Atara Biotherapeutics to Announce First Quarter 2021 Financial Results on Tuesday, May 4, 2021

On April 27, 2021 Atara Biotherapeutics, Inc. (Nasdaq: ATRA), a pioneer in T-cell immunotherapy, leveraging its novel allogeneic EBV T-cell platform to develop transformative therapies for patients with serious diseases including solid tumors, hematologic cancers and autoimmune diseases, reported the Company will release first quarter 2021 financial results after market close on Tuesday, May 4, 2021 (Press release, Atara Biotherapeutics, APR 27, 2021, View Source [SID1234578564]). Following the release, the Company will host a live conference call and webcast at 4:30 p.m. EDT to discuss the Company’s financial results and provide a corporate update.

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Analysts and investors can participate in the conference call by dialing 877-407-8291 for domestic callers and 201-689-8345 for international callers, using the conference ID 13717803. A live audio webcast can be accessed by visiting the Investors & Media – News & Events section of atarabio.com. An archived webcast replay will be available on the Company’s website for 30 days.

Supernus to Host First Quarter 2021 Financial Results Conference Call

On April 27, 2021 Supernus Pharmaceuticals, Inc. (Nasdaq: SUPN), a biopharmaceutical company focused on developing and commercializing products for the treatment of central nervous system (CNS) diseases, reported that the Company expects to report business results for the first quarter of 2021 after the market closes on Wednesday, May 5, 2021 (Press release, Supernus, APR 27, 2021, View Source [SID1234578563]).

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Jack Khattar, President and CEO, and Jim Kelly, Executive Vice President and CFO, will host a conference call to present the first quarter 2021 financial and business results on Wednesday, May 5, 2021 at 4:30 p.m. ET. Following management’s prepared remarks and discussion of business results, the call will be open for questions.

A live webcast will be available at www.supernus.com.

Please refer to the information below for conference call dial-in information. Callers should dial in approximately 10 minutes prior to the start of the call.

Veracyte Announces Publication of Study Showing Robust Performance of Percepta GSC in Improving Lung Cancer Diagnosis

On April 27, 2021 Veracyte, Inc. (Nasdaq: VCYT) reported the publication of a new study that demonstrates the robust performance of the Percepta Genomic Sequencing Classifier (GSC), a novel genomic test, in helping to improve lung cancer diagnosis (Press release, Veracyte, APR 27, 2021, View Source [SID1234578562]). The data, based on widely accepted community guidelines for establishing analytical validity, add to the growing body of clinical evidence supporting the use of the Percepta GSC to guide next steps for patients with lung nodules whose bronchoscopy results are inconclusive. The peer-reviewed paper appears online in the journal BMC Cancer.

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Veracyte scientists followed criteria established by the Evaluation of Genomic Applications in Practice and Prevention (EGAPP) Working Group and the Centers for Disease Control’s ACCE Project to evaluate the analytical validity of the Percepta GSC. They also assessed the Percepta GSC for reproducibility within and across laboratories.

Based on the guidelines, the scientists determined the Percepta GSC test is suitable for routine clinical use with robust analytical sensitivity, analytical specificity, and reproducibility. Expected variability in clinical laboratories — assessed in this study by using different instruments, operators, and labs — was found to be negligible.

"We are pleased to share the results of this analytical validation study, which clearly demonstrate the Percepta GSC’s robust performance regardless of variations in RNA quantity, as well as the presence of blood or other contaminants, in patient samples," said Giulia C. Kennedy, Ph.D., Veracyte’s chief scientific officer and chief medical officer, and an author of the study. "These findings should give physicians further confidence that the Percepta GSC can help them determine next steps for their lung-nodule patients when bronchoscopy results are inconclusive."

About the Percepta GSC
The Percepta GSC is an RNA sequencing-based risk-stratification test designed to aid patient management in cases where a lung nodule is present and bronchoscopy results are unclear. Veracyte estimates that approximately 545,000 bronchoscopies are performed each year to evaluate suspicious lung nodules and that up to 60 percent of these produce inconclusive results. The Percepta GSC is based on novel "field of injury" science, which identifies genomic changes that correlate with lung cancer risk in current or former smokers using a brushing to collect cells from the patient’s main lung airway during a standard bronchoscopy, without the need to sample the lesion directly. Previous analyses demonstrated the test’s accuracy in "down-classifying" patients at low risk of lung cancer and in "up-classifying" patients at high risk of the disease.1 The test has been commercially available since June 2019.

About Lung Cancer
Lung cancer kills more than 1.75 million people worldwide each year.2 Early detection is key, with a five-year survival rate of nearly 60 percent when the cancer is found early, compared to six percent when it is found at a later stage.3 Lung nodules are typically the first sign of lung cancer. Bronchoscopy is commonly used to evaluate potentially cancerous lung nodules, but it often delivers inconclusive results. This frequently leads to additional diagnostic procedures, including invasive lung surgeries, as well as delayed diagnosis and treatment.

Fate Therapeutics Announces Four Presentations at the 2021 ASGCT Annual Meeting

On April 27, 2021 Fate Therapeutics, Inc. (NASDAQ: FATE), a clinical-stage biopharmaceutical company dedicated to the development of programmed cellular immunotherapies for patients with cancer, reported that two oral and two digital presentations of the Company’s induced pluripotent stem cell (iPSC) product platform were accepted for presentation at the 24th American Society of Gene & Cell Therapy Annual Meeting (ASGCT) (Free ASGCT Whitepaper) being held virtually from May 11-14, 2021 (Press release, Fate Therapeutics, APR 27, 2021, View Source [SID1234578561]).

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In addition to the Company’s presentations at ASGCT (Free ASGCT Whitepaper), its iPSC-derived natural killer (NK) cell product pipeline is expected to be featured in a meeting symposium on May 11 by Jeffrey S. Miller, M.D., Professor of Medicine, University of Minnesota and Deputy Director of the Masonic Cancer Center and scientific advisor and collaborator of the Company, and its iPSC-derived CAR T-cell product platform is expected to be highlighted during the meeting’s plenary session on May 12 by Michel Sadelain, M.D., Ph.D., Stephen and Barbara Friedman Chair and Director, Center for Cell Engineering, Memorial Sloan Kettering Cancer Center and collaborator of the Company.

The Company also plans to host a virtual investor event on May 13 to highlight interim Phase 1 clinical data from its FT516 and FT538 programs for the treatment of relapsed / refractory acute myeloid leukemia (AML). The Phase 1 clinical trial of FT516 has enrolled the first and second dose cohorts (90 million and 300 million cells per dose, respectively), and dose escalation is ongoing in the third dose cohort (900 million cells per dose). The Phase 1 clinical trial of FT538 is ongoing in the first dose cohort (100 million cells per dose).

ASGCT Oral Presentations

Sequential CRISPR-mediated Engineering and Clonal Banking for the Generation of Multiplexed Engineered Master Pluripotent Cell Lines for the Mass Manufacture of Off-the-Shelf Immune Cells Targeting Solid Cancers
Room 9 – Advances in Ex Vivo Modified Cell Therapies; Abstract 5; May 11, 2021; 6:30pm – 6:45pm EDT
Enhanced Generation of T-cell Derived Naïve Pluripotent Cells as a Renewable Cell Source for the Mass Manufacture of Off-the-shelf CAR T-cell Therapies
Room 5 – CAR Modified Cellular Therapies; Abstract 76; May 12, 2021; 6:45pm – 7:00pm EDT
ASGCT Digital Presentations

Development and Application of a Pluripotent Stem Cell Platform to Generate Precision-Engineered Single Cell-derived Renewable Clonal Master Cell Lines for Therapeutic Use
Abstract # 793
Temporal Gene Regulation of T-cell Enhancers by Locus Targeted Engineering Enables Cytokine Autonomy and Augments Anti-tumor Efficacy of iPSC-derived Off-the-shelf CAR-T Therapy
Abstract #784
About Fate Therapeutics’ iPSC Product Platform
The Company’s proprietary induced pluripotent stem cell (iPSC) product platform enables mass production of off-the-shelf, engineered, homogeneous cell products that can be administered with multiple doses to deliver more effective pharmacologic activity, including in combination with other cancer treatments. Human iPSCs possess the unique dual properties of unlimited self-renewal and differentiation potential into all cell types of the body. The Company’s first-of-kind approach involves engineering human iPSCs in a one-time genetic modification event and selecting a single engineered iPSC for maintenance as a clonal master iPSC line. Analogous to master cell lines used to manufacture biopharmaceutical drug products such as monoclonal antibodies, clonal master iPSC lines are a renewable source for manufacturing cell therapy products which are well-defined and uniform in composition, can be mass produced at significant scale in a cost-effective manner, and can be delivered off-the-shelf for patient treatment. As a result, the Company’s platform is uniquely capable of overcoming numerous limitations associated with the production of cell therapies using patient- or donor-sourced cells, which is logistically complex and expensive and is subject to batch-to-batch and cell-to-cell variability that can affect clinical safety and efficacy. Fate Therapeutics’ iPSC product platform is supported by an intellectual property portfolio of over 350 issued patents and 150 pending patent applications.

About FT516
FT516 is an investigational, universal, off-the-shelf natural killer (NK) cell cancer immunotherapy derived from a clonal master induced pluripotent stem cell (iPSC) line engineered to express a novel high-affinity 158V, non-cleavable CD16 (hnCD16) Fc receptor, which has been modified to prevent its down-regulation and to enhance its binding to tumor-targeting antibodies. CD16 mediates antibody-dependent cellular cytotoxicity (ADCC), a potent anti-tumor mechanism by which NK cells recognize, bind and kill antibody-coated cancer cells. ADCC is dependent on NK cells maintaining stable and effective expression of CD16, which has been shown to undergo considerable down-regulation in cancer patients. In addition, CD16 occurs in two variants, 158V or 158F, that elicit high or low binding affinity, respectively, to the Fc domain of IgG1 antibodies. Numerous clinical studies with FDA-approved tumor-targeting antibodies, including rituximab, trastuzumab and cetuximab, have demonstrated that patients homozygous for the 158V variant, which is present in only about 15% of patients, have improved clinical outcomes. FT516 is being investigated in a multi-dose Phase 1 clinical trial as a monotherapy for the treatment of acute myeloid leukemia and in combination with CD20-targeted monoclonal antibodies for the treatment of advanced B-cell lymphoma (NCT04023071). Additionally, FT516 is being investigated in a multi-dose Phase 1 clinical trial in combination with avelumab for the treatment of advanced solid tumor resistant to anti-PDL1 checkpoint inhibitor therapy (NCT04551885).

About FT538
FT538 is an investigational, universal, off-the-shelf natural killer (NK) cell cancer immunotherapy derived from a clonal master induced pluripotent stem cell (iPSC) line engineered with three functional components: a novel high-affinity 158V, non-cleavable CD16 (hnCD16) Fc receptor, which has been modified to prevent its down-regulation and to enhance its binding to tumor-targeting antibodies; an IL-15 receptor fusion (IL-15RF) that augments NK cell activity; and the deletion of the CD38 gene (CD38KO), which promotes persistence and function in high oxidative stress environments. FT538 is designed to enhance innate immunity in cancer patients, where endogenous NK cells are typically diminished in both number and function due to prior treatment regimens and tumor suppressive mechanisms. In preclinical studies, FT538 has shown superior NK cell effector function, as compared to peripheral blood NK cells, with the potential to confer significant anti-tumor activity to patients through multiple mechanisms of action. FT538 is being investigated in a multi-dose Phase 1 clinical trial for the treatment of acute myeloid leukemia (AML) and in combination with daratumumab, a CD38-targeted monoclonal antibody therapy, for the treatment of multiple myeloma (NCT04614636).

Y-mAbs Submits Omburtamab Marketing Authorization Application to the European Medicines Agency

On April 27, 2021 Y-mAbs Therapeutics, Inc. (the "Company" or "Y-mAbs") (Nasdaq: YMAB), a commercial-stage biopharmaceutical company focused on the development and commercialization of novel, antibody-based therapeutic products for the treatment of cancer, reported that the Company has submitted its Marketing Authorization Application ("MAA") to the European Medicines Agency for omburtamab for the treatment of pediatric patients with CNS/leptomeningeal metastasis from neuroblastoma (Press release, Y-mAbs Therapeutics, APR 27, 2021, View Source [SID1234578560]). Omburtamab is an investigational, monoclonal antibody that targets B7-H3 and is radiolabeled before intraventricular central nervous system ("CNS") administration. B7-H3 is an immune checkpoint molecule that is widely expressed in tumor cells of several cancer types.

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"We believe omburtamab is on track to potentially become the first EMA approved targeted therapy for pediatric patients with CNS/leptomeningeal metastasis from neuroblastoma," said Thomas Gad, founder, Chairman and President at Y-mAbs. "With this submission to EMA, Y-mAbs is continuing to advance the omburtamab program to potentially provide access to this innovative therapy to pediatric patients globally as quickly as possible."

In addition, Y-mAbs recently concluded a Type B meeting with the U.S. Food and Drug Administration ("FDA") regarding omburtamab and the Company continues to be in close dialog with the FDA and maintains its aim of resubmitting the Biologics License Application ("BLA") to the FDA late in the second quarter or in the third quarter of 2021.

Dr. Claus Moller, the Company’s Chief Executive Officer, continued, "We are excited to submit the MAA for omburtamab, and very pleased about the progress we are making. We believe omburtamab can potentially address a significant unmet medical need for children with CNS/leptomeningeal metastasis from neuroblastoma. We also are continuing to work closely with the FDA to resubmit the omburtamab BLA."

Researchers at Memorial Sloan Kettering Cancer Center ("MSK") developed omburtamab, which is exclusively licensed by MSK to Y-mAbs. As a result of this licensing arrangement, MSK has institutional financial interest related to the compound and Y-mAbs.