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FDA Spotlights Commitments to Precision Medicine, Biomarkers

Two recent approvals underscore what the FDA says is its commitment to precision medicine treatments—a commitment the agency yesterday said it will carry out by expanding master protocols, case studies, and biomarker qualification standards. In a post on FDA’s

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Two recent approvals underscore what the FDA says is its commitment to precision medicine treatments—a commitment the agency yesterday said it will carry out by expanding master protocols, case studies, and biomarker qualification standards.

In a post on FDA’s blog, Janet Woodcock, M.D., director of the agency’s Center for Drug Evaluation and Research (CDER), cited the May approvals of new indications for Merck & Co.’s cancer-fighting anti-programmed cell death protein 1 monoclonal antibody Keytruda® (pembrolizumab) and Vertex Pharmaceuticals’ cystic fibrosis treatment Kalydeco® (ivacaftor).

Keytruda won accelerated approval for pediatric and adult patients with unresectable or metastatic microsatellite instability-high (MSI-H) or mismatch repair solid tumors that have progressed following prior treatment and for which there is no suitable alternative therapy and colorectal cancer that has progressed following therapy with fluoropyrimidine, oxaliplatin, and irinotecan.

More significant, as the FDA noted at the time, the Keytruda additional approval was granted based on tumor response rates and durability of response, with continued approval to depend upon data from confirmatory trials.

A week earlier, the FDA approved Kalydeco for people with cystic fibrosis ages 2 and older who have one of 23 residual function mutations in the cystic fibrosis transmembrane conductance regulator (CFTR) gene. That approval was based on analyses of in vitro data and supported by more than five years of clinical data, Vertex said at the time.

“(CDER) has approved more than 25 new drugs that benefit patients with specific genetic characteristics. And we have approved many more new uses—also based on specific genetic characteristics—for drugs already on the market,” Dr. Woodcock stated. “Precision medicine holds great promise, but to continue developing targeted therapies, we will need scientific advances in the use and development of ‘biomarkers'.”

Focus on Biomarkers

To that end, Dr. Woodcock and Lisa M. LaVange, Ph.D., director of CDER’s Office of Biostatistics Organization, wrote a review article published earlier this month in The New England Journal of Medicine (“Master Protocols to Study Multiple Therapies, Multiple Diseases, or Both”) discussing master protocols for clinical trials, designed to “evaluate more than one or two treatments in more than one patient type or disease within the same overall trial structure.”

More master protocols have been developed for studies of cancer therapy than other therapeutic areas, Drs. Woodcock and LaVange noted, due to advances in identifying tumor subtypes or mutations. One such protocol is I-SPY 2, an exploratory-phase platform trial designed to investigate new treatments for biomarker-identified subtypes of early-stage breast cancer in the context of neoadjuvant therapy.

I-SPY 2 has been used for evaluating 12 therapies from nine sponsors as of March, of which five have advanced for further study, according to the authors—with discussion under way on an I-SPY 3 master protocol designed to provide evidence of effectiveness for therapies that successfully complete I-SPY 2.

Master protocols, Drs. Woodcock and LaVange wrote, are also distinguished by two types of innovation: One is the use of a trial network capable of streamlining trial logistics, improving data quality, and facilitating data collection and sharing. The other is the use of a common protocol that incorporates statistical approaches to study design and data analysis, enabling a broader set of objectives to be met more effectively than would be possible in independent trials.

Under the 21st Century Cures Act, enacted last year, the FDA was required to establish a qualification process for “drug development tools,” a category that includes biomarkers as well as clinical outcome assessments.

The agency has since created a Biomarker Qualification Program, through which biomarkers can be qualified for use “in any drug development program under the context for which it obtained qualification.” The qualification process consists of three stages: initiation, consultation, and advice, including preparation and submission of an initial briefing package; and review of the full qualification package.

As part of the program, CDER last month posted on FDA’s website fictional case studies “intended to help patients, patient advocacy groups, health professionals, small businesses, and pharmaceutical and clinical innovators learn more about the role of biomarkers and biomarker qualification in drug development.”

Connected reading

Helpful context for this guide

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Related questions

01What 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 ↗
02What is cystic fibrosis? A Mayo Clinic expert explains

Learn more from pulmonologist Sarah Chalmers, M.D. Cystic fibrosis (CF) is a condition passed down in families that causes damage to the lungs, digestive system and other organs in the body. CF affects the cells that make mucus, sweat and digestive juices. These fluids, also called secretions, are usually thin and slippery to protect the body's internal tubes and ducts and make them smooth pathways. But in people with CF, a changed gene causes the secretions to become sticky and thick. The secretions plug up pathways, especially in the lungs and pancreas. CF gets worse over time and needs daily care, but people with CF usually can attend school and work. They often have a better quality of life than people with CF had in past decades. Better screening and treatments mean that people with CF now may live into their mid- to late 50s or longer, and some are being diagnosed later in life.

Source: www.mayoclinic.org ↗
03What 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 ↗
04What do the results mean?

Chloride in sweat is measured in mmol/L (millimoles of chloride per liter of sweat):

Source: medlineplus.gov ↗
05How Do I Know if Alyftrek Is Working?

Your health care provider will monitor your progress while you are taking Alyftrek to make sure the treatment is effective. One key test used to measure progress is lung function testing (like FEV₁%), which checks how well your lungs are working. If Alyftrek is working, your FEV₁% may get better or remain the same over time. Another important measure is sweat chloride levels. Higher sweat chloride levels are a sign of cystic fibrosis, and Alyftrek may help lower these levels by helping the CFTR protein work better. Your health care provider may order sweat chloride tests to track improvements. In addition to lab tests, you may notice fewer lung infections, better breathing, less coughing, and increased energy levels. Your health care provider will also monitor for any side effects and may adjust your treatment plan if needed. Always follow up with your health care team to discuss any changes in symptoms or concerns about your treatment. Do not stop taking Alyftrek without talking to your health care provider first. Your symptoms may get worse again if you stop or change any of your medicines.

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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Peptide Therapy Guide Editorial Team

Editorial team for Peptide Therapy Guide.

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