PO.ET02.03 · 实验与分子治疗

新型肿瘤微环境(TME)激活的泛RASi和Topo1i双有效载荷连接子实现安全的广谱RAS抑制并克服Topo1i耐药

Novel tumor microenvironment (TME)-activated, pan-RASi and Topo1i dual-payload linker enables safe broad RAS inhibition and overcomes Topo1i resistance

编号 4426 展板 4 时间 4/21 09:00–12:00 区域 Section 12 主讲 Yuan Liu, PhD
分会场 Antibody-Drug Conjugates and Linker Engineering 3
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作者与单位 Authors & Affiliations

Zhengsong Gu, Cheng Liu, Yuan Liu

Affinity Biopharmaceutical Co., Ltd., Shanghai, China

摘要 Abstract

中文摘要
泛RAS抑制剂靶向肿瘤细胞中的RAS突变,但也会影响正常组织中的野生型RAS。因此,泛RASi相关的皮肤毒性(如皮疹和痤疮样皮炎)常有发生,缩窄了其治疗窗。QHL-P1711是一种强效泛RAS抑制剂,能够有效抑制野生型NRAS和HRAS肿瘤细胞以及携带KRAS G12C、KRAS G12D和KRAS G12V突变的肿瘤细胞的增殖。在细胞毒性检测中,QHL-P1711在MIA PaCA-2 G12C、AGS G12D和Capan-1 G12V肿瘤细胞中与DXd(一种Topo1抑制剂)表现出协同效应。 TMEAlinker是一种经临床验证的连接子,可在肿瘤微环境(TME)中被legumain选择性激活,legumain是一种在TME中高度过表达的活性蛋白酶,而在皮肤内皮细胞中表达可忽略不计。通过使用双有效载荷TMEAlinker,泛RASi(QHL-P1711)和DXd均可偶联至一种EGFR-TROP2双特异性抗体,构建出双有效载荷ADC EGFR-TROP2-TMEAlinker-RASi-DXd(IMD2146)。高度亲水的双有效载荷TMEAlinker有效解决了CMC难题,并实现了药物抗体比(DAR)为8+8的双有效载荷ADCs的均一形成。 在NCL-H1975肿瘤模型中,在等量泛RASi摩尔剂量下,IMD2146展现出优于单有效载荷ADCs和泛RAS抑制剂治疗的疗效。值得注意的是,IMD2146在PA-1 Topo1i耐药肿瘤模型中保留了抗肿瘤活性,而单有效载荷ADC(EGFR-TROP2-TMEAlinker-DXd)则无疗效。在37 °C的人血浆中,IMD2146孵育7天后释放的游离泛RASi<1%,表明其具有优异的血浆稳定性。在食蟹猴的临床前毒理学研究中,IMD2146在50 mg/kg重复给药后耐受性良好。食蟹猴的药代动力学分析显示,IMD2146血浆浓度高,而游离泛RASi和游离DXd水平极低,进一步证实了其在循环中的稳定性。 总之,这些结果表明,双有效载荷TMEAlinker设计提供了一种新策略,可在广谱RAS抑制的同时实现全身安全性,并有效克服Topo1i耐药。该方法将精确的TME激活与双机制靶向相结合,为RAS驱动的肿瘤提供了一个有前景的治疗平台,同时最大程度地减少全身毒性。
查看英文原文 English abstract
Pan-RAS inhibitors target RAS mutations in tumor cells but also affect wild-type RAS in normal tissues. Consequently, pan-RASi-related skin toxicities such as rash and acneiform dermatitis commonly occur, narrowing their therapeutic window. QHL-P1711 is a potent pan-RAS inhibitor which effectively suppresses the proliferation of wild type NRAS and HRAS tumor cells and tumor cells with KRAS G12C , KRAS G12D and KRAS G12V mutations. In cytotoxicity assays, QHL-P1711 demonstrated synergistic effects with DXd (a Topo1 inhibitor) in MIA PaCA-2 G12C , AGS G12D and Capan-1 G12V tumor cells. TMEAlinker is a clinically validated, selectively activated linker in the tumor microenvironment (TME) by legumain, an active protease highly overexpressed in the TME while exhibiting negligible expression in skin endothelial cells. By using the dual-payload TMEAlinker, both pan-RASi (QHL-P1711) and DXd can be conjugated to an EGFR-TROP2 bispecific antibody to construct a dual-payload ADC EGFR-TROP2-TMEAlinker-RASi-DXd (IMD2146). The highly hydrophilic dual-payload TMEAlinker effectively addressed CMC challenges and enabled homogeneous formation of dual-payload ADCs with a drug-to-antibody ratio (DAR) of 8+8. IMD2146 exhibited superior efficacy than single-payload ADCs and pan-RAS inhibitor treatment at equivalent pan-RASi molar doses in the NCL-H1975 tumor model. Notably, IMD2146 retained antitumor activity in the PA-1 Topo1i-resistant tumor model, whereas the single-payload ADC (EGFR-TROP2-TMEAlinker-DXd) showed no efficacy. In human plasma at 37 °C, <1% of free pan-RASi was released after 7 days of incubation of IMD2146, indicating excellent plasma stability. In preclinical toxicology studies in cynomolgus monkeys, IMD2146 was well tolerated after repeated dosing at 50 mg/kg. Pharmacokinetic analysis in cynomolgus monkeys revealed high plasma concentrations of IMD2146 with minimal levels of free pan-RASi and free DXd, further confirming its stability in circulation. In summary, these results demonstrate that the dual-payload TMEAlinker design provides a novel strategy to achieve systemic safety with broad RAS inhibition while effectively overcoming Topo1i resistance. This approach integrates precise TME activation with dual-mechanism targeting, offering a promising therapeutic platform for RAS-driven tumors while minimizing systemic toxicity.
利益披露 Disclosure
Z. Gu, Affinity Biopharmaceutical Co., Ltd. Employment. C. Liu, Affinity Biopharmaceutical Co., Ltd. Employment, Stock. Y. Liu, Affinity Biopharmaceutical Co., Ltd. Employment, Stock.

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