U.S. Food and Drug Administration Accepts Bristol Myers Squibb’s New Drug Application for Iberdomide in Patients with Relapsed or Refractory Multiple Myeloma

On February 17, 2026 Bristol Myers Squibb (NYSE: BMY) reported that the U.S. Food and Drug Administration (FDA) has accepted a New Drug Application (NDA) for iberdomide combined with standard treatment (daratumumab + dexamethasone – IberDd) in patients with relapsed or refractory multiple myeloma (RRMM). Iberdomide is part of an investigational, new class of medicines called cereblon E3 ligase modulator (CELMoD) agents. The FDA has granted a Prescription Drug User Fee Act (PDUFA) date of August 17, 2026 for this indication.

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"The FDA’s acceptance of this application is a testament to the potential of iberdomide, in combination with anti-CD38 monoclonal antibodies, as a novel, potent, oral treatment option, with a manageable safety profile, for patients with multiple myeloma," said Cristian Massacesi, executive vice president and chief medical officer, Bristol Myers Squibb. "Furthermore, our filing for iberdomide based on the MRD endpoint, underscores our commitment to pioneering new ways of advancing life-saving therapies for patients living with cancer."

The filing was based on results from a planned analysis of MRD negativity rates in the Phase 3 EXCALIBER-RRMM study evaluating iberdomide as a treatment for RRMM patients. The EXCALIBER-RRMM trial is ongoing and patients continue to be evaluated for progression-free survival (PFS).

The FDA also granted Breakthrough Therapy designation for iberdomide based on these data.

This review is being conducted under the FDA’s Project Orbis initiative, which enables concurrent review by the health authorities in several other countries.

Bristol Myers Squibb thanks the patients and investigators involved with the Phase 3 EXCALIBER study.

About EXCALIBER-RRMM

EXCALIBER-RRMM (NCT04975997) is a Phase 3, multicenter, two-stage, randomized, open-label study evaluating the efficacy and safety of iberdomide in combination with daratumumab and dexamethasone (IberDd) versus daratumumab, bortezomib, and dexamethasone (DVd) in patients with relapsed or refractory multiple myeloma (RRMM). The study is designed to assess dual-primary endpoints of minimal residual disease (MRD) negativity and progression-free survival (PFS), with additional secondary endpoints including overall survival (OS), overall response rate (ORR), duration of response (DoR), time to progression (TTP), time to next treatment (TTNT), and health-related quality of life (HR-QoL). Stage 1 of the study identified 1.0 mg iberdomide as the optimal dose based on safety, pharmacokinetics, and efficacy data. In Stage 2, approximately 664 patients were randomized to receive either IberDd or DVd.

About Minimal Residual Disease (MRD)

Minimal residual disease (MRD) refers to the small number of cancer cells that may remain in a patient’s body after treatment and are undetectable using conventional diagnostic methods. In multiple myeloma, MRD assessment has emerged as a highly sensitive and clinically meaningful tool for evaluating treatment response. MRD negativity does not necessarily mean all cancer cells are gone, but it may predict improved clinical outcomes, including longer remission and survival.

Modern MRD detection methods, such as next-generation sequencing (NGS) and next-generation flow cytometry (NGF), can identify one malignant cell among 100,000 (threshold for MRD) to 1,000,000 normal cells, offering unprecedented precision in measuring disease burden. MRD is increasingly being used in clinical trials as a surrogate endpoint for progression-free survival (PFS) and is gaining recognition from regulatory authorities for its role in accelerating therapeutic development.

About Targeted Protein Degradation and Novel CELMoD Agents

Targeted protein degradation (TPD) is a differentiated research platform at Bristol Myers Squibb built on more than two decades of scientific expertise, providing new avenues to degrade therapeutically relevant proteins that were previously considered "undruggable." BMS is the only company that has successfully developed and commercialized protein degrader agents for the treatment of multiple myeloma. These agents, known as immunomodulatory drugs (IMiDs), helped establish the current standard of care in the treatment of this disease, which remains without a cure. BMS is building on this foundation with several investigational protein degraders in clinical trials, leveraging three different modalities including CELMoD agents, ligand-directed degraders (LDDs), and degrader antibody conjugates (DACs). This three-pronged approach enables matching the right therapeutic modality to a molecular mechanism of action to modulate targets most effectively and ultimately provide more opportunities for potential breakthroughs that may offer meaningful new options for patients across a broad range of diseases, in and beyond hematology and oncology. Learn more about the science behind TPD at Bristol Myers Squibb here.

BioCryst to Present at Upcoming Investor Conference

On February 17, 2026 BioCryst Pharmaceuticals, Inc. (Nasdaq: BCRX) reported that the company plans to present at the T.D. Cowen 46th Annual Health Care Conference in Boston on Tuesday, March 3, 2026, at 9:10 a.m. ET.

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The link to the live audio webcast and replay of the presentation may be accessed in the Investors & Media section of BioCryst’s website at www.biocryst.com.

(Press release, BioCryst Pharmaceuticals, FEB 17, 2026, View Source [SID1234662704])

Clinical Utility of bioAffinity Technologies’ CyPath® Lung Test Demonstrated in Real-World Case Study

On February 17, 2026 bioAffinity Technologies, Inc. (Nasdaq: BIAF; BIAFW), a biotechnology company advancing noninvasive diagnostics for lung cancer and other lung diseases, reported a new clinical case study demonstrating how CyPath Lung, its noninvasive diagnostic test for lung cancer, supported clinical decision-making in a high-risk patient with multiple pulmonary nodules.

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The 59-year-old patient had a 30-year, three packs per day smoking history and underlying chronic obstructive pulmonary disease (COPD). Imaging revealed multiple scattered pulmonary nodules measuring between 3–7 mm and categorized as Lung-RADS 3 on the Lung Imaging Reporting and Data System (Lung-RADS), indicating a probably benign condition.

"Determining appropriate care for a patient with multiple nodules and a significant smoking history is often complicated by patient anxiety and concern about an ongoing risk of malignancy," said Daya Nadarajah, MD, the patient’s pulmonologist. "Follow-up can be problematic without the additional diagnostic information provided by CyPath Lung. A negative CyPath Lung result helps reassure both physician and patient that an early cancer is unlikely to have been missed."

Dr. Nadarajah ordered a CyPath Lung test for his patient, which returned a negative result of "unlikely malignancy." The CyPath Lung score gave both physician and patient additional confidence to continue a serial six-month CT surveillance schedule, consistent with Lung-RADS 3 recommendations. In a follow-up CT scan, the sub-centimeter nodules remained stable.

"Patients with multiple small nodules and many years of tobacco use often face months of uncertainty and fear," said Gordon Downie, MD, PhD, bioAffinity Technologies Chief Medical Officer. "CyPath Lung provides physicians with additional, objective information that helps stratify risk and supports confident clinical decision-making while maintaining appropriate vigilance for patients at high risk for lung cancer."

Supporting Confident, Noninvasive Management

This case illustrates the benefit of using CyPath Lung as an adjunctive diagnostic tool for managing indeterminate pulmonary nodules – particularly in high-risk smokers – by:

● Supporting evidence-based surveillance decisions
● Reinforcing guideline-consistent follow-up intervals
● Potentially reducing invasive procedures on benign nodules
● Helping alleviate patient anxiety

About CyPath Lung

CyPath Lung by bioAffinity Technologies is a noninvasive test designed to improve the early detection of lung cancer in patients at high risk for the disease. CyPath Lung uses advanced flow cytometry and proprietary artificial intelligence (AI) to identify cell populations in patient sputum that indicate malignancy. CyPath Lung incorporates a fluorescent porphyrin that is preferentially taken up by cancer and cancer-related cells. Clinical study results demonstrated 92% sensitivity, 87% specificity and 88% accuracy in detecting lung cancer in patients at high risk for the disease who had small indeterminate lung nodules less than 20 millimeters.

(Press release, BioAffinity Technologies, FEB 17, 2026, View Source [SID1234662703])

Aprea Therapeutics to Present at Oppenheimer 36th Annual Healthcare Life Sciences Conference

On February 17, 2026 Aprea Therapeutics, Inc. (Nasdaq: APRE) ("Aprea" or the "Company"), a clinical-stage biopharmaceutical company developing innovative therapies that exploit cancer-specific vulnerabilities while minimizing damage to healthy cells, reported that Oren Gilad, Ph.D., President and CEO, will provide a corporate update at the Oppenheimer 36th Annual Healthcare Life Sciences Conference, to take place February 25-26, 2026, virtually.

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Presentation Details

Date/ time: February 26, 2026 8:40 am EST
Location: Virtual
Webcast link: click here

The webcast will be available for 90 days at the link above or on the Investors page of the Aprea corporate website, under "News & Events."

Investors who would like to arrange a 1on1 meeting with Aprea management during the conference should contact their Oppenheimer representative.

(Press release, Aprea, FEB 17, 2026, View Source [SID1234662702])

AN2 Therapeutics to Participate in Fireside Chat at Leerink Global Healthcare Conference

On February 17, 2026 AN2 Therapeutics, Inc. (Nasdaq: ANTX), a biopharmaceutical company advancing novel small molecule therapeutics derived from its boron chemistry platform, reported that Eric Easom, Co-Founder, Chairman, President and CEO will participate in a fireside chat at the Leerink Global Healthcare Conference on March 10, 2026 at 3:40 PM ET.

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A webcast can be accessed on the Investors section of the AN2 Therapeutics website at www.an2therapeutics.com. An archived replay will be available for at least 30 days following the presentation.

(Press release, AN2 Therapeutics, FEB 17, 2026, View Source [SID1234662693])