PO.CL01.04 · 临床研究
TAG-72(一种基于聚糖的ADC靶点)的表征及其泛肿瘤表达谱
Characterization of TAG-72, a glycan-based ADC target and its pan-tumor expression profile
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
背景:肿瘤相关糖蛋白72(TAG-72)是一种癌症特异性糖表位,展示于粘蛋白上,并在上皮性癌症(主要是腺癌)中表达。TAG-72最初使用B72.3和CC49抗体进行研究,表达TAG-72的癌症缺乏最佳治疗方法。TGW101是一种靶向非内化TAG-72的新型抗体-药物偶联物(ADC),整合了CC49衍生的双抗体(diabody)和DAR4 MMAE有效载荷,通过基于反式环辛烯的连接子相连,该连接子可在给予四嗪(tetrazine)小分子触发剂后实现受控切割。这种ADC-触发剂系统目前处于1期临床开发阶段(NCT06959706),用于经常表达TAG-72的特定实体瘤。在此,我们展示对TAG-72糖表位的表征、用于患者选择的适用型TAG-72 IHC检测方法的开发、其在各实体瘤中患病率的估计,以及其与在标准治疗环境中用于未满足需求人群的既定预测性生物标志物的重叠情况。
方法:聚糖阵列由GlycoDisplay建立,使用转染了一系列含粘蛋白样重复序列探针的工程化细胞。TAG-72 IHC检测方法在NeoGenomics开发。
结果:基于细胞的聚糖阵列分析显示,CC49双抗体的结合需要特定癌症相关粘蛋白(包括MUC1、2、5AC、6、13和17)串联重复结构域上聚集的Thomsen-nouvelle(Tn)和/或唾液酸化Tn(STn)聚糖,提示其共同依赖于聚糖的宏观结构构象。使用B72.3和CC49抗TAG-72克隆优化的IHC显示高度特异性染色,十二指肠腔面粘膜呈阳性染色(已知为中度或低度阳性),而十二指肠黏膜下层、肌层以及包括肾脏在内的其他正常组织无染色。B72.3和CC49 IHC克隆表现出高度相似的染色模式。此外,在CDX和PDX异种移植模型中观察到TAG-72染色,这些模型在接受TGW101治疗后发生肿瘤消退。对肿瘤微阵列的初步筛查表明,TAG-72在广泛的实体瘤中表达,以腺癌和粘液性肿瘤中表达最高。将展示B72.3和CC49克隆按适应症的评分标准、生物标志物重叠情况和估计患病率。
结论:TAG-72是一种由存在于多种粘蛋白上的STn和Tn聚糖组成的肿瘤相关糖表位。它在上皮性癌症中广泛表达,而在正常组织中几乎完全缺失,使其成为一个有吸引力的治疗靶点。目前市售的抗体使用现代IHC技术显示出优异的特异性,可促进针对TAG-72靶向疗法的生物标志物驱动的临床开发。
查看英文原文 English abstract
Background: Tumor-Associated Glycoprotein 72 (TAG-72) is a cancer-specific glycoepitope displayed on mucins and expressed across epithelial cancers, predominantly adenocarcinomas. Initially studied using the B72.3 and CC49 antibodies, TAG-72-expressing cancers lack optimal therapeutic approaches. TGW101, a novel antibody-drug conjugate (ADC) targeting non-internalizing TAG-72, incorporates a CC49-derived diabody and a DAR4 MMAE payload linked via a trans-cyclooctene-based linker that enables controlled cleavage following administration of a tetrazine small-molecule trigger. This ADC-trigger system is currently in phase I clinical development (NCT06959706) for select solid tumors that frequently express TAG-72. Here we present characterization of the TAG-72 glycoepitope, the development of fit-for-purpose TAG-72 IHC assays for patient selection, estimates of its prevalence across solid tumors, and its overlap with established predictive biomarkers used in standard-of-care settings for populations with unmet need.
Methods: Glycan arrays were set up by GlycoDisplay, using engineered cells transfected with a range of probes containing mucin-like repeats. TAG-72 IHC assays were developed at NeoGenomics.
Results: A cell-based glycan array analysis revealed that the CC49-diabody binding requires clustered Thomsen-nouvelle (Tn) and/or sialylated-Tn (STn) glycans on the tandem repeat domain of specific cancer-associated mucins, including MUC1, 2, 5AC, 6, 13, and 17, suggesting it is co-dependent on macrostructural glycan conformation. Optimized IHC using both B72.3 and CC49 anti-TAG-72 clones revealed highly specific staining, with positive staining of the duodenum luminal mucosa (known to be moderate or low positive) and absent staining in the duodenum submucosa, muscularis, and other normal tissues including kidney. Both B72.3 and CC49 IHC clones demonstrated highly similar staining patterns. Additionally, TAG-72 staining was observed in CDX and PDX xenograft models where tumor regressions occurred following treatment with TGW101. Initial screening of tumor microarrays indicated expression across a wide range of solid tumors, with highest expression in adenocarcinomas and mucinous tumors. Scoring criteria, biomarker overlap, and estimated prevalence for both B72.3 and CC49 clones by indication will be presented.
Conclusions: TAG-72 is a tumor-associated glycoepitope consisting of STn and Tn glycans present on multiple mucin proteins. It is widely expressed in epithelial cancers, while almost entirely absent in normal tissues, making it an attractive therapeutic target. Current commercially available antibodies show excellent specificity using modern IHC techniques and could facilitate biomarker-driven clinical development for TAG-72-targeted therapies.
利益披露 Disclosure
J. D. Schonhoft,
Tagworks Pharmaceuticals Employment, Stock Option.
M. H. den Brok,
Tagworks Pharmaceuticals Employment, Stock Option.
M. H. van Stevendaal,
Tagworks Pharmaceuticals Employment, Stock Option.
T. J. Unger,
Tagworks Pharmaceuticals Employment, Stock Option.
L. W. Wouters,
Tagworks Pharmaceuticals Employment, Stock Option.
L. M. Zijlmans,
Tagworks Pharmaceuticals Employment, Stock Option.
R. van Daalen,
Tagworks Pharmaceuticals Employment, Stock Option.
R. Rossin,
Tagworks Pharmaceuticals Employment, Stock Option.
M. Robillard,
Tagworks Pharmaceuticals Employment, Stock Option.
K. Orford,
Tagworks Pharmaceuticals Employment, Stock Option.