PO.IM01.15 · 免疫学

TGI-17b:一种潜在同类首创的 PD-1/VEGF/IL-2 α 偏向性三特异性抗体,泛癌治疗潜在的下一代基石

TGI-17b: A potential first-in-class PD-1/VEGF/IL-2 alpha-bias trispecific antibody and the potential next generation cornerstone for pan-cancer therapy

编号 4337 展板 8 时间 4/21 09:00–12:00 区域 Section 9 主讲 Haoyu Sun, PhD
分会场 Monoclonal Antibodies and Antibody-Cytokine Platforms
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作者与单位 Authors & Affiliations

Guoshuai Cao, Yangyang Li, Yuwei Wu, Haoyu Sun, Zhigang Tian

Hefei TG ImmunoPharma Co., Ltd., Hefei, China

摘要 Abstract

中文摘要
背景:免疫检查点抑制剂(ICI)已彻底改变了实体瘤的治疗。然而,其疗效常因耐药而受限,对许多患者而言仍是一项重大治疗挑战。各种下一代免疫肿瘤学(IO)治疗药物正在广泛研究中。其中,PD-1/VEGF 和 PD-1/IL-2 α 偏向性双特异性抗体在 ICI 耐药和免疫"冷"肿瘤患者中显示出有前景的疗效。为在这些进展的基础上进一步发展,我们开发了 TGI-17b,一种结合 PD-1/VEGF/IL-2 α 偏向性的三特异性抗体。在临床前模型中,TGI-17b 表现出优于单独 PD-1/VEGF 或 PD-1/IL-2 α 偏向性的抗肿瘤疗效,使其成为泛癌应用潜在的下一代基石疗法。 方法:使用表面等离子共振(SPR)评估 TGI-17b 对 PD-1、VEGF、IL-2Rα 和 IL-2Rβγ 的结合亲和力。通过测量对 PD-1/PD-L1、VEGF/VEGFR1 和 VEGF/VEGFR2 相互作用的阻断评估其体外功能活性。通过在野生型小鼠中静脉给予一种鼠源替代抗体(mPD-1/VEGF/IL-2 α 偏向性)评估毒性,并与一种临床阶段竞争对手的鼠源替代物(mPD-1/IL-2 α 偏向性)进行比较。使用人源化 PD-1 转基因小鼠,在 MC38 和 B16F10 同基因肿瘤模型中研究 TGI-17b 的抗肿瘤疗效。 结果:TGI-17b 对 VEGF 表现出高亲和力(0.86 nM),对 IL-2Rα 表现出中等亲和力(KD = 24.3 nM),对 IL-2Rβγ 结合极少,证实了其显著的 IL-2R α 偏向性特征。在功能试验中,TGI-17b 阻断 PD-1/PD-L1 相互作用的 EC50 略高,而阻断 VEGF/VEGFR1 和 VEGF/VEGFR2 相互作用的 EC50 值显著低于 AK112(一种 PD-1/VEGF 双特异性抗体)(PD-1/PD-L1 阻断 EC50:TGI-17b 为 0.70 μg/mL,AK112 为 0.32 μg/mL;VEGF/VEGFR1 阻断 EC50:0.37 μg/mL 对 3.53 μg/mL;VEGF/VEGFR2 阻断 EC50:1.29 μg/mL 对 7.71 μg/mL)。在毒性研究中,TGI-17b 替代物在 40 mg/kg(静脉注射,每周两次)下表现出良好的安全性特征,而竞争对手的替代物 mPD-1/IL-2 α 偏向性抗体在 5 mg/kg 时即致死。在体内疗效研究中,TGI-17b 在 MC38 模型中表现出优于 PD-1/VEGF 双特异性抗体的抗肿瘤活性。在 B16F10 模型中,其疗效大幅超过 PD-1/VEGF 和 PD-1/IL-2 α 偏向性双特异性抗体。 结论:这些结果表明,TGI-17b 作为一种潜在同类首创的 PD-1/VEGF/IL-2 α 偏向性三特异性抗体,在临床前模型中具有引人注目的抗肿瘤疗效和良好的安全性特征。这一有力证据支持其作为泛癌应用有前景的候选治疗药物进一步开展临床开发。
查看英文原文 English abstract
Background: Immune checkpoint inhibitors (ICIs) have revolutionized the treatment of solid tumors. However, their efficacy is often limited by resistance, remaining a major therapeutic challenge for many patients. Various next-generation immuno-oncology (IO) therapeutics are under extensive investigation. Among these, PD-1/VEGF and PD-1/IL-2 alpha-bias bispecific antibodies have demonstrated promising efficacy in patients with ICI-resistant and immunologically "cold" tumors.To build upon these advances, we developed TGI-17b, a trispecific antibody combined of PD-1/VEGF/IL-2 alpha-bias . TGI-17b demonstrated superior anti-tumor efficacy compared to either PD-1/VEGF or PD-1/IL-2 alpha-bias alone in preclinical models, positioning it as a potential next generation cornerstone therapy for pan-cancer applications. Methods: The binding affinity of TGI-17b for PD-1, VEGF, IL-2Ralpha, and IL-2Rbetagamma was evaluated using Surface Plasmon Resonance (SPR). Its in vitro functional activity was assessed by measuring the blockade of PD-1/PD-L1, VEGF/VEGFR1 and VEGF/VEGFR2 interactions. Toxicity was evaluated by intravenous administration of a murine surrogate antibody (mPD-1/VEGF/IL-2 alpha-bias ) in wild-type mice, compared with a clinical-stage competitor's murine surrogate (mPD-1/IL-2 alpha-bias ). The anti-tumor efficacy of TGI-17b was investigated in MC38 and B16F10 syngeneic tumor models using humanized PD-1 transgenic mice. Results: TGI-17b exhibited high affinity for VEGF (0.86 nM) and intermediate affinity for IL-2Ralpha (KD = 24.3 nM), with minimal binding to IL-2Rbetagamma, confirming its pronounced IL-2R alpha-bias character. In functional assays, TGI-17b blocked PD-1/PD-L1 interaction with a slightly higher EC50, and blocked VEGF/VEGFR1 and VEGF/VEGFR2 interactions with significantly lower EC50 values compared to AK112, a PD-1/VEGF bispecific antibody (PD-1/PD-L1 blockade EC50: 0.70 µg/mL for TGI-17b vs. 0.32 µg/mL for AK112; VEGF/VEGFR1 blockade EC50: 0.37 µg/mL vs. 3.53 µg/mL; VEGF/VEGFR2 blockade EC50: 1.29 µg/mL vs. 7.71 µg/mL). In toxicity studies, TGI-17b surrogate demonstrated a favorable safety profile at 40 mg/kg (IV, twice weekly), whereas the competitor's surrogate mPD-1/IL-2 alpha-bias antibody was lethal at 5 mg/kg.In the in vivo efficacy studies, TGI-17b showed superior anti-tumor activity compared to the PD-1/VEGF bispecific antibody in the MC38 model. In the B16F10 model, its efficacy substantially exceeded that of both the PD-1/VEGF and PD-1/IL-2 alpha-bias bispecific antibodies. Conclusions: These results indicate that TGI-17b, a potential first-in-class PD-1/VEGF/IL-2 alpha-bias trispecific antibody, possesses compelling anti-tumor efficacy and a favorable safety profile in preclinical models. This robust evidence supports its further clinical development as a promising therapeutic candidate for pan-cancer applications.
利益披露 Disclosure
G. Cao, None.. Y. Li, None.. Y. Wu, None.. H. Sun, None.. Z. Tian, None.

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