Geron Reports Inducement Grant Under Nasdaq Listing Rule 5635(c)(4)

On January 20, 2022 Geron Corporation (Nasdaq: GERN) reported that it has granted non-statutory stock options to purchase an aggregate of 435,800 shares of Geron common stock as inducements to newly hired employees in connection with commencement of employment with the Company (Press release, Geron, JAN 20, 2022, View Source [SID1234605624]).

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The stock options were granted on January 19, 2022 at an exercise price of $1.10 per share, which is equal to the closing price of Geron common stock on the date of grant. The stock options have a 10-year term and vest over four years, with 12.5% of the shares underlying the options vesting on the six-month anniversary of commencement of employment for the respective employees and the remaining shares vesting over the following 42 months in equal installments of whole shares, subject to continued employment with Geron through the applicable vesting dates. The options were granted as material inducement to employment in accordance with Nasdaq Listing Rule 5635(c)(4) and are subject to the terms and conditions of the stock option agreements covering the grants and Geron’s 2018 Inducement Award Plan, which was adopted December 14, 2018 and provides for the granting of stock options to new employees.

Spectrum Pharmaceuticals to Participate in B. Riley Securities 2022 Virtual Oncology Conference

On January 20, 2022 Spectrum Pharmaceuticals (NasdaqGS: SPPI), a biopharmaceutical company focused on novel and targeted oncology therapies, reported that management will participate in the B. Riley Securities 2022 Virtual Oncology Conference (Press release, Spectrum Pharmaceuticals, JAN 20, 2022, View Source [SID1234605642]). A fireside chat is scheduled for Thursday, January 27, 2022 at 9:30 a.m. ET / 6:30 a.m. PT.

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A live webcast of the fireside chat will be available from the Investor Relations section of the company’s website at View Source with a replay available shortly after the event.

Yingli Pharma and MD Anderson Initiate Strategic Collaboration to Advance Development of Multiple Oncology Programs

On January 20, 2022 Yingli Pharma US, Inc. (the "Company" or "Yingli"), a biotechnology company developing innovative small molecules, and The University of Texas MD Anderson Cancer Center reported a strategic alliance to advance several oncology programs from preclinical discovery through clinical development (Press release, Yingli Pharmaceutical, JAN 20, 2022, View Source [SID1234606682]).

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The five-year collaboration brings together Yingli’s experience in medicinal chemistry with MD Anderson’s comprehensive clinical and translational resources to drive existing Yingli therapeutic candidates into four U.S.-based clinical trials and to facilitate preclinical discovery and development in additional indications.

"This tremendous opportunity will accelerate our efforts as we look to bring new pharmacological agents to cancer patients in need," said Michael Hui, MBA, chief executive officer of Yingli. "We look forward to working with the experts at MD Anderson, complementing our own expertise as we continue to build a well-rounded oncology pipeline."

Two of the programs supported by the collaboration will leverage favorable clinical trial findings collected from China-based studies. The first program will focus on linperlisib, a PI3Kδ inhibitor with a novel structure, which has had positive results in eight active or completed Phase 1 and Phase 2 clinical trials for patients with lymphomas and solid tumors, including peripheral T cell lymphoma (PTCL).

"We are pleased to be working with Yingli to initiate a Phase 2 clinical trial evaluating linperlisib in patients with PTCL," said principal investigator Swaminathan Iyer, M.D., professor of Lymphoma & Myeloma at MD Anderson. "This collaboration brings a potentially effective treatment option with a favorable safety profile to the U.S. to address an unmet need for patients with this aggressive cancer. I look forward to leading this exciting study."

The second program will develop YL-13027, a novel, oral TGFβR1 inhibitor for use in advanced solid tumors with plans to initiate a U.S.-based Phase 1 clinical trial in 2022, led by Jordi Rodon, M.D., Ph.D., associate professor of Investigational Cancer Therapeutics at MD Anderson.

"The TGFβ pathway is an important immune regulator in the tumor microenvironment, and new treatments focused on enhancing anti-tumor immunity are desperately needed," Rodon said. "We look forward to working with Yingli to conduct the first U.S.-based clinical trial evaluating their TGFβR1 inhibitor."

In addition to advancing existing clinical programs, the collaboration also will focus on translational studies to further Yingli’s discovery programs. The collaborative approach will provide a steady stream of new therapeutic candidates for oncology clinical development, which the MD Anderson team, including David S. Hong, M.D., deputy chair of Investigational Cancer Therapeutics, will investigate.

About Linperlisib
Linperlisib (YY-20394) is a highly selective and potent PI3Kδ inhibitor that has shown a favorable safety profile, encouraging anti-tumor activities and promising PK and pharmaceutical properties as an oral once-a-day agent in late-stage clinical development. A Phase 1 clinical trial was completed in 2020 demonstrating linperlisib to be a safe and tolerable agent, and a recommended Phase 2 dose of 80 mg QD was established. Linperlisib was awarded NMPA Breakthrough Therapy status in China, leading to a Phase 2 study in follicular lymphoma (FL) that was completed and submitted in 2021 to China marketing authority for approval. In addition, linperlisib received FDA Orphan Drug Designations for FL, CLL/SLL and T cell lymphoma. Multiple linperlisib clinical trials being conducted in FL, PTCL, other lymphomas, solid tumors, combination with gemcitabine/oxaliplatin in r/r DLBC and combination with therapeutic PD1 antibody are underway in China and the U.S. Preliminary results of single agent linperlisib from a relapsed or recurrent PTCL Phase1b study were reported at ASCO (Free ASCO Whitepaper) 2021, indicating an overall response rate of 70% with 33% CRs for this difficult to treat and aggressive form of lymphoma.

About YL-13027
YL-13027 is a potent small molecule antagonist of TGFβR1 kinase in early-stage clinical development. The compound was optimized with selectivity against TGFβR2 and other kinases, differentiating YL-13027 from other inhibitors blocking TGFβ signaling. In preclinical studies, YL-13027 demonstrated anti-tumor efficacy, tumor immune modulation and combination benefit with immunotherapy. In IND-enabling studies, YL-13027 showed reliable dose-proportionality and pharmacokinetic properties, and the agent proved to be safe and tolerable in toxicity studies. The preliminary results of a Phase 1 dose escalation clinical trial of single agent YL-13027 were reported at ASCO (Free ASCO Whitepaper) 2021, including the safety and efficacy findings that the open-label study is continuing in order to establish a recommended Phase 2 dose of YL-13027.

GT Biopharma to Present at B. Riley Securities’ Virtual Oncology Conference

On January 20, 2022 GT Biopharma, Inc. (NASDAQ: GTBP), a clinical stage immuno-oncology company focused on developing innovative therapeutics based on the Company’s proprietary natural killer (NK) cell engager, TriKE protein biologic technology platform, reported that Dr. Greg Berk, President of R&D, Chief Medical Officer and Interim CEO will be participating in a Fireside Chat at the upcoming B. Riley Securities’ Virtual Oncology Conference (Press release, GT Biopharma, JAN 20, 2022, View Source [SID1234605626]).

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GT Biopharma Logo (PRNewsfoto/GT Biopharma, Inc.)

Details for the presentations are as follows:

B. Riley Oncology Conference
Date: January 27, 2022
Time: 9:30 A.M. EST
Webcast Participation: View Source

For additional information regarding the conference please contact B. Riley at [email protected].

Alpha Tau Announces New Research Collaboration to Study the Potential of Alpha DaRT to Enhance Immune Stimulation in the Treatment of Breast Cancer

On January 20, 2022 Alpha Tau Medical Ltd. ("Alpha Tau"), the developer of the innovative alpha-radiation cancer therapy Alpha DaRT, reported that it has signed a sponsored research agreement with investigators at The University of Texas MD Anderson Cancer Center ("MD Anderson") to evaluate potential immune stimulation by combining Alpha DaRT with DNA-repair inhibitors and immune checkpoint inhibitors for the treatment of breast tumors (Press release, Alpha Tau Medical, JAN 20, 2022, View Source [SID1234605643]).

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The study will be led by Gabriel Sawakuchi, Ph.D., Associate Professor of Radiation Physics, and Simona Shaitelman, M.D., Associate Professor of Radiation Oncology at MD Anderson, together with Alpha Tau’s translational research and physics teams. The research will focus on the mechanism of alpha radiation, with its higher relative efficiency in killing cancer cells, in comparison to traditional radiation modalities such as protons and photons, to assess any potential synergy in providing immune stimulation for enhanced destruction of breast cancer cells. The investigators will examine whether such a synergy exists between Alpha DaRT, immune checkpoint inhibitors, and biological treatments that inhibit DNA repair in a pre-clinical setting.

Alpha Tau CTO Ronen Segal said, "This is an extremely exciting collaboration for Alpha Tau. We are delighted to work with such an extraordinary team to examine a very promising hypothesis: that Alpha DaRT may be uniquely well-suited to treat what has been a particularly deadly and intractable form of cancer."

About Alpha DaRT
Alpha DaRT (Diffusing Alpha-emitters Radiation Therapy) is designed to enable highly potent and conformal alpha-irradiation of solid tumors by intratumoral delivery of radium-224 impregnated sources. When the radium decays, its short-lived daughters are released from the source and disperse while emitting high-energy alpha particles with the goal of destroying the tumor. Since the alpha-emitting atoms diffuse only a short distance, Alpha DaRT aims to mainly affect the tumor, and to spare the healthy tissue around it.