PO.IM02.04 · 免疫学
基于聚糖的位点特异性ADC通过改善有效载荷递送和免疫激活实现持续的肿瘤控制
Glycan-based site specific ADC achieves sustained tumor control through Improved payload delivery and immune activation
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
抗体-药物偶联物(ADC)能够实现强效的肿瘤杀伤,但往往难以诱导持久的抗肿瘤免疫。聚糖偶联平台能够实现位点特异性聚糖偶联,相较于传统的基于半胱氨酸的ADC,可增强药代动力学(PK)和瘤内有效载荷递送。我们假设,聚糖偶联ADC(OBI-902)改善的有效载荷递送能力,相较于半胱氨酸偶联ADC(OBI-992),能够增强免疫原性细胞死亡(ICD)并维持抗肿瘤免疫激活。
在过表达人Trop2的LL2同源肿瘤中评估了疗效和免疫谱。治疗后评估了瘤内有效载荷以及ICD标志物(calreticulin、HSP70、HSP90)。通过多参数流式细胞术分析了肿瘤、淋巴结和血液中的免疫亚群,并对血清细胞因子进行定量以评估系统性免疫激活。OBI-902表现出持久的肿瘤生长抑制作用并增强了肿瘤微环境中的ICD,这些发现优于OBI-992所观察到的结果。血清IFN-gamma、IL-12和TNF-alpha的升高提示了系统性免疫激活。
在肿瘤中,OBI-902增加了CD4⁺和CD8⁺ T细胞以及B细胞的浸润,同时减少了MDSCs。它还扩增了cDC1s并上调其MHC-II表达,支持改善的抗原呈递。在肿瘤引流淋巴结中,OBI-902扩增了祖细胞样耗竭的CD8⁺ T细胞并维持其功能状态,同时限制了终末耗竭。外周免疫谱证实OBI-902增加了T细胞比例并减少了MDSCs。在研究终点,OBI-902维持了CD8⁺ T细胞的功能,表现为更高的CX3CR1和更低的CD39表达,表明保留了细胞毒性和T细胞适应度。这些易于获取的外周免疫特征可作为临床环境中的药效学生物标志物。
聚糖偶联平台ADC(OBI-902)凭借其更稳定的连接子-有效载荷设计,向肿瘤递送了更多有效载荷,实现了持续的ICD诱导和T细胞耗竭的深度重编程,驱动了强健的先天和适应性免疫激活。这些结果凸显了聚糖偶联平台作为下一代ADC技术的地位,并有力支持在未来的临床研究中将其与免疫检查点阻断联合应用。
查看英文原文 English abstract
Antibody-drug conjugates (ADCs) achieve potent tumor killing but often limited to induce durable antitumor immunity. The Glycan conjugated platform enables site-specific glycan conjugation, enhancing pharmacokinetics (PK) and intratumoral payload delivery versus conventional cysteine-based ADCs. We hypothesized that this improved payload delivery capability by the Glycan conjugated ADC (OBI-902) would potentiate immunogenic cell death (ICD) and sustains antitumor immune activation relative to a cysteine-conjugated ADC (OBI-992).
Efficacy and immune profiling were evaluated in LL2 syngeneic tumors overexpressing human Trop2. Intratumoral payload, and ICD markers (calreticulin, HSP70, HSP90) were assessed post-treatment. Tumor, lymph node, and blood immune subsets were analyzed by multiparametric flow cytometry, and serum cytokines quantified for systemic immune activation. OBI-902 demonstrated durable tumor growth inhibition and enhanced ICD in the tumor microenvironment, findings that were superior to those observed with OBI-992. Serum IFN-gamma, IL-12, and TNF-alpha elevations indicated systemic immune activation.
In tumors, OBI-902 increased CD4⁺ and CD8⁺ T-cell and B-cell infiltration while reducing MDSCs. It also expanded cDC1s and upregulated their MHC-II expression, supporting improved antigen presentation. In tumor-draining lymph nodes, OBI-902 expanded progenitor-exhausted CD8⁺ T cells yet functional state while limiting terminal exhaustion. Peripheral immune profiling corroborated that OBI-902 increased T-cell proportions and reduced MDSCs. At study endpoint, OBI-902 sustained CD8⁺ T-cell functionality with higher CX3CR1 and lower CD39 expression, indicating preserved cytotoxicity and T-cell fitness. This readily accessible peripheral immune signatures may serve as pharmacodynamic biomarkers in clinical settings.
The Glycan conjugated platform ADC (OBI-902), enabled by its more stable linker-payload design that delivers greater payload to the tumor, achieved sustained ICD induction and a profound reprogramming of T-cell exhaustion, driving robust innate and adaptive immune activation. These results highlight the Glycan conjugated platform as a next-generation ADC technology and strongly support its combination with immune checkpoint blockade in future clinical studies.
利益披露 Disclosure
L. Chih-Chun, None..
T. Yi-Chien, None..
H. Jing-Rong, None..
L. Fei-Yun, None..
P. Yu, None..
H. Ren-Yu, None..
T. Tzu-Hsuan, None..
C. Ya-Chi, None.