Lucid Diagnostics to Present at Canaccord Genuity Virtual MedTech, Diagnostics and Digital Health & Services Forum

On November 17, 2021 Lucid Diagnostics Inc. (Nasdaq: LUCD) ("Lucid") a commercial-stage, cancer prevention medical diagnostics company, and majority-owned subsidiary of PAVmed Inc. (Nasdaq: PAVM, PAVMZ) ("PAVmed"), reported that Dennis McGrath, Chief Financial Officer, will present a corporate update at the Canaccord Genuity Virtual MedTech, Diagnostics and Digital Health & Services Forum on November 18, 2021, at 4:00 PM EST (Press release, Lucid Diagnostics, NOV 17, 2021, View Source [SID1234595748]). For more information on the conference, visit View Source

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Abintus Bio Enters Technology Agreement to Enhance In Vivo-Reprogrammed CAR Cell Potency and Durability Against Hematologic Malignancies and Solid Tumors

On November 17, 2021 Abintus Bio, Inc. (Abintus), a company pioneering first-in-class, off-the-shelf medicines that reprogram cells directly in vivo, reported that it has entered into an agreement with Memorial Sloan Kettering Cancer Center for the use of its next generation signaling technology ("1XX") in Abintus’ In Vivo CAR-X products (Press release, Abintus Bio, NOV 17, 2021, View Source [SID1234595747]). These products have the potential to overcome the challenges of ex vivo CAR technologies and dramatically improve outcomes and access for patients with hematologic malignancies and solid tumors.

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"Having the opportunity to directly reprogram the innate and adaptive immune cell subsets with retroviral vectors, while also extending CAR immune cell function and persistence with 1XX, is an advantage for Abintus’ approach and has the potential to establish potent anti-tumor immune responses," said Michel Sadelain, M.D., Ph.D., MSK’s Director of the Center for Cell Engineering and inventor of 1XX signaling technology. "I look forward to our continued support as these products advance towards clinical investigation."

1XX signaling technology is designed to improve the persistence of chimeric antigen receptor (CAR)-engineered cells by sustaining cellular effector functions without exhaustion. To date, 1XX CARs have demonstrated superior preclinical activity compared to conventional CAR technologies in certain hematologic and solid tumors including B-cell malignancies, mesothelioma, ovarian cancer, and breast cancer. 1XX CARs are currently under clinical evaluation in multiple cancers. In Vivo CAR-X products are designed to simultaneously target both adaptive and innate immune effector cells, including active T cells and Natural Killer (NK) cells, to produce a potent and durable immune response against hematologic malignancies and solid tumors, and improve patient outcomes and access.

"For in vivo reprogramming to have a profound impact, it will require safe and well tolerated gene delivery and functional expression as well as manufacturing that can scale to meet the patient need," said Malcolm Brenner, M.D., Professor at Baylor College of Medicine, Director of the Center for Cell and Gene Therapy at the Baylor College of Medicine, Texas Children’s Hospital, and Houston Methodist Hospital and advisor. "Abintus’ retroviral technology is an ideal platform for in vivo reprogramming because it addresses these key criteria, and has a compelling precedent for safety, tolerability and proof of principle in patients with intravenous administration. Adding 1XX signaling technology further strengthens Abintus’ differentiated approach."

Abintus’ initial products targeting hematologic and solid tumors are poised to enter clinical evaluation as early as 2023.

"One of the most exciting and impactful areas of research is the reprogramming of cells directly inside a patient. Inspired by nature, Abintus’ in vivo reprogramming technology is designed to empower patients with a diverse team of living drugs that can launch a coordinated attack against their cancer," said Nicholas A. Boyle, Ph.D., CEO and cofounder of Abintus. "The insights gained from our historical observations with in vivo reprogramming in patients, combined with 1XX technology and our commercial-ready manufacturing process, positions our company with the knowhow, technology and experience to make in vivo genetic medicines a reality for patients."

Boundless Bio to Present at the Piper Sandler 33rd Annual Healthcare Conference and the Evercore ISI 4th Annual HealthCONx Conference

On November 17, 2021 Boundless Bio, a next-generation precision oncology company developing innovative therapeutics directed against extrachromosomal DNA (ecDNA) in aggressive cancers, reported that the Chief Executive Officer of Boundless Bio, Zachary Hornby, will present at the Piper Sandler 33rd Annual Virtual Healthcare Conference and the Evercore ISI 4th Annual HealthCONx Conference (Press release, Boundless Bio, NOV 17, 2021, View Source [SID1234595746]). Presentation details are as follows:

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Piper Sandler 33rd Annual Virtual Healthcare Conference
Date: Pre-recorded presentation accessible on Monday, November 22, 2021
Time: 10:00 a.m. ET / 7:00 a.m. PST

Evercore ISI 4th Annual HealthCONx Conference
Date: Live presentation on Wednesday, December 1, 2021
Time: 1:50 p.m. ET / 10:50 a.m. PST

Eureka Therapeutics Announces Initiation of Phase I/II ARYA-2 Clinical Trial of ET140203 ARTEMIS® T Cells to Treat Pediatric Liver Cancer

On November 17, 2021 Eureka Therapeutics, Inc., a clinical-stage biotechnology company developing novel T-cell therapies to treat solid tumors, reported the initiation of ARYA-2, a Phase I/II open-label, dose escalation clinical trial of ET140203 ARTEMIS T-cell therapy in pediatric patients with relapsed or refractory hepatoblastoma (HB), hepatocellular neoplasm not otherwise specified (HCN-NOS), or hepatocellular carcinoma (HCC) (Press release, Eureka Therapeutics, NOV 17, 2021, View Source [SID1234595745]). The Phase I portion of the ARYA-2 study is now open for enrollment at Dana-Farber/Boston Children’s Cancer and Blood Disorders Center.

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"Relapsed or refractory pediatric liver cancers are rare, have limited treatment options, and remain difficult to treat," said Dr. Allison F. O’Neill, Clinical Director of the Solid Tumor Program, Director of Medical Therapies of the Liver Tumor Center of Excellence at Dana-Farber/Boston Children’s, and principal investigator of the clinical trial. "Engineered T-cell therapies have the potential to transform the outcome of patients with difficult-to-treat liver cancers. We are thrilled to work with Eureka Therapeutics and initiate a trial of ET140203 T-cell therapy for pediatric and adolescent patients with relapsed or refractory liver tumors."

The ARYA-2 trial is part of Eureka’s liver cancer program portfolio and is being run in parallel with Eureka’s ongoing ARYA-1 and ARYA-3 trials to evaluate ARTEMIS T cells in adult patients with HCC. With ARYA-1, ET140203 ARTEMIS T cells target an alpha fetoprotein (AFP)-peptide/HLA-A2 complex found on liver cancer cells. With ARYA-3, ECT204 ARTEMIS T cells target the Glypican 3 (GPC3) protein found on liver cancer cells.

"Eureka recognizes the highly unmet medical need in treating pediatric patients with advanced liver cancers," said Dr. Cheng Liu, President and CEO of Eureka Therapeutics. "We are pleased to be working with Dana-Farber to address it by bringing ARTEMIS T-cell therapies to patients in the clinics."

The US. Food and Drug Administration (FDA) has granted ET140203 Fast Track Designation for the treatment of HB and HCC in pediatric patients, and Rare Pediatric Disease Designation (RPDD) for the treatment of HB.

ABOUT THE FDA FAST TRACK AND RPDD DESIGNATIONS

The FDA’s Fast Track Designation facilitates and expedites the development and review of new drugs intended to treat serious or life-threatening diseases or conditions with unmet medical needs. Fast Track Designation allows early and frequent communication between the FDA and the company to expedite development, review, and potential marketing application of ET140203.

The FDA’s Rare pediatric disease designation is designed to encourage the development of drug candidates addressing serious or life-threatening rare diseases or conditions in children. Under the FDA’s Rare Pediatric Disease Priority Review Voucher program, a sponsor who receives approval for a drug candidate of such designation may qualify for a voucher that can be redeemed to receive a priority review of a subsequent marketing application for a different product.

ABOUT THE CLINICAL TRIAL AND ET140203

The ARYA-2 study is an open-label, dose escalation, multi-center, Phase I/II clinical trial designed to assess the safety/tolerability and preliminary efficacy of ET140203 T cells in pediatric subjects who are AFP-positive/HLA-A2-positive and have relapsed/refractory HB, HCN-NOS, or HCC. Additional information about Eureka’s Phase I/II study may be found at ClinicalTrials.gov, using Identifier NCT: NCT04634357.

ET140203 is an investigational therapy during which a patient’s T cells are collected, engineered to express Eureka’s proprietary ARTEMIS cell receptor and infused back into the patient. Engineered ET140203 T cells express a TCR-mimic antibody to target an alpha fetoprotein (AFP)-peptide/HLA-A2 complex on liver cancer cells. In addition, ET140203 ARTEMIS T cells also incorporate Eureka’s proprietary tumor infiltration technology demonstrating enhanced ability to infiltrate solid tumors in animal models, potentially leading to improved efficacy in patients.

Castle Biosciences Named in Inc.’s First-Annual Best-Led Companies

On November 17, 2021 Castle Biosciences, Inc. (Nasdaq: CSTL), a company applying innovative diagnostics to transform disease management and improve patient outcomes, reported that it has been named in Inc.’s first-annual Best-Led Companies list, a select, data-driven list of the very strongest U.S. firms with revenue of $50 million to $2 billion (Press release, Castle Biosciences, NOV 17, 2021, View Source [SID1234595744]).

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"This inaugural list of companies represents the remarkable midsized companies, both public and private, often founder-led, that are at the vanguard of reinventing American business," says Scott Omelianuk, editor-in-chief of Inc. magazine. "With their leadership, all business will benefit from an exciting, competitive future full of possibilities."

"At Castle, our commitment to improving patients’ lives through innovative diagnostics is what drives us forward; it is a passion that has ignited a strong purpose in our business since our founding," said Derek Maetzold, president and chief executive officer of Castle Biosciences. "Being ranked in Inc.’s inaugural Best-Led Companies list is an honor and affirms that we have built our business on a solid foundation that we believe will drive sustainable growth for years to come."

The list recognizes 250 companies that are agile enough to maneuver but also big enough to have a broad impact. These companies employ 35 million people, about one of four U.S. workers. All 250 have a successful track record with leadership teams that spur solid performance, create value, penetrate markets, engage with customers and more.

Applicants were analyzed via an algorithm that identified the strongest companies based on accomplishments in four key areas: performance and value creation; market penetration and customer engagement; talent; and leadership team.

To compile the list, Inc. evaluated private and public U.S.-based companies with a 2020 revenue of $50 million to $2 billion or a valuation of $50 million to $10 billion using a proprietary 14-point measure of management excellence generated with input from partners at Pitchbook and Shango Labs.

To see the complete list, go to: View Source