the journal Science Translational Medicine, in an article titled, “Loss of endothelial CFTR drives barrier failure and edema formation in lung infection and can be targeted by CFTR potentiation.”

“[We] identified loss of endothelial CFTR as an important pathomechanism leading to lung barrier failure in pneumonia-induced ARDS,” the article’s authors wrote. “CFTR was down-regulated after Streptococcus pneumoniae infection ex vivo or in vivo in human or murine lung tissue, respectively.”

“The CFTR potentiator ivacaftor prevented lung CFTR loss, edema, and protein leak after S. pneumoniae infection in wild-type mice,” they continued. “Ivacaftor prevented CFTR loss in the lungs of mice with pneumonia and may, therefore, represent a possible therapeutic strategy in people suffering from ARDS due to severe pneumonia.”

The CFTR chloride channel is mainly found in the mucosal cells of our airways. There, it plays a major role in keeping our mucus thin so it can drain away easily. The researchers have now shown for the first time that cells in the blood vessels of the lungs also have CFTR and that its presence is drastically reduced in pneumonia.

To find out what role CFTR plays in the pulmonary vessels and what is happening at the molecular level when the chloride channel is lost, the researchers blocked the channel with an inhibitor and dictated the number of chloride ions in the cells. They then used a special imaging technique known as immunofluorescence imaging.

“We saw that inhibiting CFTR triggered a molecular cascade that ultimately causes the lung’s blood vessels to begin leaking,” said lead author Lasti Erfinanda, PhD, a postdoc with Kuebler’s team at the Institute of Physiology. “So, CFTR actually does play a very key role in the development of pulmonary edema.”

The study’s findings indicate that the loss of CFTR causes chloride to accumulate in the cells because it stops being transported out of them. The excess chloride triggers signaling that ends with an uncontrolled flow of calcium into the cells via a calcium channel.

“The increased calcium concentration then causes the vascular cells to contract—much like the effect that calcium has on muscle cells,” explained Kuebler. “This results in gaps between the cells—which allows fluid to spill out of the blood vessels. Chloride channels are therefore crucial in maintaining the barrier function of the pulmonary vessels.”

The research team then addressed another question: How could they attenuate or prevent the pneumonia-induced loss of chloride channels in the pulmonary vessels? To answer this, the researchers used a therapeutic agent that is classed as a CFTR modulator and currently used to treat cystic fibrosis.

In cystic fibrosis patients, a genetic mutation prevents the CFTR chloride channel from working properly in the mucosal cells of the airways, resulting in very viscous mucus. “Ivacaftor is a drug that increases the chances of the chloride channel opening, which helps the mucus to flow through the airways,” Erfinanda explained. “We wanted to see if it would also have a positive effect on the cells in the blood vessels of the lungs.”

Ivacaftor did make the chloride channels more stable: it led to less degradation in the channels than that typically caused by the lung’s inflammatory processes. Experiments on animal models showed the same effect: treatment with ivacaftor increased the probability of surviving severe pneumonia, reduced lung injury, and resulted in much milder symptoms and a much better general condition than without the drug.

“We really weren’t expecting it to work so well,” Kuebler remarked. “We hope our findings will pave the way for clinical trials to test the efficacy of CFTR modulators in pneumonia patients. If this promising, pathogen-independent therapy finds its way into clinical practice, it could benefit a huge number of patients and prevent pneumonia from becoming life-threatening—even in the case of unknown pathogens.”

Kuebler and his team are now planning research projects aimed at developing other potential therapies based on the CFTR signaling pathway. They are also going to research which patients have an elevated risk of developing ARDS, so they can provide these patients with preventive, personalized treatment.

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Helpful context for this guide

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Related questions

01When to see a doctor

If you or your child has symptoms of cystic fibrosis — or if someone in your family has CF — talk with your healthcare professional about testing for the condition. Make an appointment with a doctor who has skills and experience in treating CF. CF requires regular follow-up with your healthcare professional, at least every three months. Call your healthcare professional if you have new or worsening symptoms, such as more mucus than usual or a change in the mucus color, lack of energy, weight loss, or severe constipation. Get medical care right away if you're coughing up blood, have chest pain or trouble breathing, or have severe stomach pain and bloating. Call 911 or your local emergency number or go to the emergency department at a hospital if: You're having a hard time catching your breath or talking. Your lips or fingernails turn blue or gray. Others notice that you're not mentally alert.

Source: www.mayoclinic.org ↗
02What Is Cystic Fibrosis?

Cystic fibrosis (CF) is a genetic disorder, which means you get it from your parents at birth. It affects your lungs, pancreas, and other organs. CF changes the way chloride (salt) moves through the cells of your body. This causes the mucus (which should be thin and slippery) in various organs to become thick and sticky. Over time, this thick mucus builds up inside your airways, making it hard to breathe. The mucus traps germs and leads to infections and inflammation. It can also cause severe, long-term damage to the lungs and lead to respiratory failure (inability to breathe normally) and death. In the pancreas, the thick mucus caused by CF prevents the release of digestive enzymes when you eat. This leads to malnutrition and poor growth. CF can also cause liver disease, reproductive problems, and cystic fibrosis-related diabetes (CFRD). More than 40,000 people in the U.S. live with CF. Doctors diagnose about 1,000 new cases each year. Today, more than half of the CF population is aged 18 or older, and new treatments have expanded the life expectancy by decades.

Source: www.webmd.com ↗
03What to expect from your doctor

After getting detailed information about the symptoms and your family's medical history, your healthcare professional may order tests to help with diagnosis and plan treatment. Your healthcare professional also may ask questions, such as: What symptoms are you or your child having? When did the symptoms start? Does anything make the symptoms better or worse? Has anyone in your family ever had cystic fibrosis? Has growth been average and weight been stable? Cystic fibrosis. National Heart, Lung, and Blood Institute. https://www.nhlbi.nih.gov/health/cystic-fibrosis. Accessed Aug. 8, 2024. Bronchiectasis. National Heart, Lung, and Blood Institute. https://www.nhlbi.nih.gov/health/bronchiectasis. Accessed Aug. 8, 2024. FAQs: Cystic fibrosis: Prenatal screening and diagnosis. American College of Obstetricians and Gynecologists. https://www.acog.org/womens-health/faqs/cystic-fibrosis-prenatal-screening-and-diagnosis. Accessed Aug. 8, 2024. Ferri FF. Cystic fibrosis. In: Ferri's Clinical Advisor 2025. Elsevier; 2025. https://www.clinicalkey.com. Accessed Aug. 8, 2024. Kliegman RM, et al., eds. Cystic fibrosis. In: Nelson Textbook of Pediatrics. 22nd ed. Elsevier; 2025. https://www.clinicalkey.com. Accessed Aug. 8, 2024. Kellerman RD, et al. Cystic fibrosis. In: Conn's Current Therapy 2024. Elsevier; 2024. https://www.clinicalkey.com. Accessed Aug. 8, 2024. Lockwood CJ, et al., eds. Respiratory diseases in pregnancy. In: Creasy and Resnik's Maternal-Fetal Medicine: Principles and Practice. 9th ed. Elsevier; 2023. https://www.clinicalkey.com. Accessed Aug. 8, 2024. Ong T, et al. Cystic fibrosis: A review. JAMA. 2023; doi:10.1001/jama.2023.8120. Rubin R. Tackling the misconception that cystic fibrosis is a "white people's disease." JAMA. 2021; doi:10.1001/jama.2021.5086. Care centers. Cystic Fibrosis Foundation. https://www.cff.org/managing-cf/care-centers. Accessed Aug. 8, 2024. Trikafta (prescribing information). Vertex Pharmaceuticals Inc.; 2023. https://www.trikafta.com/. Accessed Aug. 8, 2024. Symdeko (prescribing information). Vertex Pharmaceuticals Inc.; 2023. https://www.symdeko.com/. Accessed Aug. 8, 2024. Orkambi (prescribing information). Vertex Pharmaceuticals Inc.; 2023. https://www.orkambi.com/. Accessed Aug. 8, 2024. Kalydeco (prescribing information). Vertex Pharmaceuticals Inc.; 2023. https://www.kalydeco.com/. Accessed Aug. 8, 2024. Pilewski JM. Update on lung transplantation for cystic fibrosis. Clinics in Chest Medicine. 2022; doi:10.1016/j.ccm.2022.07.002. Fridell JA, et al. Pancreas transplantation for cystic fibrosis: A frequently missed opportunity. Clinical Transplantation. 2021; doi:10.1111/ctr.14371. Wadsworth LE, et al. Non-invasive ventilation is associated with long-term improvements in lung function and gas exchange in cystic fibrosis adults with hypercapnic respiratory failure. Journal of Cystic Fibrosis. 2021; doi:10.1016/j.jcf.2021.05.011. Allscripts EPSi. Mayo Clinic. Medical review (expert opinion). Mayo Clinic. Oct. 18, 2024.

Source: www.mayoclinic.org ↗
04Are there any risks to the test?

There is no known risk to a sweat test. The electrode may cause a tingling or tickling sensation from the electric current, but this is not painful.

Source: medlineplus.gov ↗
05How Does Alyftrek Work?

Alyftrek is a type of medicine called a CFTR modulator. Alyftrek is designed to help make the broken CFTR protein in people with cystic fibrosis work better. Since different genetic mutations can cause different types of problems with the protein, the medicines available today only work for people with certain mutations. Alyftrek is approved for people who have at least one F508del mutation or another responsive mutation in the CFTR gene. Alyftrek contains three active ingredients (vanzacaftor, tezacaftor, and deutivacaftor) that work together to help the CFTR protein work better. Vanzacaftor and tezacaftor help the CFTR protein fold correctly and move to the cell surface, while deutivacaftor increases CFTR activity to lower the buildup of mucus. By helping CFTR work better, Alyftrek helps thin mucus in the lungs and other organs, making it easier to clear and reducing complications of cystic fibrosis.

Source: www.webmd.com ↗
Research context

Read sources and limitations before applying a claim.

Research and Statistics: Who Has Cystic Fibrosis?

About 40,000 people are living with cystic fibrosis in the United States, and there are approximately 105,000 people with CF worldwide. (3) More than 75 percent of people with the disease are diagnosed by age 2, and more than half of all people living with cystic fibrosis are 18 or older. CF occurs predominantly in white populations, at a rate of 1 in 2,500 births. Between 2 and 5 percent of white people are carriers of the CFTR gene variant but have no overt clinical signs of disease. The disease is less common among African Americans, occurring at the much lower frequency of approximately 1 out of 17,000 births. (15) CF gene variants are most prevalent in persons of northern and central European ancestries or of Ashkenazi Jewish descent. They are rarely found in Native Americans, Asians, or native Africans. (16) CF is equally common among men and women, but women patients fare significantly worse than male patients with the disease. The median survival age for female CF patients is about three years younger than it is for men, but the reasons for the poorer survival rates among women are not completely understood. (17)

Source: everydayhealth.com ↗
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