Nkarta Announces Positive Preliminary Dose Finding Data for Two Lead Engineered Natural Killer Cell Programs

On April 25, 2022 Nkarta, Inc. (Nasdaq: NKTX), a biopharmaceutical company developing engineered natural killer cell therapies to treat cancer, reported positive preliminary Phase 1 data from independent dose finding studies of its two lead chimeric antigen receptor (CAR) natural killer (NK) cell therapy candidates, NKX101 and NKX019, in two distinct groups of hematologic malignancies (Press release, Nkarta, APR 25, 2022, View Source [SID1234612903]).

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"We’re excited to see our CAR NK co-lead candidates, NKX101 and NKX019, show such striking early single-agent activity in heavily pretreated patient populations, with an exceptional safety profile without the side effects associated with CAR T cell therapies," said Paul J. Hastings, President and CEO of Nkarta. "These encouraging data across multiple indications further validate Nkarta’s best-in-class NK cell platform, as we seek to transform cancer treatment by bringing together the safety advantages of NK cells with an off-the-shelf modality designed to make the benefits of cell therapy accessible in a community setting."

In the first trial, evaluating NKX101, in relapsed / refractory (r/r) acute myeloid leukemia (AML) and myelodysplastic syndrome (MDS), three of five patients with heavily pre-treated AML who received the higher dose level in a three-dose regimen achieved a complete response (60% CR) with hematologic recovery, with two of the three responses MRD (minimal residual disease) negative. There is currently no standard of care for these patients.

In the second trial, evaluating NKX019, in r/r B cell malignancies, three of six patients treated at the higher dose level in a three-dose regimen showed a complete response (50% CR), including one patient with aggressive diffuse large B cell lymphoma (DLBCL) and one patient with mantle cell lymphoma (MCL). In both trials, no dose limiting toxicity was observed and there were no CAR T like adverse events of any grade.

Nkarta continues to enroll patients in three-dose regimens of 1.5 billion NK cells per dose in the dose finding portions of the NKX101 and NKX019 trials. Data from both programs, including additional follow-up and updates on the higher dose cohorts, will be submitted for presentation at a future medical meeting.

Evaluating NKX101 in r/r acute myeloid leukemia
NKX101 is an allogeneic, cryopreserved, off-the-shelf cancer immunotherapy candidate that uses NK cells engineered to target NKG2D ligands on cancer cells. NKX101 is being evaluated in a dose-escalation Phase 1 study as a multi-dose, multi-cycle monotherapy in patients with r/r AML and higher-risk MDS.

As of April 21, 2022, 21 patients were enrolled and dosed, 17 with a diagnosis of AML and four with MDS. Patients were heavily pre-treated and had received a median of three prior lines of therapy (range of 1 to 12). All patients with AML had received prior treatment with venetoclax. At baseline, the median percentage of blast cells in bone marrow was 27% (range of 3 to 85%).

"Relapsed/refractory acute myeloid leukemia (AML) is a historically hard-to-treat disease, and given the lack of effective treatments, people with cancer and those who treat them are faced with few options," said Marcello Rotta, M.D., Colorado Blood Cancer Institute (CBCI), a part of the Sarah Cannon Cancer Institute at Presbyterian/St. Luke’s Medical Center, and investigator in the NKX101 clinical trial. "Complete responses with corresponding MRD negativity in r/r AML using engineered NK cells, as seen in these preliminary findings, is encouraging. We look forward to leading further investigation to better understand the full potential of a CAR NK approach."

Safety in NKX101
NKX101 was well tolerated. No dose-limiting toxicities were observed. Toxicities associated with engineered chimeric antigen receptor (CAR) T cell treatments were not observed at any dose, including cytokine release syndrome, graft-versus-host disease, and immune effector cell-associated neurotoxicity (ICANS). The most common higher-grade adverse events were myelosuppression – a condition resulting in fewer red blood cells, white blood cells and platelets, and infection, which are common in this patient population post lymphodepletion. Two patients experienced Grade 2 infusion reactions, transient fever and fluid responsive hypotension. (See table 1.) The emerging safety profile of NKX101 is positively differentiated from those of many cell therapies.

Treatment emergent adverse events regardless of relationship based on interim data from open clinical database as of 21 Apr 2022 ​
^ In the setting of febrile neutropenia/pneumonia
Clinical Activity in NKX101
Twenty-one patients who received NKX101 were assessed (See table 2.) In the two highest dose-level cohorts (3 doses of 1 billion cells or 3 doses of 1.5 billion cells), 3 of 5 patients with AML achieved a complete response (60% CR) with hematologic recovery. Two of the 3 reported complete responses were MRD (minimal residual disease) negative. MRD negativity is broadly viewed as an important quantitative measure of disease burden in AML and is associated with increased disease-free survival and decreased risk of recurrence. For all cohorts in the dose finding portion, 8 of 17 patients with AML achieved an overall response (47% ORR) and 3 of 17 achieved a complete response with hematologic recovery (18% CR). Four patients with MDS were treated, with no response observed.

NKX019 is an allogeneic, cryopreserved, off-the-shelf cancer immunotherapy candidate that uses NK cells engineered to target the B-cell antigen CD19, a clinically validated target for B-cell cancer therapies. The NKX019 Phase 1 study is evaluating the safety and anti-tumor activity of NKX019 as a multi-dose, multi-cycle monotherapy in patients with r/r B cell malignancies.

As of April 21, 2022, 13 patients were enrolled and dosed. Ten patients entered the study with a diagnosis of non-Hodgkin lymphoma (NHL), 5 of which were aggressive large B cell lymphoma (LBCL). Patients had received a median of 4 prior lines of therapy (range of 2 to 7). To date, enrollment has included patients with aggressive disease presentations and extensive lesions throughout the body. Patients were enrolled at clinical trial sites in Australia (10) and the United States (3).

"The curative potential of CAR T cell therapy is truly remarkable, but many eligible patients are still not cured, and the safety and logistical challenges of approved autologous CAR T therapy are barriers," said Michael Dickinson, M.D., Lead, Aggressive Lymphoma disease group, Clinical Haematology, Peter MacCallum Cancer Centre and Royal Melbourne Hospital, and investigator in the NKX019 trial. "The NKX019 trial exemplifies the continued progress of our field. NKX019 showed clear activity, in patients with a range of NHL histologies, without the sort of toxicities expected of other cellular therapies, supporting continued exploration of this CAR NK candidate."

Safety in NKX019
NKX019 was well tolerated. No dose-limiting toxicities were observed. Toxicities associated with CAR T cell treatments were not observed at any dose, including cytokine release syndrome, graft-versus-host disease, and ICANS. The most common higher-grade adverse events were myelosuppression – a condition resulting in fewer red blood cells, white blood cells and platelets, which is common in this patient population post lymphodepletion. (See table 3.) One patient experienced Grade 1 infusion reactions. The emerging safety profile of NKX019 is positively differentiated from those of many cell therapies.

Treatment emergent adverse events regardless of relationship based on interim data from open clinical database as of 21 Apr 2022 ​

Clinical Activity in NXK019
Thirteen patients who received NKX019 were assessed. (See table 4.) Five of 6 patients with NHL in the cohort receiving 3 doses of 1 billion cells achieved a response (83% ORR), and 3 of 6 achieved a complete response (50% CR rate). For all cohorts in the dose finding portion, 7 of 10 evaluable patients with NHL achieved an objective response (70% ORR) and 4 of 10 achieved a complete response (40% CR). Three patients with ALL were treated, with no response observed.

NXK019 Clinical Activity (Table 4)

NKX101 is an allogeneic, cryopreserved, off-the-shelf cancer immunotherapy candidate that uses natural killer (NK) cells engineered to target NKG2D ligands on cancer cells. The dose-finding portion of the NKX101 Phase 1 study evaluates the safety and anti-tumor activity of NKX101 as a multi-dose, multi-cycle monotherapy following lymphodepletion in patients with r/r AML and higher-risk MDS. Patients must have received at least one prior therapy, and patients diagnosed with a disease mutation must have received a targeted therapy, where approved.

Patients in the NKX101 Phase 1 trial received a cycle of treatment consisting of fludarabine/ cyclophosphamide lymphodepletion followed by either a three-dose regimen where NKX101 cells were given on Days 0, 7, and 14; or a two-dose regimen where the cells were given on Days 0 and 7. Patients received doses of 100 million, 300 million, 1 billion or 1.5 billion NK cells three times in the 3-dose regimen, or doses of 150 million, 450 million or 1.5 billion NK cells two times in the 2-dose regimen. Based on tumor response and tolerability assessment, patients were eligible to receive additional treatment cycles. Disease assessment was performed by investigator review according to the ELN response criteria for patients with AML and Cheson response criteria for patients with MDS.

About the NKX019 Trial
NKX019 is an allogeneic, cryopreserved, off-the-shelf cancer immunotherapy candidate that uses natural killer (NK) cells engineered to target the B-cell antigen CD19, a clinically validated target for B-cell cancer therapies. The dose-finding portion of the NKX019 Phase 1 study evaluates the safety and anti-tumor activity of NKX019 as a multi-dose, multi-cycle monotherapy following lymphodepletion in patients with r/r B cell malignancies. Patients must have received at least two prior therapies. Patients who received prior autologous CAR-T therapy were not eligible.

Patients in the NKX019 trial received a cycle of treatment consisting of fludarabine/cyclophosphamide lymphodepletion followed by NKX019 cells in a three-dose regimen where cells were given on Days 0, 7, and 14. Patients received doses of 300 million or 1 billion cells three times in a cycle. Based on tumor response and tolerability assessment, patients were eligible to receive additional treatment cycles. Disease assessment was performed by investigator review according to the 2014 Lugano response criteria for patients with NHL and NCCN response criteria for patients with ALL.

About NKX101
NKX101 is an allogeneic, cryopreserved, off-the-shelf cancer immunotherapy candidate that uses natural killer (NK) cells derived from the peripheral blood of healthy donors. It is engineered with a chimeric antigen receptor (CAR) targeting NKG2D ligands on tumor cells. NKG2D, a key activating receptor found on naturally occurring NK cells, induces a cell-killing immune response through the detection of stress ligands that are widely expressed on cancer cells. NKX101 is also engineered with membrane-bound form of interleukin-15 (IL15) for greater persistence and activity without exogenous cytokine support. To learn more about the NKX101 clinical trial in adults with AML or MDS, please visit ClinicalTrials.gov.

About NKX019
NKX019 is an allogeneic, cryopreserved, off-the-shelf cancer immunotherapy candidate that uses natural killer (NK) cells derived from the peripheral blood of healthy adult donors. It is engineered with a humanized CD19-directed CAR for enhanced tumor cell targeting and a proprietary, membrane-bound form of interleukin-15 (IL-15) for greater persistence and activity without exogenous cytokine support. CD19 is a biomarker for normal and malignant B cells, and it is a validated target for B cell cancer therapies. To learn more about the NKX019 clinical trial in adults with advanced B cell malignancies, please visit ClinicalTrials.gov.

FibroGen to Report First Quarter 2022 Financial Results

On April 25, 2022 FibroGen, Inc. (NASDAQ: FGEN) reported that it will announce its first quarter 2022 financial results on Monday, May 9 after the market close (Press release, FibroGen, APR 25, 2022, View Source [SID1234612902]). FibroGen will also conduct a conference call on that day at 5:00 p.m. ET (2:00 p.m. PT) with the investment community to further detail the company’s corporate and financial performance .

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Conference Call and Audio Webcast
Interested parties may access a live audio webcast of the conference call via the FibroGen website at View Source It is recommended that listeners access the website 15 minutes prior to the start of the call to download and install any necessary audio software.

A replay of the webcast and investor presentation will be available shortly after the call for a period of 7 days. To access the replay, please dial (855) 859-2056 (domestic) or (404) 537-3406 (international) and use passcode 2487763.

ERYTECH Sells U.S. Manufacturing Facility
and Enters Long-Term Supply Agreement
with Catalent

On April 25, 2022 ERYTECH Pharma (Euronext Paris: ERYP—Nasdaq: ERYP), a clinical-stage biopharmaceutical company developing innovative therapies by encapsulating therapeutic drug substances inside red blood cells, reported the sale of its U.S. manufacturing facility to Catalent, a leading contract development and manufacturing organization (CDMO) in advanced therapies (Press release, ERYtech Pharma, APR 25, 2022, View Source [SID1234612901]).

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Under the terms of an asset purchase agreement between ERYTECH and Catalent (the "APA"), Catalent agreed to acquire ERYTECH’s state-of-the-art commercial-scale cell therapy manufacturing facility in Princeton, New Jersey, for a total consideration of $44.5 million. ERYTECH’s current staff at the site of approximately 40 people will be offered Catalent’s employment.

The parties will also enter into a long-term supply agreement, under which Catalent will manufacture ERYTECH’s lead product candidate eryaspase (GRASPA) for clinical and commercial supply in the United States. ERYTECH has a Phase 1 trial in first-line pancreatic cancer ongoing in the United States and is in a continued dialogue with the U.S. FDA regarding a potential BLA submission for GRASPA in hypersensititve ALL, now targeted in the third quarter of 2022, subject to FDA agreement on remaining outstanding information requests.

Catalent will also offer their expertise in late-stage and commercial manufacturing of advanced therapy medicinal products with respect to product characterization, commercial production, regulatory inspections, and approvals.

ERYTECH’s Princeton facility is a 30,900 sqft cutting edge manufacturing facility, designed with the flexibility to expand to support various cell therapy production requirements and capacities. Catalent intends to expand the Princeton site and leverage ERYTECH’s experienced staff to manufacture a broader portfolio of cell therapies. ERYTECH will retain its manufacturing site in Lyon, France and its expertise and capabilities in manufacturing process science to continue innovating in cell therapy manufacturing.

"In Catalent we have found a great partner for the manufacturing of our innovative red blood cell derived products, and we believe that this strategic partnership will meet our long-term manufacturing needs in the United States," commented Gil Beyen, Chief Executive Officer of ERYTECH, "As we are turning this important page for ERYTECH, I wish to thank our entire Princeton team very much for their talent and dedication in building and developing our flagship facility since its inception in 2018. ERYTECH will now further focus capital resources on the development of potentially transformative therapeutics for serious diseases. We are also continuing to evaluate further strategic options for the company, including additional partnerships and addition of complementary assets, through which we can leverage our ERYCAPS platform and our development and manufacturing capabilities."

"This acquisition is strategically important to Catalent’s commitment to support the development, clinical, and commercial supply of cell therapies to meet rapidly growing demand," said Manja Boerman, Ph.D., President, Catalent Cell & Gene Therapy. "The talented and experienced staff already employed at the facility, the capabilities it has in place, and the opportunity to quickly add further capacity on the same site, allows Catalent to expand rapidly to create a U.S. campus and center of excellence for cell therapy development and manufacturing that will serve customers around the world."

ERYTECH reported cash and cash equivalents of €33.7 million ($38.1 million) as of December 31, 2021. Upon closing of the transaction, ERYTECH’s cash and cash equivalents are expected to be approximately €55 million ($60 million) with the addition of the $44.5 million (€40.8 million) purchase price payment. With a reduction in yearly cash disbursements of approximately $7.5 million related to running costs of the Princeton facility, this cash position is expected to fund ERYTECH’s operations under its current configuration to mid-2024.

KEY TRANSACTION TERMS

In connection with the transaction, ERYTECH’s board of directors has established an ad hoc committee in order to review the indications of interests received by ERYTECH and to issue a recommendation to its board of directors. After having assessed the transaction and potential strategic alternatives, ERYTECH’s board of directors has unanimously approved it on the basis, inter alia, of the recommendation of the ad hoc committee and the opinion of its works council.

Pursuant to the APA, Catalent paid a total consideration of $44.5 million to ERYTECH.

Pursuant to the APA, ERYTECH has made certain representations and warranties on the transferred assets. ERYTECH has also agreed to certain customary covenants and restrictions with respect to assets and liabilities comprising the transaction consistent with a transaction of this nature.

The parties will also enter into a long-term supply agreement for the manufacturing and supply of the lead product candidate eryaspase (GRASPA) by Catalent to ERYTECH.

Duane Morris is serving as legal counsel to Catalent. Cooley LLP and Gide Loyrette Nouel A.A.R.P.I. are serving as legal counsel to ERYTECH. Torreya Capital LLC is serving as exclusive financial advisor to ERYTECH.

Cerus Corporation Announces Multi-Year Contract for the INTERCEPT Blood System for Platelets with the American Red Cross

On April 25, 2022 Cerus Corporation (Nasdaq: CERS) reported that it has signed a five-year contract with the American Red Cross for the INTERCEPT Blood System for Platelets (Press release, Cerus, APR 25, 2022, View Source [SID1234612900]).

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Under the terms of this contract, Cerus will continue to supply the Red Cross the INTERCEPT Blood System used to produce pathogen reduced platelets, in support of the Red Cross goal to transition toward a full pathogen reduced platelet supply for its hospital customers across the U.S.

"The Red Cross is a global leader in transfusion medicine, with a track record of establishing blood safety protocols that have provided a blueprint for many blood centers globally. Cerus is proud of our long history of collaborating with the Red Cross, as they have played a critical role in the deployment of the INTERCEPT Blood System to safeguard the U.S. blood supply," stated William "Obi" Greenman, Cerus’ president and chief executive officer. "Thanks to their leadership and commitment to blood safety, the Red Cross is now the largest producer of INTERCEPT treated blood components in the world. Our partnership has made thousands of INTERCEPT treated platelets available for patients across the country each day, and we are excited to extend this relationship and continue advancing the INTERCEPT Blood System."

Supplying about 40 percent of the nation’s blood supply, the Red Cross is the largest provider of blood products in the United States, collecting more than 4.6 million blood donations and 1 million platelet donations for its approximately 2,500 hospital and transfusion center customers in 2021.1

"The safety and sustainability of the blood supply is of paramount importance for us, as well as for the hospitals, physicians and patients who we serve," said Chris Hrouda, president, Biomedical Services at American Red Cross. "INTERCEPT treated platelets meet the FDA’s bacterial safety requirements and also protect patients against a broad spectrum of transfusion-transmitted infections caused by known and unknown pathogens. The Red Cross remains committed to finding proactive ways to ensure the safety and availability of the blood supply."

Black Diamond Therapeutics Announces Pipeline Prioritization and Workforce Realignment

On April 25, 2022 Black Diamond Therapeutics, Inc. (Nasdaq: BDTX), a precision oncology medicine company pioneering the discovery and development of MasterKey therapies, reported that it is realigning its resources to focus on key near-term value drivers and to extend its cash runway into the third quarter of 2024, supporting the execution of important clinical and preclinical milestones (Press release, Black Diamond Therapeutics, APR 25, 2022, View Source [SID1234612899]).

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"Black Diamond’s mission of expanding the reach of precision cancer medicines through the development of our novel MasterKey therapies is at the core of our daily work, and we believe that our MAP discovery engine offers a novel approach to addressing major unmet needs within the oncology treatment landscape," said David Epstein, Ph.D., President and Chief Executive Officer of Black Diamond Therapeutics. "In order to increase our operational efficiency and execute on our mission, we have made the difficult decision to reduce our workforce by approximately 30%. We are incredibly grateful to every member of the Black Diamond team who has helped to advance MasterKey therapies for the many patients in need of new therapeutic options as well as to the patients and investigators involved in the clinical trial of BDTX-189. The actions announced today enable us to focus and strengthen our organizational priorities, reduce our operating expenses, and continue to invest in value generating clinical development activities to bring us to the next inflection points for BDTX-1535 and BDTX-4933."

Black Diamond has discontinued the development of BDTX-189 and realigned its workforce to focus on progressing its pipeline through important upcoming milestones for BDTX-1535, BDTX-4933 and discovery efforts. Since its announcement regarding the status of BDTX-189 in January 2022, the Company has been reviewing the development program for BDTX-189, an orally available, irreversible small molecule inhibitor targeting oncogenic driver mutations of the epidermal growth factor receptor (EGFR) and human epidermal growth factor receptor 2 (HER2) kinases, while continuing to enroll patients in the safety expansion cohort of the Phase 1 study. As part of its strategic review, Black Diamond has decided to discontinue development of the program due to the rapid evolution of the treatment landscape in non-small cell lung cancer (NSCLC) harboring either EGFR or HER2 Exon 20 insertion mutations.

Black Diamond is aligning its operational and scientific efforts on two priority programs, in addition to its discovery efforts.

BDTX-1535

BDTX-1535 is designed as a potent, selective, brain-penetrant and irreversible MasterKey inhibitor of EGFR mutations expressed in glioblastoma multiforme and of intrinsic and acquired resistance EGFR mutations to third generation EGFR inhibitors in NSCLC.
Black Diamond initiated the Phase 1 study of BDTX-1535 in the first quarter of 2022 and expects to provide a clinical data update in 2023.
BDTX-4933

BDTX-4933 is a central nervous system (CNS)-penetrant BRAF inhibitor against a family of Class I, II, III canonical and non-canonical mutations being developed for the treatment of patients with or without brain tumors driven by oncogenic BRAF mutations. BDTX-4933 is designed to be highly selective and potent, with the ability to avoid paradoxical activation.
Black Diamond initiated investigational new drug (IND)-enabling studies in the first quarter of 2022 and expects to submit an IND for BDTX-4933 in the first half of 2023.
Discovery Efforts

Black Diamond will continue the advancement of its discovery efforts generated from its Mutation-Allostery-Pharmacology (MAP) Drug Discovery Engine focused on predicting and validating novel oncogenic mutant families from population level tumor genomics. Black Diamond anticipates announcing a development candidate for its FGFR program in 2022 in addition to disclosing a new small molecule development candidate in 2023.