Cellectis Presents Pre-Clinical Data on TALEN®-edited Smart CAR T-cells Overcoming Key Challenges of Targeting Solid Tumors at SITC 2022

On November 10, 2022 Cellectis (the "Company") (Euronext Growth: ALCLS – NASDAQ: CLLS), a clinical-stage biotechnology company using its pioneering gene-editing platform to develop life-saving cell and gene therapies, reported that preclinical data will be presented on TALEN-edited smart CAR T-cells overcoming key challenges of targeting solid tumors at the Society for Immunotherapy of Cancer (SITC) (Free SITC Whitepaper)’s (SITC) (Free SITC Whitepaper) 37th Annual Meeting (Press release, Cellectis, NOV 10, 2022, View Source [SID1234623684]).

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The data will be presented today in two poster sessions titled: "Multi-armored allogeneic MUC-1 CAR T-cells efficiently control triple negative breast cancer tumor growth" (Poster Number: 217) and "TALEN-edited smart CAR T-cells leverage solid tumor microenvironment for specific and effective immunotherapy" (Poster Number: 325).

The poster presentations highlight the following preclinical data:

Multi-armored allogeneic MUC-1 CAR T-cells efficiently control triple negative breast cancer tumor growth

· This poster highlights TALEN-edited smart CAR T-cells targeting MUC1- expressing solid tumors.

· MUC1 is a tumor-associated antigen that is overexpressed in triple-negative breast cancer (TNBC) and other solid tumor malignancies.

· MUC-1 CAR T-cells infiltrate tumors more efficiently and extend survival when enhanced with attributes catered towards the tumor microenvironment (TME) of TNBC tumors.

· TGFBR2 knock-out (KO) circumvents the inhibitory effects of TGFβ1, and IL-12 release follows CAR T-cell activation pattern restricting it to the tumor site for increased safety.

· Enhanced MUC-1 CAR T-cells could address some of the current challenges in development of CAR Ts for TNBC patients with unmet medical needs.

· Overall, we can efficiently generate allogeneic CAR T-cells and engineer them to overcome several key challenges of immune suppressive solid tumors.

TALEN-edited smart CAR T-cells leverage solid tumor microenvironment for specific and effective immunotherapy

· This poster highlights innovative T-cell engineering strategies designed to increase the activity of CAR T-cells for solid tumors while mitigating toxicity risk.

· Therapeutic efficacy of CAR T-cell therapy has so far been restricted to only a few malignancies, with solid tumors proving to be especially recalcitrant to efficient therapy. Our TALEN-based gene editing platform allows innovative T cell engineering strategies that can combat some of the challenges posed by CAR T cell development for solid tumors.

· Inducible expression of a tumor-antigen directed CAR by a constitutive CAR specific to TME cues greatly enhanced anti-tumor activity, while limiting ‘on target, off-tumor’ cytotoxicity. Additionally, CAR-induced gene expression could boost anti-tumor CART only within the TME.

· Cellectis’ gene editing strategies could increase CAR T cell persistence and anti-tumor activity while staying restricted to the tumor milieu.

· This proof-of-concept study demonstrates the feasibility of developing CART cell engineering strategies that can improve solid tumor targeting while mitigating potential safety risks, paving the way for clinical development.

Laurent Poirot, Ph.D., Senior Vice President Immunology at Cellectis, noted:

"Using our TALEN-based gene editing platform, we have presented innovative T cell engineering strategies that can combat some of the challenges posed by CAR T cell development for solid tumors. We are mitigating potential safety risks, paving the way for clinical development for patients with unmet medical needs."

Presentations will occur today, from 9:00AM until 9:00PM ET, Hall C.

A copy of both poster presentations will be available on Cellectis’ website here, shortly after the event.

Tempest Presents Data Showing TPST-1120-Induced Pharmacodynamic Changes Consistent with Clinical Benefit Observed in Patients with Cancer

On November 10, 2022 Tempest Therapeutics, Inc. (Nasdaq: TPST), a clinical-stage oncology company focused on developing first-in-class therapeutics that combine both targeted and immune-mediated mechanisms, reported the presentation of data on TPST-1120, an oral selective peroxisome-proliferator activated receptor-alpha (PPAR-α) antagonist, and TPST-1495, a dual antagonist of both EP2 and EP4 prostaglandin (PGE2) receptors, at the Society for Immunotherapy of Cancer (SITC) (Free SITC Whitepaper) 37th Annual Meeting taking place November 10-12, 2022 in Boston, MA (Press release, Tempest Therapeutics, NOV 10, 2022, View Source [SID1234623683]).

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The biomarker results presented from the TPST-1120 Phase 1 clinical study demonstrate pharmacodynamic changes in circulating blood in patients who received clinical benefit from therapy that are consistent with blocking the activity of PPAR-α. In addition, data presented from TPST-1495 showed that its dual antagonism of EP2 and EP4 generated significantly greater immune activation in human immune cells and anticancer activity in mouse tumor models than single inhibitors of either receptor, or the COX-2 inhibitor, celecoxib.

"As we advance the Tempest pipeline, we continue to generate results that validate and differentiate the novel approaches of our product candidates," said Tom Dubensky, Ph.D., president of Tempest. "For patients who responded to treatment with TPST-1120 in our Phase 1 study, we have identified potential biomarkers in the peripheral blood of immune activation and alleviation of immune suppression. These discoveries may enable us to identify patient populations in future clinical studies that are most likely to benefit from treatment with TPST-1120."

TPST-1120: "Pharmacodynamic and Predictive Biomarkers Associated with Response in Cancer Patients Treated with TPST-1120: a First-in-class, Small Molecule Antagonist of Peroxisome-Proliferator Activated Receptor-Alpha"

In a late-breaking poster presentation, data from a Phase 1 trial with monotherapy and nivolumab combination arms were used to assess gene expression changes in post-treatment whole blood from 30 patients and to perform baseline mutational analysis on ctDNA to identify potential biomarkers. The data showed that seven genes were modulated by TPST-1120 exposure (p<0.05), including genes associated with enhanced immune responsiveness (CXCL16, TNFRSF1A), stimulation of monocytes or macrophages (ITGAX, FCGR2A) and PPAR-α blockade (NCF4). The results were consistent across monotherapy and combination arms. Patients in the combination arm who had a partial response (PR) to treatment had significant elevations (p<0.05) in multiple genes, including those associated with Th17 development (RORC), lipid transport (APOE) and down-regulation of CD155, a TIGIT ligand. Mutational analysis revealed that patients with a PR or stable disease were more likely to bear mutations in isocitrate dehydrogenase (IDH) and phosphatase and tensin homolog (PTEN) compared to patients with progressive disease.

TPST-1495: "Dual Blockade of the EP2 and EP4 PGE2 Receptors with TPST-1495 is an Optimal Approach for Drugging the Prostaglandin Pathway"

In a second presentation, the data demonstrated that TPST-1495 was more effective than EP2 and EP4 single antagonists, and the COX-2 antagonist, celecoxib, in mouse and human whole blood assays. TPST-1495 conferred a near complete restoration of immune function in cellular assays, even in the presence of high PGE2 concentrations. In lung carcinoma tumors and in a spontaneous tumor mouse model of CRC, TPST-1495 decreased tumor size and number of tumors. Immunohistochemistry analysis of the resected small intestine tumors revealed increased immune infiltrate and an enhanced adaptive immune transcriptional profile.

Allakos Presents Preclinical Data on AK007, a Siglec-10 Antagonist Antibody, at the Society for Immunotherapy of Cancer’s 37th Annual Meeting

On November 10, 2022 Allakos Inc. (Nasdaq: ALLK), a clinical-stage biotechnology company developing therapeutics which target immunomodulatory receptors present on immune effector cells involved in allergy, inflammatory and proliferative diseases, reported a poster presentation at the Society for Immunotherapy of Cancer (SITC) (Free SITC Whitepaper)’s (SITC) (Free SITC Whitepaper) 37TH Annual Meeting (Press release, Allakos, NOV 10, 2022, View Source [SID1234623682]). The poster presentation highlights pre-clinical data supporting Siglec-10 as a promising myeloid target for enhancing anti-tumor immunity in solid tumors.

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SITC Poster Details:

The poster titled "Antibody blockade of the immunoinhibitory receptor Siglec-10 polarizes tumor-associated myeloid cells and promotes anti-tumor immunity" will be presented on Friday, November 11TH, key findings include:

Siglec-10 is a myeloid inhibitory checkpoint receptor selectively expressed on tumor associated macrophages (TAMs) and dendritic cells (DCs)
Siglec-10 expression is upregulated in multiple solid cancers and inversely correlates with patient survival in colon adenocarcinoma
Siglec-10 antagonist mAb monotherapy treatment inhibited tumor growth in a syngeneic colon adenocarcinoma model in Siglec-10 transgenic mice
Reduced tumor growth was associated with an expansion and activation of TAMs, dendritic cells, and T lymphocytes in the tumor, consistent with the mechanism of action
The poster is both available on the SITC (Free SITC Whitepaper) website (Abstract ID: 1396) as well as the Allakos Scientific Presentations page.

About Siglec-10 and AK007

In proliferative diseases like cancer, blocking immune inhibitory checkpoint receptors can restore the immune system’s ability to identify and kill tumor cells. Therapeutics that target T cell checkpoint receptors, such as PD-1 and CTLA-4, or their ligands, were the first to demonstrate meaningful anti-tumor activity by blocking immune cell inhibition (i.e. removing the brakes).

More recently, ‘don’t eat me’ signals, such as CD47 and CD24, have been identified to be overexpressed in tumors and allow cancer cells to avoid destruction by macrophages and other myeloid cells of the innate immune system. Restoring myeloid cell function has the potential to increase anti-tumor immunity by activating both innate and adaptive immune cells. Strategies which target ‘don’t eat me’ signals or their myeloid checkpoint receptors represent attractive targets for the treatment of cancer.

Siglec-10 is a checkpoint receptor selectively expressed on tumor associated macrophages (TAMs) and dendritic cells (DCs). Siglec-10 functions as an inhibitory receptor through interaction with multiple ligands, including the ‘don’t eat me’ signal CD24 as well as CD52 and VAP-1. Siglec-10 induces immunosuppression and promotes tumor immune escape through interaction with CD24. Similarly, CD52 has been shown to induce inhibition via Siglec-10, indicating that Siglec-10 functions as an inhibitory receptor through multiple ligands. Siglec-10 is elevated in multiple tumor types and increased expression has been inversely correlated with patient survival in multiple solid tumors, suggesting that Siglec-10 may play a role in tumor evasion.

AK007 is a humanized Siglec-10 antagonist antibody designed to block Siglec-10 interaction with all known ligands (CD24, CD52, and VAP-1). By targeting Siglec-10, AK007 has the potential to reverse myeloid suppression and promote anti-tumor immunity by directly blocking the checkpoint receptor irrespective of individual ligand interaction.

Allakos is currently conducting additional pre-clinical studies with AK007.

Sensei Biotherapeutics Presents Preclinical Data at the 37th Society for Immunotherapy of Cancer (SITC) Annual Meeting

On November 10, 2022 Sensei Biotherapeutics, Inc. (Nasdaq: SNSE), an immuno-oncology company focused on the discovery and development of next-generation therapeutics for cancer patients, reported that preclinical data for SNS-101, a conditionally active VISTA-blocking antibody, as well as characterization of VSIG4, an immune checkpoint targeted by Sensei’s discovery-stage SNS-102 program, at the Society for Immunotherapy of Cancer (SITC) (Free SITC Whitepaper) 37th Annual Meeting (Press release, Sensei Biotherapeutics, NOV 10, 2022, View Source [SID1234623681]).

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"The data presented at SITC (Free SITC Whitepaper) add to the growing body of evidence that our TMAb platform is a potentially powerful approach for unlocking previously undruggable immune targets. With the advancement of SNS-101, we have a highly pH-selective antibody to VISTA, which is designed to be conditionally active within the tumor microenvironment," said Robert Pierce, M.D., Chief R&D Officer at Sensei. "We have also made exciting progress in our SNS-102 program, with the functional characterization and identification of novel T-cell receptors that may play a role in VSIG4-mediated immunosuppression. We look forward to advancing both programs with an upcoming IND filing for SNS-101 and identification of a lead anti-VSIG4 antibody in 2023."

Presentation Highlights:

Poster presentation titled, "SNS-101, a highly pH-selective VISTA:PSGL-1 inhibitory antibody, potentiates anti-PD-1 sensitivity, expands memory T-cells and enhances tumor infiltration of CD8 T-cells"

Summary: Sensei has developed SNS-101, a conditionally active, human monoclonal IgG1 antibody specific for the protonated, active form of VISTA, which in preclinical studies has demonstrated the ability to disrupt the immunosuppressive VISTA:PSGL-1 interaction, avoid target-mediated drug disposition (TMDD) and mitigate potential cytokine release syndrome (CRS).

SNS-101 did not bind to human or non-human primates (NHP) VISTA+ monocytes, neutrophils and natural killer cells in blood or other normal tissue compartments.
SNS-101 induced significant expansion of naïve CD8 T-cells and memory CD4 and CD8 T-cells in vivo without activation or depletion of monocytes.
SNS-101 exhibited linear elimination kinetics in non-human primates, overcoming TMDD-induced pharmacokinetic limitations observed with other anti-VISTA antibodies.
In an MC-38 syngeneic tumor model, SNS-101 demonstrated significant enhancement of anti-tumor effects in combination with anti-PD-1 antibodies and a dose-dependent increase in CD8+ T-cells.
IND filing for SNS-101 is anticipated in the first half of 2023.
Poster presentation titled, "Functional characterization of the inhibitory activity and identification of novel T-cell receptors for the tumor-associated macrophage receptor VSIG4"

Summary: Sensei characterized endogenous expression patterns of VSIG4 in polarized macrophage populations and showed a robust VSIG4-mediated suppression of primary human T-cells. Additionally, a ligand receptor capture-trifunctional chemoproteomic (LRC-TriCEPS)-based proteomics strategy identified receptors on primary human T-cells that interact with recombinant VSIG4 protein.

Primary monocytes were purified from peripheral blood mononuclear cells and differentiated into macrophages. Multiplexed droplet digital PCR analysis revealed a robust induction of gene expression of VSIG4 following multiple immunosuppressive stimulations.
Development of multiple functional assays demonstrated VSIG4-mediated suppression of primary human CD4 T-cells.
Through the LRC-TriCEPS proteomics screen, a set of potentially novel T cell receptor candidates that interact with VSIG4 were identified.
A Cas9/CRISPR-based target gene knockdown methodology will be implemented for validation of VSIG4-interacting T-cell receptor candidates.
An initial set of pH-selective anti-VSIG4 antibodies have been identified and further optimization is ongoing to identify a lead antibody.
A copy of the presentation materials will be added to the "Events & Presentations" section of the Company’s Investor Relations website at www.senseibio.com.

Xencor Presents Early Clinical Data from Combination Study of Vudalimab and New Data from Multiple Preclinical-stage XmAb® Programs at the SITC Annual Meeting

On November 10, 2022 Xencor, Inc. (NASDAQ:XNCR), a clinical-stage biopharmaceutical company developing engineered antibodies and cytokines for the treatment of cancer and autoimmune diseases, reported the presentation of data from the first patients in the Phase 2 combination study of vudalimab, a selective PD-1 x CTLA-4 XmAb bispecific antibody, in patients with metastatic castration-resistant prostate cancer (mCRPC) and data from multiple preclinical-stage XmAb programs at the 37th Annual Meeting of the Society for Immunotherapy of Cancer (SITC) (Free SITC Whitepaper) in Boston (Press release, Xencor, NOV 10, 2022, View Source [SID1234623680]).

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"Evaluating chemotherapy combinations with vudalimab is an important part of our Phase 2 development plan due to the breadth of tumor types we could address with dual PD-1/CTLA-4 blockade and chemotherapy," said Allen Yang, M.D., Ph.D., senior vice president and chief medical officer at Xencor. "Our initial combination data examines vudalimab with the aggressive chemotherapy regimen of a carboplatin and a taxane. Though we observed clinical activity, including multiple PSA50 responses and a partial response even in this small number of patients with advanced mCRPC, tolerability was a concern, so we are de-intensifying the chemotherapy regimen and maintaining the vudalimab dose. Consistent with our strategy of pursuing indications that checkpoint inhibitors have not yet addressed, we will continue to study a combination of platinum and taxane in patients with aggressive variant prostate cancer and a more broadly applicable chemotherapy combination with vudalimab and a taxane for other patients with mCRPC."

Posters will be available in the poster hall and virtually to registrants of the SITC (Free SITC Whitepaper) Annual Meeting. In the poster hall, odd numbered posters will be displayed on Thursday, November 10, and even numbered posters will be displayed on Friday, November 11. The posters will be archived under "Events & Presentations" in the Investors section of the Company’s website located at www.xencor.com.

Abstract 668, "A Phase 2 study of vudalimab, a PD-1 x CTLA-4 bispecific antibody, plus chemotherapy or targeted therapy in patients with molecularly defined subtypes of metastatic castration-resistant prostate cancer"

Xencor is advancing vudalimab, a selective dual checkpoint inhibitor, in multiple Phase 2 clinical studies. The Company is conducting a Phase 2 study of vudalimab in patients with mCRPC, as a monotherapy or in combination with standard-of-care chemotherapy or a PARP inhibitor. A Phase 2 monotherapy study in patients with advanced gynecologic and clinically defined high-risk mCRPC is also ongoing.

The trials in progress poster included clinical data from the safety run-in portion of the first Phase 2 study, which enrolled nine patients with mCRPC. Eight of the nine patients received vudalimab plus carboplatin and a taxane (either cabazitaxel or docetaxel). Patients were categorized into five cohorts, depending on their molecularly defined mCRPC subtype: aggressive variant prostate cancer (Cohort A; n=2), prior PARPi progressor (Cohort B; n=1), PARPi naïve (Cohort C; n=1), MSI-high or MMRD (Cohort D; n=0) and no targetable mutations (Cohort E; n=5).

Efficacy Analysis

As of the data cut on September 7, 2022, prostate-specific antigen (PSA) reductions of more than 50% from baseline (PSA50) had been observed in three of nine patients, inclusive of all cohorts and time on study. A patient in Cohort E with an 89% reduction in PSA from baseline experienced a partial response (PR) at week 18 and was continuing treatment at 35 weeks. Treatment was continuing for one additional patient in Cohort C, at 4 weeks. In addition to the patient experiencing a PR in Cohort E, six other patients were efficacy evaluable and experienced a best response of stable disease (n=5) or non-complete response/non-progressive disease (non-CR/non-PD; n=1).

Safety Analysis

The review of data from the safety run-in portion of the study guided the Company to revise the chemotherapy dosing regimens in combination cohorts in the study (Cohorts A, B and E). Vudalimab dosing in all cohorts remains at 10 mg/kg, administered every two weeks. The chemotherapy regimen was changed to taxane alone in Cohorts B and E or reduced dose intensity for the first cycle of treatment in Cohort A, the aggressive variant.

Eight patients in Cohorts A, B and E received the combination of vudalimab, carboplatin and either cabazitaxel or docetaxel, depending on prior docetaxel exposure. Treatment-related serious adverse events (SAEs) occurring within the first cycle of therapy were reported for five of eight patients. All events resolved with medical management, including steroids when appropriate, treatment interruption or treatment cessation. Overall, four patients discontinued treatment due to AEs. The types of irAEs observed were largely consistent with the Phase 1 vudalimab monotherapy study of 110 patients.
No immune related adverse events (irAEs) or treatment-related AEs were reported for the patient in Cohort C, who received vudalimab and olaparib, a PARP inhibitor.
Preclinical Program Posters

Abstract 1067, "Synergistic combination of Natural Killer cell engagers (NKEs) with proinflammatory cytokines"

Xencor’s XmAb natural killer cell engagers (NKEs) are multifunctional antibodies that target multiple activating receptors on the surface of NK cells and bind to tumor associated antigens.

Xencor engineered a B7-H3 x NKG2D NKE bispecific antibody with a modified Fc domain to enhance FcγR binding. The molecule’s design is intended to engage NK cells through the simultaneous binding to B7-H3 on tumor cells and the activating receptors NKG2D and CD16. In addition to stimulating NK cells, NKG2D-targeting NKEs also provide costimulation to CD8 T cells, though this may induce the potential killing by the NK cells. Therefore, NKG2D affinity was tuned to balance desired anti-tumor activity with off-target effector cell effects.

In parallel, Xencor also engineered NKEs targeting B7-H3 and NKG2D’s ligands, MICA and MICB (MICA/B). The molecule’s design is intended to engage the activating receptors NKG2D and CD16; however, indirect targeting of NKG2D via its ligands MICA/B may avoid off-target effector cell effects.

In vitro, B7-H3 x NKG2D and MICA/B x B7H3 NKEs activated NK cells and enhanced NK cell mediated lysis of tumor cells. Additionally, in vitro anti-tumor activity was enhanced when combined with an analog of the proinflammatory IL15-Fc cytokine, XmAb306.

Abstract 1073, "Costimulatory CD28 trispecific antibodies targeting PDL1 and PDL2 enhance T cell activation in solid tumors"

T cells in the tumor microenvironment require both T cell receptor (TCR) and co-stimulatory receptor engagement to achieve full activation. CD28 is a key immune co-stimulatory receptor on T cells; however, the ligands that activate T cells through CD28 are usually not expressed on tumor cells.

Xencor designed a PDL1 x PDL2 x CD28 XmAb trispecific antibody to provide CD28 costimulation in the presence of TCR engagement and either PDL1 or PDL2 antigens. Since PDL1 and PDL2 can engage PD-1 to suppress the immune system’s anti-tumor responses, the trispecific is designed to simultaneously block CD28’s suppression by PD-1. In vitro, the trispecific enhanced the activity of a CD3 bispecific antibody, a modality known to indirectly promote PDL1 and PDL2 expression.

Abstract 1079, "LAG3-targeted IL15/IL15Rα-Fc (LAG3 x IL15) fusion proteins for preferential TIL expansion via cis delivery of IL15 to LAG3+ cells"

IL-2 and IL-15 are cytokines that cause the activation and proliferation of T cells and NK cells. Their therapeutic potential has been well established in preclinical models and clinical studies; however, when given systemically, these potent cytokines have historically provided a poor therapeutic window, as they are not well tolerated and are quickly cleared from circulation. LAG-3 is an immune checkpoint expressed on tumor-infiltrating lymphocytes (TILs), is frequently co-expressed with PD-1 and has limited expression in non-activated T cells.

Xencor engineered LAG3-targeted, reduced potency IL15/IL15Rα-Fc cytokine/antibody fusion proteins (LAG-3 x IL-15) for selective activation of LAG3-positive immune cells, which may potentially avoid systemic toxicities arising from off-target activation and expansion of peripheral immune cells. An XmAb heterodimeric Fc domain serves as a molecular scaffold, and Xtend technology promotes longer circulating half-life. Recently, anti-LAG3 agents have generated promising results in clinical studies, and LAG-3 x IL-15 agents could be combined with anti-PD1 agents. Xencor’s LAG-3 x IL-15 candidate molecules demonstrated high selectivity for LAG3-positive cell populations in multiple in vitro and in vivo models. In a preclinical tumor model, a combination of LAG-3 x IL-15 and an anti-PD1 antibody inhibited tumor growth better than anti-PD1 antibody alone.

Abstract 1372, "XmAb143, an engineered IL18 heterodimeric Fc-fusion, features improved stability, reduced potency, and insensitivity to IL18BP"

IL-18 is a proinflammatory cytokine that modulates both the innate and adaptive immune responses. IL-18 receptor 1, the primary co-receptor for IL-18, is expressed on activated T cells and NK cells, which are critical for anti-tumor responses. Additional preclinical studies of IL-18 have demonstrated its anti-tumor activity, including synergy with immune checkpoint inhibitors and CAR-T therapies. In contrast with other potent cytokines, IL-18 has been well tolerated in clinical trials but demonstrated a lack of efficacy despite heavy dosing. IL-18 participates in a negative feedback loop with a high affinity natural inhibitor, IL18BP, which was observed to be upregulated in early phase clinical studies and may have directly resulted in IL-18’s limited clinical performance.

Xencor engineered stabilized, potency-reduced, monovalent IL-18 cytokines fused to an XmAb heterodimeric Fc domain with Xtend Fc technology for longer half-life (IL18-Fc). Importantly, these IL18-Fc candidates were engineered to avoid binding its inhibitor IL18BP. In a preclinical mouse model of graft-versus-host disease, IL18-Fc led to the expansion and proliferation of target immune cells and induced high levels of interferon gamma. In a preclinical tumor model, IL18-Fc and an anti-PD1 antibody inhibited tumor growth and expanded NK cells and CD8 T cells more than the anti-PD1 antibody alone. Further, it was well tolerated in non-human primates and exhibited superior pharmacokinetics.

Additional Posters (Clinical Trials in Progress)

Abstract 667, "A Phase 1, multiple-dose study to evaluate the safety and tolerability of XmAb819 (ENPP3 x CD3) in subjects with relapsed or refractory clear cell renal cell carcinoma (RCC)"

Abstract 733, "A Phase 2 study of vudalimab (XmAb717), an anti-PD-1/CTLA-4 bispecific antibody, in patients with selected gynecological malignancies and high-risk metastatic castration-resistant prostate-cancer"

About Vudalimab

Vudalimab is an XmAb bispecific antibody that simultaneously targets immune checkpoint receptors PD-1 and CTLA-4 and is designed to promote tumor-selective T-cell activation. Xencor’s approach to dual checkpoint inhibition reduces the need for multiple antibodies and allows for more selective targeting of T cells with high checkpoint expression of both targets, which may potentially improve the therapeutic index of combination immunotherapies. In preclinical studies, dual blockade of PD-1 and CTLA-4 with vudalimab significantly enhanced T cell proliferation and activation, and anti-tumor activity in vivo. Xencor is conducting a Phase 2 clinical study of vudalimab in patients with metastatic castration resistant prostate cancer (mCRPC), plus chemotherapy for certain patient populations, and a Phase 2 clinical study in patients with advanced gynecologic and genitourinary malignancies, as well as high-risk mCRPC.

About XmAb819

XmAb819 is a tumor-targeted, T-cell engaging XmAb 2+1 bispecific antibody in development for patients with renal cell carcinoma (RCC). XmAb819 engages the immune system by activating T cells for highly potent and targeted killing of tumor cells expressing ENPP3, an antigen highly expressed on kidney cancers. ENPP3 is differentially expressed between RCC (high expression) and normal tissues (low expression). To attack RCC cells selectively, XmAb819 was engineered as an XmAb 2+1 bispecific antibody with two binding domains against ENPP3 and one cytotoxic T-cell binding domain against CD3, a component of the T-cell receptor (TCR) complex. Xencor’s XmAb Bispecific Fc Domain serves as the scaffold for these binding domains and provides long circulating half-life, stability and ease of manufacture. Xencor is conducting a Phase 1 study of XmAb819 in patients with advanced renal cell carcinoma.