靶向巨噬细胞的癌症治疗策略
Macrophage-directed therapeutic strategies in cancer.
肿瘤相关巨噬细胞(TAMs)是肿瘤微环境的主要组成部分,具有显著的功能可塑性,根据所处的微环境信号,既可表现为促进肿瘤进展的免疫抑制细胞,也可表现为支持抗肿瘤免疫的免疫刺激细胞。
英文原题:Acasunlimab, an Fc-inert PD-L1×4-1BB bispecific antibody, combined with PD-1 blockade potentiates antitumor immunity via complementary immune modulatory effects.
这些临床前结果表明,条件性 4-1BB 刺激联合完全 PD-1 阻断可通过互补机制增强抗肿瘤免疫。
背景:新一代癌症免疫疗法旨在通过同时阻断抑制信号并在肿瘤及淋巴组织中靶向共刺激T细胞来改善患者结局。Acasunlimab(DuoBody-PD-L1 4-1BB)是一种在研双特异性抗体,设计为仅在同时结合程序性死亡配体1(PD-L1)时条件性激活4-1BB,从而诱导抗肿瘤免疫应答。由于CD8+ T细胞同时表达4-1BB和程序性死亡蛋白1(PD-1),阻断PD-1并同时通过4-1BB共刺激可能协同增强T细胞效应功能。我们假设,将acasunlimab与PD-1阻断联合、完全阻断PD-1与PD-L1和PD-L2的相互作用,可增强抗肿瘤免疫的深度和持续时间。方法:通过混合淋巴细胞反应、抗原特异性T细胞增殖和细胞毒性等功能性免疫细胞实验,在体外分析acasunlimab联合帕博利珠单抗的作用。体内则在MC38、MB49、Pan02和B16F10同系肿瘤模型中使用acasunlimab及抗PD-1小鼠替代抗体进行测试,并在表达人靶点的三重敲入小鼠中使用acasunlimab嵌合抗体和帕博利珠单抗进行测试。通过免疫组化、流式细胞术和整体RNA测序,在MC38同系模型中研究联合用药机制。结果:联合治疗在体外重新激活功能障碍T细胞,并增强T细胞扩增、IL-2和IFN-γ分泌及细胞毒活性。在人源化敲入及多种同系小鼠模型中,嵌合acasunlimab联合帕博利珠单抗或小鼠替代抗体增强抗肿瘤活性和生存;在MC38模型中实现持久完全肿瘤消退,符合治疗协同效应。机制上,该联合治疗增强肿瘤引流淋巴结中肿瘤特异性CD8+ T细胞克隆扩增,并提高肿瘤微环境中增殖性和细胞毒性CD8+ T细胞密度;同时增强IL-2信号通路,提高被认为具有更强效应功能的颗粒酶B阳性干样CD8+ T细胞比例。结论:这些临床前结果表明,条件性刺激4-1BB并完全阻断PD-1,可通过互补机制增强抗肿瘤免疫。acasunlimab联合帕博利珠单抗正在2期(NCT05117242)和关键性3期(NCT06635824)试验中评估,用于检查点抑制剂治疗失败后的转移性非小细胞肺癌患者。
BACKGROUND: Next-generation cancer immunotherapies aim to improve patient outcomes by combining inhibitory signal blockade with targeted T-cell costimulation in tumor and lymphoid tissues. Acasunlimab (DuoBody-PD-L1 4-1BB) is an investigational, bispecific antibody designed to elicit an antitumor immune response via conditional 4-1BB activation strictly dependent on simultaneous programmed death-ligand 1 (PD-L1) binding. Since 4-1BB is coexpressed with programmed cell death protein-1 (PD-1) on CD8 + T cells, PD-1 blockade and simultaneous costimulation through 4-1BB may synergistically enhance T-cell effector functions. We hypothesized that combining acasunlimab with PD-1 blockade to fully disrupt PD-1 interactions with both PD-L1 and PD-L2 would amplify the depth and duration of antitumor immunity. METHODS: The effect of acasunlimab and pembrolizumab combination was analyzed in vitro using functional immune cell assays, including mixed-lymphocyte reactions and antigen-specific T-cell proliferation and cytotoxicity assays. The antitumor activity of the combination was tested in vivo in (1) MC38, MB49, Pan02, and B16F10 syngeneic tumor models using acasunlimab and anti-PD-1 mouse-surrogate antibodies; and (2) triple knock-in mice expressing the human targets using an acasunlimab chimeric antibody (chi-acasunlimab) and pembrolizumab. The mechanism of action of the combination was investigated in the MC38 syngeneic model through immunohistochemistry, flow cytometry, and bulk RNA sequencing. RESULTS: The combination reinvigorated dysfunctional T cells in vitro, while also potentiating T-cell expansion, interleukin (IL)-2 and interferon gamma secretion and cytotoxic activity. In vivo, the combination of chi-acasunlimab and pembrolizumab or mouse-surrogate antibodies potentiated antitumor activity and survival in the humanized knock-in and multiple syngeneic mouse models, leading to durable complete tumor regressions in the MC38 model consistent with therapeutic synergy. Mechanistically, the combination enhanced clonal expansion of tumor-specific CD8 + T cells in tumor-draining lymph nodes and increased the density of proliferating and cytotoxic CD8 + T cells in the tumor microenvironment. It also potentiated the IL-2 signaling pathway, increasing the proportion of granzyme B (GZMB + ) stem-like CD8 + T cells thought to have superior effector function. CONCLUSION: These preclinical results demonstrate that conditional 4-1BB stimulation combined with complete PD-1 blockade enhances antitumor immunity through complementary mechanisms. The acasunlimab and pembrolizumab combination is being evaluated in Phase 2 (NCT05117242) and pivotal Phase 3 (NCT06635824) trials in patients with metastatic non-small cell lung cancer after checkpoint inhibitor therapy failure.
MEMBER ACCOUNT
登录成功会直接打开下一页。