CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:EGFR-selective activation of CD27 co-stimulatory signaling by a bispecific antibody enhances anti-tumor activity of T cells.
EGFR-selective activation of CD27 co-stimulatory signaling by a bispecific antibody enhances anti-tumor activity of T cells.
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肿瘤微环境中较高密度的TIL(肿瘤浸润淋巴细胞)(TILs),尤其是细胞毒性 CD8+ T 细胞,与多种癌症的临床结局改善相关。
然而,局部抑制性因子可抑制 T 细胞活性并阻碍抗肿瘤免疫。值得注意的是,来自多种癌症类型的 TILs 表达共刺激肿瘤坏死因子受体 CD27,使其成为共刺激并重新激活肿瘤浸润和肿瘤反应性 T 细胞的潜在靶点。基于利用 CD27 介导的 T 细胞共刺激的抗癌治疗已被证明是安全的,但临床反应仍然有限。这很可能是因为当前的单克隆抗体无法有效激活 CD27 信号传导,因为该受体需要更高阶的受体交联。
在此,我们报道了一种双特异性抗体 CD27xEGFR,它同时靶向 CD27 和肿瘤抗原表皮生长因子受体(EGFR)。通过靶向癌上常见表达的 EGFR,CD27xEGFR 诱导了癌细胞局部化的交联和 CD27 激活。CD27xEGFR 的设计包含一个 Fc 沉默结构域,旨在通过减少 Fc γ 受体介导的结合和免疫细胞激活来最小化潜在毒性。CD27xEGFR 同时结合其两个靶点,并触发 EGFR 限制性的 T 细胞共刺激,通过 T 细胞增殖、T 细胞激活标志物、细胞毒性和 IFN-γ 释放来衡量。
此外,CD27xEGFR 在一组人工抗原呈递癌细胞系模型中增强了 T 细胞细胞毒性,导致效应细胞与靶细胞比率依赖性的癌细胞消除。
综上所述,我们展示了一种新型双特异性抗体的体外表征,该抗体通过靶向共刺激 CD27 在表达 EGFR 的癌症中重新激活 T 细胞免疫。
A higher density of tumor infiltrating lymphocytes (TILs) in the tumor microenvironment, particularly cytotoxic CD8 + T cells, is associated with improved clinical outcome in various cancers.
However, local inhibitory factors can suppress T cell activity and hinder anti-tumor immunity.
Notably, TILs from various cancer types express the co-stimulatory Tumor Necrosis Factor receptor CD27, making it a potential target for co-stimulation and re-activation of tumor-infiltrated and tumor-reactive T cells. Anti-cancer therapeutics based on exploiting CD27-mediated T cell co-stimulation have proven safe, but clinical responses remain limited. This is likely because current monoclonal antibodies fail to effectively activate CD27 signaling, as this receptor requires higher-order receptor cross-linking.
Here, we report on a bispecific antibody, CD27xEGFR, that targets both CD27 and the tumor antigen, epidermal growth factor receptor (EGFR). By targeting EGFR, which is commonly expressed on carcinomas, CD27xEGFR induced cancer cell-localized crosslinking and activation of CD27.
The design of CD27xEGFR includes an Fc-silent domain, which is designed to minimize potential toxicity by reducing Fc gamma receptor-mediated binding and activation of immune cells. CD27xEGFR bound to both of its targets simultaneously and triggered EGFR-restricted co-stimulation of T cells as measured by T cell proliferation, T cell activation markers, cytotoxicity and IFN-γ release.
Further, CD27xEGFR augmented T cell cytotoxicity in a panel of artificial antigen-presenting carcinoma cell line models, leading to Effector-to-Target ratio-dependent elimination of cancer cells. Taken together, we present the in vitro characterization of a novel bispecific antibody that re-activates T cell immunity in EGFR-expressing cancers through targeted co-stimulation of CD27.
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