Background Resistance to immune checkpoint inhibitor (ICI) therapy narrows the efficacy of cancer immunotherapy. Although 4-1BB is a promising drug target as a costimulatory molecule of immune cells, no 4-1BB agonist has been given clinical approval because of severe liver toxicity or limited efficacy. Therefore, a safe and efficient immunostimulatory molecule is urgently needed for cancer immunotherapy. Methods HK010 was generated by antibody engineering, and the Fab/antigen complex structure was analyzed using crystallography. The affinity and activity of HK010 were detected by multiple in vitro bioassays, including enzyme-linked immunosorbent assay (ELISA), surface plasmon resonance (SPR), flow cytometry, and luciferase-reporter assays. Humanized mice bearing human PD-L1-expressing MC38 (MC38/hPDL1) or CT26 (CT26/hPDL1) tumor transplants were established to assess the in vivo antitumor activity of HK010. The pharmacokinetics (PK) and toxicity of HK010 were evaluated in cynomolgus monkeys. Results HK010 was generated as an Fc-muted immunoglobulin (Ig)G4 PD-L1x4-1BB bispecific antibody (BsAb) with a distinguished Fab/antigen complex structure, and maintained a high affinity for human PD-L1 (KD: 2.27 nM) and low affinity for human 4-1BB (KD: 493 nM) to achieve potent PD-1/PD-L1 blockade and appropriate 4-1BB agonism. HK010 exhibited synergistic antitumor activity by blocking the PD-1/PD-L1 signaling pathway and stimulating the 4-1BB signaling pathway simultaneously, and being strictly dependent on the PD-L1 receptor in vitro and in vivo. In particular, when the dose was decreased to 0.3 mg/kg, HK010 still showed a strong antitumor effect in a humanized mouse model bearing MC38/hPDL1 tumors. Strikingly, HK010 treatment enhanced antitumor immunity and induced durable antigen-specific immune memory to prevent rechallenged tumor growth by recruiting CD8+ T cells and other lymphocytes into tumor tissue and activating tumor-infiltrating lymphocytes. Moreover, HK010 not only did not induce nonspecific production of proinflammatory cytokines but was also observed to be well tolerated in cynomolgus monkeys in 5 week repeated-dose (5, 15, or 50 mg/kg) and single-dose (75 or 150 mg/kg) toxicity studies. Conclusion We generated an Fc-muted anti-PD-L1x4-1BB BsAb, HK010, with a distinguished structural interaction with PD-L1 and 4-1BB that exhibits a synergistic antitumor effect by blocking the PD-1/PD-L1 signaling pathway and stimulating the 4-1BB signaling pathway simultaneously. It is strictly dependent on the PD-L1 receptor with no systemic toxicity, which may offer a new option for cancer immunotherapy.
Background: CD137 (TNFRSF9, 4-1BB) is a member of the tumor necrosis factor receptor superfamily that functions as a costimulatory molecule of immunocytes and is mainly expressed on the surface of immune cells including activated T and natural killer (NK) cells. Agonists against CD137 have shown promising therapeutic activity in mouse tumor models but have suffered setback in the clinic due to notably hepatotoxicity, or suboptimal agonistic potency. Here, we developed a fully human agonistic anti-CD137 monoclonal IgG4 antibody, ZG033, with an exclusive epitope, to achieve a better efficacy and safety profile for immunotherapy. Methods: The antigen binding specificity and affinity of ZG033 were determined by ELISA, surface plasmon resonance (SPR). X-ray crystallography was conducted to resolve the binding epitopes of the respective binding arms. The activities were determined using cell-based and reporter gene assays. In vivo antitumor activities were evaluated in human 4-1BB transgenic mice bearing with syngeneic tumors, and possible toxicity was evaluated in humanized mice and cynomolgus monkeys. Cytokine release assay was conducted by incubating ZG033 with PBMCs from healthy donors. The pharmacokinetic (PK) behavior of ZG033 were characterized in cynomolgus monkeys. A phase 1 study was initiated to evaluate the safety and preliminary clinical activities of ZG033, as well as the immunogenicity and pharmacokinetics. Results: ZG033 showed high specificity for human CD137 without cross-species reactivity across mouse, rat and exhibited potent CD137 agonist activity dependent on FcγR crosslinking. The binding affinity of ZG033 determined by surface plasmon resonance (SPR) was moderate (KD=10 nM). X-ray crystallography revealed that the Fab of ZG033 binds CD137 at an epitope overlap with the ligand binding interface. ZG033 increased CD137-driven NFκB reporter gene activation and the production of IFN-γ by human T cells in a FcγR-dependent manner. In human CD137 transgenic mice, ZG033 showed robust antitumor activity and induced durable antigen-specific immunological memory that prevented the tumor formation in the rechallenged mice. There were no signs of toxicity in human cytokine release assay which confirmed that ZG033 did not induce pro-inflammatory cytokines in the absence of TCR stimulation. Toxicology data in mice showed that ZG033 was well-tolerated with normal ALT and AST levels. ZG033 was further confirmed to well tolerated up to 180 mg/kg (MTD≥180mg/kg) dose without systemic toxicity in cynomolgus monkeys. Patients with advanced tumors, who are refractory after exhausting available therapies, were enrolled for ZG033 treatment. We will report the results from early dose escalation part of the study. Conclusion: These data demonstrate that ZG033 is an FcγR crosslinking-dependent CD137 agonist that displays a favorable safety profile and has potential in either mono- or combinational immunotherapies. Citation Format: Yang Huang, Liangwei Li, Wenting Liu, Dayan Zhang, Pengfei Zhou, Qing Fang, Weiming Zhou, Fengrong Wang, Guodong Shen, Liansheng Cheng. A novel CD137 agonist exhibits potent antitumor efficacy with a good safety profile [abstract]. In: Proceedings of the American Association for Cancer Research Annual Meeting 2023; Part 1 (Regular and Invited Abstracts); 2023 Apr 14-19; Orlando, FL. Philadelphia (PA): AACR; Cancer Res 2023;83(7_Suppl):Abstract nr 1880.
Background: Checkpoint inhibitors targeting the PD-1/PD-L1 have changed the treatment and prognosis for patients with advanced solid tumors. There remains a unmet need for additional therapies due to treatment resistance. Tumor-necrosis superfamily members, such as CD137 and CD40, have been shown to synergize with the checkpoint inhibitors in preclinical studies. However, agonists antibodies have exhibited limited clinical activity for severe liver toxicity. Here we have developed a Fc-silenced bispecific antibody targeting PD-L1 and CD137, HK010, which could overcome these limitations by tumor-directed T-cell activation and checkpoint blockade. Methods: The antigen binding specificity and affinity of HK010 were determined by enzyme-linked immunosorbent assay (ELISA), surface plasmon resonance (SPR) and flow cytometry. The functional activity of HK010 was determined using in vitro cell-based assays and reporter gene assay. Transgenic mice expressing human PD-L1 and 4-1BB were transplanted with human PD-L1-expressing murine MC38 cells to assess in vivo antitumor activity. Cytokine release assay was conducted by incubating HK010 with peripheral blood mononuclear cells (PBMCs) from healthy donors (n=6). The pharmacokinetic (PK) behavior and safety profiles of HK010 were characterized in cynomolgus monkeys. Results: HK010 is a IgG4 PD-L1 × 4-1BB bsAb, which was designed to maintain a high affinity for human PD-L1 and a low affinity for human 4-1BB (KD PD-L1: 2.27 nM; KD 4-1BB: 493 nM) to achieve strong blocking of PD-1/PD-L1 and appropriate agonism of 4-1BB. HK010 retained full blockade activity on PD-1/PD-L1 signaling and enhances T-cell proliferation and IFN-γ production in vitro primary cell assays and Mixed lymphoid reaction (MLR). In addition, it led to a dose-dependent increase in the CD137-driven NFκB reporter gene activation through the bridging of PD-L1 on target cells and CD137 on effector cells. In humanized PD-L1/4-1BB transgenic mice bearing with MC38/hPDL1 tumor, HK010 showed robust single agent anti-tumor activity and induced durable antigen-specific immunological memory that prevents the growth of the same tumor cells in the mice re-challenged. There were no signs of toxicity in human cytokine release assay for HK010. Toxicology data in cynomolgus monkeys showed that HK010 was well-tolerated up to 150 mg/kg (MTD≥150mg/kg) dose without systemic toxicity. Furthermore, HK010 was confirmed to be highly safe in the 5-week repeated-dose toxicity study with no observed treatment-related mortality, abnormality in hematological indexes, important organs. Conclusion: These data demonstrate that HK010, an anti-PD-L1 × CD137 bispecific antibody, may exert a strong localized anti-tumor therapeutic efficacy with a low risk of liver toxicity through tumor-directed T-cell activation and checkpoint blockade in tumors. Citation Format: Liangwei Li, Wenting Liu, Guodong Shen, Dayan Zhang, Weiming Zhou, Fengrong Wang, Xiaoli Zeng, Yang Huang, Liansheng Cheng. HK010, a novel anti-PDL1 × CD137 bispecific antibody, exhibits potent anti-tumor immunity and low toxicity. [abstract]. In: Proceedings of the American Association for Cancer Research Annual Meeting 2023; Part 1 (Regular and Invited Abstracts); 2023 Apr 14-19; Orlando, FL. Philadelphia (PA): AACR; Cancer Res 2023;83(7_Suppl):Abstract nr 5657.
Resistance to HER2-targeted therapy narrows the efficacy of cancer immunotherapy. Although 4-1BB/CD137 is a promising drug target as a costimulatory molecule of immune cells, no therapeutic drug has been ap-proved in the clinic because of systemic toxicity or limited efficacy. Previously, we developed a humanized anti-HER2 monoclonal antibody (mAb) HuA21 and anti-4-1BB mAb HuB6 with distinct antigen epitopes for cancer therapy. Here, we generated an Fc-muted IgG4 HER2/4-1BB bispecific antibody (BsAb) HK006 by the fusion of HuB6 scFv and HuA21 Fab. HK006 exhibited synergistic antitumor activity by blocking HER2 signal transduction and stimulating the 4-1BB signaling pathway simultaneously and strictly dependent on HER2 expression in vitro and in vivo. Strikingly, HK006 treatment enhanced antitumor immunity by increasing and activating tumor-infiltrating T cells. Moreover, HK006 did not induce nonspecific production of proinflammatory cytokines and had no obvious toxicity in mice. Overall, these data demonstrated that HK006 should be a promising candidate for HER2-positive cancer immunotherapy.
Background Colorectal cancer (CRC) is one of the most common malignancies and the patient survival rate remains unacceptably low. The anti-programmed cell death-1 (PD-1)/programmed cell death ligand 1 (PD-L1) antibody-based immune checkpoint inhibitors have been added to CRC treatment regimens, however, only a fraction of patients benefits. As an important co-stimulatory molecule, 4-1BB/CD137 is mainly expressed on the surface of immune cells including T and natural killer (NK) cells. Several agonistic molecules targeting 4-1BB have been clinically unsuccessful due to systemic toxicity or weak antitumor effects. We generated a humanized anti-4-1BB IgG4 antibody, HuB6, directed against a unique epitope and hypothesized that it would promote antitumor immunity with high safety. Methods The antigen binding specificity, affinity and activity of HuB6 were determined by enzyme-linked immunosorbent assay (ELISA), surface plasmon resonance (SPR), biolayer interferometry (BLI) and flow cytometry. The antitumor effects were evaluated in humanized mice bearing syngeneic tumors, and possible toxicity was evaluated in humanized mice and cynomolgus monkeys. Results HuB6 showed high specificity and affinity for a binding epitope distinct from those of other known 4-1BB agonists, including utomilumab and urelumab, and induced CD8 + T, CD4 + T and NK cell stimulation dependent on Fcγ receptor (FcγR) crosslinking. HuB6 inhibited CRC tumor growth in a dose-dependent manner, and the antitumor effect was similar with urelumab and utomilumab in humanized mouse models of syngeneic CRC. Furthermore, HuB6 combined with an anti-PD-L1 antibody significantly inhibited CRC growth in vivo. Additionally, HuB6 induced antitumor immune memory in tumor model mice rechallenged with 4 × 10 6 tumor cells. Toxicology data for humanized 4-1BB mice and cynomolgus monkeys showed that HuB6 could be tolerated up to a 180 mg/kg dose without systemic toxicity. Conclusions This study demonstrated that HuB6 should be a suitable candidate for further clinical development and a potential agent for CRC immunotherapy.