Theolytics Announces First Patient Dosed in the OCTOPOD-IP Trial, a US Phase 1 Trial with THEO-260, a Novel Oncolytic Immunotherapy Targeting Ovarian Cancer

On April 28, 2026 Theolytics, a clinical-stage biotechnology company developing next-generation oncolytic immunotherapies, reported that the first patient has been dosed in a Phase 1 clinical trial evaluating intraperitoneal (IP) administration of THEO-260 for the treatment of women with Platinum-Resistant Ovarian Cancer (PROC) (NCT07211659).

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The US trial, OCTOPOD-IP, will be the second clinical trial investigating THEO-260 in this indication, the first being the ongoing Phase 1/2a trial called OCTOPOD-IV in the UK, Spain and Canada (NCT06618235).

Positioned to tackle the complex, immune-suppressed nature of advanced solid tumours, THEO-260 is designed to target and eliminate cancer cells and cancer-associated fibroblasts (CAFs) while inducing immune activation. PROC represents a prototype of a broader category of stroma-rich solid tumours for which THEO-260 is being developed.

The US OCTOPOD-IP trial will assess the safety and tolerability of THEO-260 administered directly to the peritoneal cavity (IP delivery) in PROC patients and include extensive biomarker studies to showcase THEO-260’s differentiated mode of action.

The trial is sponsored by Theolytics and will be run under the guidance of principal investigator Amir Jazaeri, MD, Professor, Department of Gynecologic Oncology and Reproductive Medicine, Division of Surgery at The University of Texas MD Anderson Cancer Center.

"We are proud to announce the dosing of the first patient in this important study," said David Apelian MD, CEO of Theolytics. "The initiation of our US trial to evaluate the intraperitoneal delivery of THEO-260 in patients with PROC under the company’s first IND marks an important new milestone for Theolytics. THEO-260 is designed to be effective against ovarian cancer and other stroma-rich cancers by destroying cancer-associated fibroblasts within the tumour microenvironment as well as killing cancer cells directly, triggering immunogenic cell death and promoting T-cell activation. By advancing THEO-260 for the treatment of ovarian cancer, we hope to address the high unmet need for patients suffering with this disease and potentially for broader use in other difficult-to-treat, stroma-rich solid tumours."

(Press release, Theolytics, APR 28, 2026, View Source [SID1234664864])

Soligenix Announces Interim Results from the Phase 3 FLASH2 Trial Evaluating HyBryte™ in Treatment of Cutaneous T-Cell Lymphoma

On April 28, 2026 Soligenix, Inc. (Nasdaq: SNGX) (Soligenix or the Company), a late-stage biopharmaceutical company focused on developing and commercializing products to treat rare diseases where there is an unmet medical need, reported that the Data Monitoring Committee completed the interim efficacy analysis of its pivotal Phase 3 FLASH2 (Fluorescent Light Activated Synthetic Hypericin 2) trial evaluating HyBryte (Synthetic Hypericin) in the treatment of cutaneous T-cell lymphoma (CTCL). Under the terms of the interim analysis, the study was recommended to halt for futility.

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"We are obviously very disappointed with the unanticipated outcome of the study," stated Christopher J. Schaber, PhD, President and Chief Executive Officer of Soligenix. "Despite the fact that HyBryte demonstrated statistically significant reductions in CTCL lesions after 6 weeks treatment in the first FLASH study, a similar signal was not observed with 18 weeks of treatment in this study. Over the coming weeks, we will analyze the data to better determine why the study did not meet expectations. If there is any clarity gained from further analysis of the dataset, especially with respect to specific subsets of patients that may benefit from HyBryte therapy, then we intend to communicate our findings and explore follow-up discussions with the European Medicines Agency (EMA) and the U.S. Food and Drug Administration (FDA)."

Dr. Schaber continued, "With approximately $5.9 million of cash, we will evaluate all strategic options moving forward, including but not limited to merger and acquisition opportunities as well as the potential of advancing dusquetide for the treatment of Behçet’s Disease, which demonstrated promising biological efficacy in a Phase 2 study last year using the intravenous formulation and has received orphan drug designation most recently from the EMA."

About HyBryte

HyBryte (research name SGX301) is a novel, first-in-class, photodynamic therapy utilizing safe, visible light for activation. The active ingredient in HyBryte is synthetic hypericin, a potent photosensitizer that is topically applied to skin lesions that is taken up by the malignant T-cells, and then activated by safe, visible light approximately 24 hours later. The use of visible light in the red-yellow spectrum has the advantage of penetrating more deeply into the skin (much more so than ultraviolet light) and therefore potentially treating deeper skin disease and thicker plaques and lesions. This treatment approach avoids the risk of secondary malignancies (including melanoma) inherent with the frequently employed DNA-damaging drugs and other phototherapy that are dependent on ultraviolet exposure. Combined with photoactivation, hypericin has demonstrated significant anti-proliferative effects on activated normal human lymphoid cells and inhibited growth of malignant T-cells isolated from CTCL patients. In a published Phase 2 clinical study in CTCL, patients experienced a statistically significant (p=0.04) improvement with topical hypericin treatment whereas the placebo was ineffective. HyBryte has received orphan drug and fast track designations from the FDA, as well as orphan designation from the European Medicines Agency (EMA).

The published Phase 3 FLASH trial enrolled a total of 169 patients (166 evaluable) with Stage IA, IB or IIA CTCL. The trial consisted of three treatment cycles. Treatments were administered twice weekly for the first 6 weeks and treatment response was determined at the end of the 8th week of each cycle. In the first double-blind treatment cycle (Cycle 1), 116 patients received HyBryte treatment (0.25% synthetic hypericin) and 50 received placebo treatment of their index lesions. A total of 16% of the patients receiving HyBryte achieved at least a 50% reduction in their lesions (graded using a standard measurement of dermatologic lesions, the modified Composite Assessment of Index Lesion Severity [mCAILS] score) compared to only 4% of patients in the placebo group at 8 weeks (p=0.04) during the first treatment cycle (primary endpoint). HyBryte treatment in this cycle was safe and well tolerated.

In the second open-label treatment cycle (Cycle 2), all patients received HyBryte treatment of their index lesions. Evaluation of 155 patients in this cycle (110 receiving 12 weeks of HyBryte treatment and 45 receiving 6 weeks of placebo treatment followed by 6 weeks of HyBryte treatment), demonstrated that the response rate among the 12-week treatment group was 40% (p<0.0001 vs the placebo treatment rate in Cycle 1). Comparison of the 12-week and 6-week treatment responses also revealed a statistically significant improvement (p<0.0001) between the two timepoints, indicating that continued treatment results in better outcomes. HyBryte continued to be safe and well tolerated. Additional analyses also indicated that HyBryte is equally effective in treating both plaque (response 42%, p<0.0001 relative to placebo treatment in Cycle 1) and patch (response 37%, p=0.0009 relative to placebo treatment in Cycle 1) lesions of CTCL, a particularly relevant finding given the historical difficulty in treating plaque lesions.

The third (optional) treatment cycle (Cycle 3) was focused on safety and all patients could elect to receive HyBryte treatment of all their lesions. Of note, 66% of patients elected to continue with this optional compassionate use / safety cycle of the study. Of the subset of patients that received HyBryte throughout all 3 cycles of treatment, 49% of them demonstrated a positive treatment response (p<0.0001 vs patients receiving placebo in Cycle 1). Moreover, in a subset of patients evaluated in this cycle, it was demonstrated that HyBryte is not systemically available, consistent with the general safety of this topical product observed to date. At the end of Cycle 3, HyBryte continued to be well tolerated despite extended and increased use of the product to treat multiple lesions.

Overall safety of HyBryte is a critical attribute of this treatment and was monitored throughout the three treatment cycles (Cycles 1, 2 and 3) and the 6-month follow-up period. HyBryte’s mechanism of action is not associated with DNA damage, making it a safer alternative than currently available therapies, all of which are associated with significant, and sometimes fatal, side effects. Predominantly these include the risk of melanoma and other malignancies, as well as the risk of significant skin damage and premature skin aging. Currently available treatments are only approved in the context of previous treatment failure with other modalities and there is no approved front-line therapy available. Within this landscape, treatment of CTCL is strongly motivated by the safety risk of each product. HyBryte potentially represents the safest available efficacious treatment for CTCL. With very limited systemic absorption, a compound that is not mutagenic and a light source that is not carcinogenic, there is no evidence to date of any potential safety issues.

Following the first Phase 3 study of HyBryte for the treatment of CTCL, the FDA and the EMA indicated that they would require a second successful Phase 3 trial to support marketing approval. With agreement from the EMA on the key design components, the second, confirmatory study, called FLASH2, has demonstrated a good safety profile in the pre-specific safety evaluations by the Data Monitoring Committee. This study is a randomized, double-blind, placebo-controlled, multicenter study that replicates the double-blind, placebo-controlled design used in the first successful Phase 3 FLASH study that consisted of three 6-week treatment cycles (18 weeks total), with the primary efficacy assessment occurring at the end of the initial 6-week double-blind, placebo-controlled treatment cycle (Cycle 1). However, this second study extends the double-blind, placebo-controlled assessment to 18 weeks of continuous treatment (no "between-Cycle" treatment breaks) with the primary endpoint assessment occurring at the end of the 18-week timepoint. In the first Phase 3 study, a treatment response of 49% (p<0.0001 vs patients receiving placebo in Cycle 1) was observed in patients completing 18 weeks (3 cycles) of therapy. In this second study, all important clinical study design components remain the same as in the first FLASH study, including the primary endpoint and key inclusion-exclusion criteria.

In light of the interim analysis results, the Company will evaluate all available data and assess potential next steps, if any, with respect to the HyBryte development program.

Additional supportive studies have demonstrated the utility of longer treatment times (Study RW-HPN-MF-01), the lack of significant systemic exposure to hypericin after topical application (Study HPN-CTCL-02) and its relative efficacy and tolerability compared to Valchlor (Study HPN-CTCL-04).

In addition, the FDA awarded an Orphan Products Development grant to support the investigator-initiated study evaluation of HyBryte for expanded treatment in patients with early-stage CTCL, including in the home use setting. The grant, totaling $2.6 million over 4 years, was awarded to the University of Pennsylvania that was a leading enroller in the Phase 3 FLASH study.

About Cutaneous T-Cell Lymphoma (CTCL)

CTCL is a class of non-Hodgkin’s lymphoma (NHL), a type of cancer of the white blood cells that are an integral part of the immune system. Unlike most NHLs which generally involve B-cell lymphocytes (involved in producing antibodies), CTCL is caused by an expansion of malignant T-cell lymphocytes (involved in cell-mediated immunity) normally programmed to migrate to the skin. These malignant cells migrate to the skin where they form various lesions, typically beginning as patches and may progress to raised plaques and tumors. Mortality is related to the stage of CTCL, with median survival generally ranging from about 12 years in the early stages to only 2.5 years when the disease has advanced. There is currently no cure for CTCL. Typically, CTCL lesions are treated and regress but usually return either in the same part of the body or in new areas.

CTCL constitutes a rare group of NHLs, occurring in about 4% of the more than 1.7 million individuals living with the disease in the U.S. and Europe (European Union and United Kingdom). It is estimated, based upon review of historic published studies and reports and an interpolation of data on the incidence of CTCL that it affects approximately 31,000 individuals in the U.S. (based on SEER [Surveillance, Epidemiology, and End Results] data, with approximately 3,200 new cases seen annually) and approximately 38,000 individuals in Europe (based on ECIS [European Cancer Information System] prevalence estimates, with approximately 3,800 new cases annually).

(Press release, Soligenix, APR 28, 2026, View Source [SID1234664863])

Precision BioSciences Announces Oral Presentation at the American Society of Gene and Cell Therapy (ASGCT) 2026 Annual Meeting

On April 28, 2026 Precision BioSciences, Inc. (Nasdaq: DTIL), a clinical stage gene editing company utilizing its novel proprietary ARCUS platform to develop in vivo gene editing therapies for high unmet need diseases, reported that new preclinical data from its PBGENE-DMD program have been accepted for an oral presentation at the American Society of Gene & Cell Therapy (ASGCT) (Free ASGCT Whitepaper) 2026 Annual Meeting, taking place May 11-15, 2026, in Boston, Massachusetts. The accepted abstract highlights new data demonstrating compelling efficacy observed in early-juvenile mice supporting the potential benefit of earlier intervention with PBGENE-DMD in younger patient populations. These data build on previously shared updates showing treatment with PBGENE-DMD leads to durable functional improvement in a humanized Duchenne muscular dystrophy (DMD) mouse model.

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Details of the presentation:

Abstract title: PBGENE-DMD gene editing drives safe, efficacious, and durable functional improvement in a humanized Duchenne muscular dystrophy mouse model

Session: Emerging molecular therapeutic strategies for muscular dystrophies
Presenter: Adam Michler Ph.D., DMD Research Lead
Presentation Type: Oral Presentation
Presentation Time: May 14, 2026 at 8:45 a.m. ET

About PBGENE-DMD, A Muscle-Targeted Excision Program

PBGENE-DMD is Precision’s development program for the treatment of Duchenne Muscular Dystrophy (DMD), a devastating genetic disease caused by mutations in the dystrophin gene that prevents production of the dystrophin protein, which is essential for maintaining muscle structural integrity and function. DMD affects approximately 15,000 patients in the U.S. alone, and there are currently no approved therapies capable of driving significant, durable functional improvements over time.

PBGENE-DMD is designed to durably improve function for approximately 60% of patients with DMD by employing two complementary ARCUS nucleases, delivered using a single AAV, to excise exons 45-55 of the dystrophin gene, restoring expression of a near full-length dystrophin protein. This protein more closely resembles normal dystrophin than synthetic, truncated microdystrophin approaches, which offer minimal functional benefit. Precision’s Phase 1/2 FUNCTION-DMD study is expected to enroll ambulatory DMD patients with mutations between exons 45 and 55, which impact approximately 60% of boys with DMD. The clinical trial will employ an appropriate immune modulation regimen and safety monitoring program to treat patients at world class specialized DMD clinical sites.

PBGENE-DMD was granted Orphan Drug Designation by the FDA in July 2025. The PBGENE-DMD program is eligible for a Priority Review Voucher (PRV) via the Rare Pediatric Disease Priority Review Voucher (PRV) program, which was signed into law on February 3, 2026, as part of the Consolidated Appropriations Act of 2026. PBGENE-DMD received Fast Track designation from the FDA in February 2026.

Further details on the trial can be found on Precision’s website and clinicaltrials.gov identifier NCT07429240.

(Press release, Precision Biosciences, APR 28, 2026, View Source [SID1234664862])

Orca Bio Announces U.S. FDA Regenerative Medicine Advanced Therapy (RMAT) Designation Granted to Orca-Q® for the Treatment of High-Risk Hematologic Malignancies

On April 28, 2026 Orca Bio, a late-stage biotechnology company committed to transforming the lives of patients through high-precision cell therapy, reported that the U.S. Food and Drug Administration (FDA) has granted Regenerative Medicine Advanced Therapy (RMAT) designation to Orca-Q, Orca Bio’s second-generation investigational allogeneic T-cell immunotherapy for the treatment of high-risk hematologic malignancies.

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"The FDA’s RMAT designation for Orca-Q recognizes the significant unmet need for patients with serious hematologic malignancies and validates the promising clinical findings from our ongoing Phase 1 study," said Nate Fernhoff, Ph.D., co-founder and chief executive officer at Orca Bio. "As this is our second cell therapy candidate to receive RMAT status, we have experienced firsthand how this program can support accelerated development and enhanced communication with the FDA. With our newly expanded Phase 1 study continuing to enroll patients and additional data expected later this year, we remain focused on advancing our high-precision approach to deliver an important new treatment to patients with blood cancer."

The RMAT application included data from the ongoing Phase 1 clinical trial (NCT03802695) evaluating Orca-Q for the treatment of hematologic malignancies across six treatment cohorts, including in patients with haploidentical donors, and in patients receiving non-myeloablative or reduced intensity conditioning. Clinical findings demonstrated durability and encouraging outcomes across key metrics, including overall survival, acute and chronic graft versus host disease (GVHD) and non-relapse mortality. Enrollment is ongoing, with new data expected to be presented at upcoming scientific congresses. Additional details can be found on www.ClinicalTrials.gov.

RMAT designation is a specialized FDA program created to accelerate the development and review of promising new therapies, including cell therapies, intended to treat serious or life-threatening conditions. To qualify, a therapy must demonstrate preliminary clinical evidence suggesting the potential to address unmet medical needs. This designation provides important opportunities during the drug development process, including increased FDA guidance and eligibility for priority and rolling reviews, as well as accelerated approval pathways. By streamlining these regulatory milestones, the program aims to bring transformative innovations to patients more quickly.

About Orca-Q
Orca-Q is Orca Bio’s second-generation investigational allogeneic T-cell immunotherapy being evaluated in clinical trials for the treatment of multiple hematologic malignancies, including in patients with haploidentical and mismatched donors. Orca-Q is a proprietary composition of stem cells combined with specific T-cell subsets derived from healthy donors and engineered by Orca Bio’s high-precision platform.

(Press release, Orca Bio, APR 28, 2026, View Source;utm_medium=rss&utm_campaign=orca-bio-announces-u-s-fda-regenerative-medicine-advanced-therapy-rmat-designation-granted-to-orca-q-for-the-treatment-of-high-risk-hematologic-malignancies [SID1234664861])

OPKO Health Reports First Quarter 2026 Business Highlights and Financial Results

On April 28, 2026 OPKO Health, Inc. (NASDAQ: OPK) (OPKO) reported business highlights and financial results for the three months ended March 31, 2026.

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Highlights from the first quarter of 2026 and recent weeks included the following:

Initiated and completed first dose cohort of MDX2301 Phase 1 clinical trial for the prevention of COVID-19. MDX2301 is a tetravalent bispecific antibody that neutralizes all known variants of SARS-CoV-2 and also has the potential to delay resistance by emerging variants. The Phase 1 clinical trial (NCT07445971) is evaluating the safety, pharmacokinetics and tolerability of MDX2301 administered via different routes in healthy volunteers and in immune impaired adults at high risk for severe COVID-19. By combining multiple antibody binding domains in a single molecule, MDX2301 is designed to provide high potency and greater breadth compared with conventional monoclonal antibodies. This trial is being funded by the Biomedical Advanced Research and Development Authority (BARDA).

Initiated MDX2003 Phase 1 clinical trial in relapsed or refractory B-cell lymphoma. MDX2003 (CD19xCD20xCD3xCD28) is a novel tetraspecific T-cell engager-expander designed to optimize sustained T-cell function and address the two most common and validated targets in lymphomas and leukemias. The MDX2003 Phase 1 study (NCT07249905) is designed to evaluate the safety, tolerability, pharmacokinetics and preliminary anti-tumor activity of MDX2003 in adults with various types of B-cell lymphoma. The study includes dose-escalation and dose-expansion phases. B-cell lymphoma, a form of non-Hodgkin lymphoma arising from B lymphocytes, represents the most common lymphoma subtype, accounting for approximately 85% of cases.

ModeX to present data on multispecific antibody targeted in vivo CAR T cell programs at the American Society of Gene + Cell Therapy (ASGCT) (Free ASGCT Whitepaper) Annual Meeting with plans to enter Phase 1 studies later this year. Built on its multispecific technology, ModeX recently developed an in vivo CAR-T and gene delivery platform that it believes is highly differentiated compared with ex vivo and other in vivo CAR-T approaches. Using antibody-targeted lipid nanoparticles, this platform can deliver genes encoding chimeric antigen receptors (CARs) directly to specific immune cell subsets that generate functional CAR-T cells in vivo.

Presented two posters highlighting MDX2003 and MDX2004 at the ESMO (Free ESMO Whitepaper) Targeted Anticancer Therapies Congress 2026. In March, an abstract titled "MDX2003, a First-in-Class CD19xCD20xCD3xCD28 Tetraspecific T-Cell Engager with Potent Preclinical Activity against B Cell Malignancies and Promise in Autoimmunity" was presented at the European Society for Medical Oncology’s (ESMO) (Free ESMO Whitepaper) Targeted Anticancer Therapies Congress 2026 in Paris. An abstract titled "A phase 1/2a, multicenter, first-in-human, open-label clinical trial evaluating monotherapy with MDX2004, a trispecific antibody-fusion protein in patients with advanced tumors" was also presented at the Congress.

Expanded partnership with Entera Bio to advance first-in-class oral long-acting PTH tablet for patients with hypoparathyroidism. This third program under the collaboration combines OPKO’s proprietary long-acting PTH variants with Entera’s proprietary N-Tab technology. Following favorable pharmacodynamic and pharmacokinetic data reported in December 2025, the companies have jointly decided to accelerate development and expect to file an investigational new drug (IND) application with the U.S. Food and Drug Administration (FDA) in late 2026. OPKO and Entera Bio each hold a 50% ownership interest in the long-acting PTH hypoparathyroidism program and each is responsible for 50% of the program’s development costs.

First Quarter Financial Results

Consolidated: Consolidated total revenues for the first quarter of 2026 were $124.2 million compared with $149.9 million for the 2025 period, with the decrease principally resulting from the sale of certain BioReference assets in 2025. Operating loss for the first quarter of 2026 improved to $51.0 million compared with operating loss of $67.2 million for the 2025 quarter. Net loss for the first quarter of 2026 was $54.8 million, or $0.07 per share, compared with net loss of $67.6 million, or $0.10 per share, for the 2025 quarter. The prior year results included a $3.9 million realized gain from the sale of shares of GeneDx Holdings Corp.

Pharmaceuticals: Revenue from products in the first quarter of 2026 was $38.0 million compared with $34.8 million in the first quarter of 2025, driven by higher sales volumes from OPKO’s Spanish operations and by a positive net foreign exchange impact of $2.4 million. Revenue from Rayaldee remained consistent at $6.3 million in the first quarter of both 2026 and 2025. Revenue from the transfer of intellectual property and other rose to $14.0 million, up from $12.3 million in 2025. This was highlighted by an increase in gross profit share payments for NGENLA, which totaled $6.4 million compared with $4.5 million in the 2025 quarter. The increase was partially offset by a decrease in revenue recognized under the BARDA contract, which totaled $4.1 million in the first quarter of 2026 compared with $7.0 million for the same period in 2025. Total costs and expenses were $81.7 million in the first quarter of 2026 compared with $81.9 million in the prior-year period. Operating loss narrowed by 15% to $29.7 million in the first quarter of 2026, which included $18.3 million in depreciation and amortization expense, compared with operating loss of $34.8 million in the first quarter of 2025, which included $17.8 million of depreciation and amortization expense.

Diagnostics: Revenue from services in the first quarter of 2026 was $72.2 million compared with $102.8 million in the prior-year period, which included $25.9 million of revenue related to the oncology assets sold to Labcorp in September 2025. The remaining decrease was principally a result of lower clinical test reimbursement rates as a result of exiting certain higher priced, but lower or negative gross margin test offerings, as well as a slight decrease in overall testing volumes. Total costs and expenses were $85.1 million in the first quarter of 2026 compared with $126.8 million in the first quarter of 2025, which included $31.3 million of costs and expenses related to oncology assets that were sold to Labcorp. Operating loss narrowed by more than 45% to $13.0 million in the first quarter of 2026, which included $3.9 million of depreciation and amortization expense, compared with operating loss of $23.9 million in the 2025 period, which included $5.7 million of depreciation and amortization expense.

Cash, cash equivalents, marketable securities and restricted cash: Cash, cash equivalents, marketable securities and restricted cash were $341.9 million as of March 31, 2026. As of March 31, 2026, approximately $92.0 million of OPKO’s common stock had been repurchased under the program since its authorization in July 2025, including $4.8 million in the first quarter of 2026. Approximately $108.0 million remained authorized and available for future repurchases.

Financial Guidance

The table below contains financial guidance for the 2026 second quarter and the unchanged full year financial guidance (in millions):

For the three months ended
June 30, 2026 For the year ended
December 31, 2026
Low High Low High
Revenue:
Services revenue $ 72 $ 76 $ 300 $ 312
Product revenue 38 42 160 170
IP and other revenue 15 19 70 80
Total revenue 127 132 530 560


Included in revenue
Pfizer gross profit share 6 8 34 37
BARDA 5 7 18 22

Total costs and expenses 180 190 725 750
R&D included in costs and expenses 32 38 125 135

Conference Call and Webcast Information

OPKO’s senior management will provide a business update, discuss first quarter financial results, provide financial guidance and answer questions during a conference call and live audio webcast today beginning at 4:30 p.m. Eastern time. Participants are encouraged to pre-register for the conference call here. Callers who pre-register will receive a unique PIN to gain immediate access to the call and bypass the live operator. Participants may register at any time, including up to and after the call start time. Those unable to pre-register may participate by dialing 833-630-0584 (U.S.) or 412-317-1815 (International). A webcast of the call can also be accessed at OPKO’s Investor Relations page and here.

A telephone replay will be available until March 5, 2026, by dialing 855-669-9658 (U.S.) or 412-317-0088 (International) and providing the passcode 2140261. A webcast replay will be available beginning approximately one hour after the completion of the live conference call.

(Press release, Opko Health, APR 28, 2026, View Source [SID1234664860])