PO.CL01.04 · 临床研究
C3C:细胞外组织蛋白酶活性与ADC的生物标志物
C3C: A biomarker for extracellular cathepsin activity and ADCs
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
背景:抗体-药物偶联物(ADC)将单克隆抗体的特异性与小分子有效载荷的强效细胞毒性相结合。虽然经典ADC依赖于抗原结合、内化以及在溶酶体内的胞内连接子切割,但近期研究表明,某些肿瘤表现出细胞外组织蛋白酶活性,能够在肿瘤微环境(TME)中切割ADC连接子,并形成一圈肿瘤周围的"药物光晕",即使在抗原低表达或抗原阴性的TME中也能增强旁观者杀伤。因此,识别具有高细胞外组织蛋白酶活性的肿瘤对于优化ADC疗效和患者分层可能至关重要。
方法:我们开发并研究了C3C的潜力,这是一种基于ELISA的生物标志物,用于测量由组织蛋白酶产生的III型胶原片段。由于负责切割III型胶原并生成C3C的组织蛋白酶同样切割常用的肽类ADC连接子,我们假设C3C可提供TME中组织蛋白酶活性的非侵入性读数。我们测量了结直肠癌(CRC)(n=10)、胰腺导管腺癌(PDAC)(n=10)和非小细胞肺癌(NSCLC)(n=10)患者血清中的C3C,并与健康对照(n=26)进行比较。为评估生物学特异性,我们还测量了C3-HNE,一种反映中性粒细胞弹性蛋白酶驱动炎症的生物标志物。
结果:我们发现,与健康个体相比,CRC(p=0.03)、PDAC(p=0.006)和NSCLC(p<0.001)患者的C3C水平显著升高。相比之下,C3-HNE在任何适应症中均与C3C无相关性,这表明C3C并非仅仅反映一般炎症,而是捕捉了参与细胞外ADC连接子切割的组织蛋白酶活性。
结论:结果表明,C3C是一种有前景的生物标志物,可用于识别富含组织蛋白酶的TME,这类TME可能支持有效载荷释放和ADC的强效旁观者活性。此外,C3C可用于筛选更可能从可切割连接子ADC中获益的患者,是药物开发和临床精准肿瘤学的潜在工具。
查看英文原文 English abstract
Background: Antibody-drug conjugates (ADCs) combine the specificity of monoclonal antibodies with the potent cytotoxicity of small-molecules payloads. While classical ADCs rely on antigen binding, internalization and intracellular linker cleavage in the lysosomes recent studies show that certain tumors exhibit extracellular cathepsin activity capable of cleaving ADC linkers in the tumor microenvironment (TME) and creating a peritumoral “drug halo” that enhances bystander killing even in antigen-low or antigen-negative TME. For this reason, identifying tumors with high extracellular cathepsin activity may be critical for optimizing ADC efficacy and patient stratification.
Methods: We developed and investigated the potential of C3C, an ELISA-based biomarker that measures type III collagen fragments generated by cathepsins. Since the same cathepsins responsible for cleavage type III collagen and generating C3C also cleave commonly used peptide ADC linkers, we hypothesize that C3C could provide and non-invasive readout of cathepsin activity in the TME. We measured C3C in serum from patients with colorectal cancer (CRC) (n = 10), pancreatic ductal adenocarcinoma (PDAC) (n = 10) and non-small cell lung cancer (NSCLC) (n = 10) and compared to healthy controls (n = 26). To assess biological specificity, we also measured C3-HNE, a biomarker reflecting neutrophil elastase-driven inflammation.
Results: We found significantly elevated levels of C3C compared to healthy individuals in patients with CRC ( p = 0.03), PDAC ( p = 0.006) and NSCLC (p < 0.001). In contrast, C3-HNE showed no correlation with C3C in any indication, suggesting that C3C does not simply reflect general inflammation but instead captures cathepsin activity implicated in extracellular ADC linker cleavage.
Conclusion: The results suggest that C3C is a promising biomarker for identifying cathepsin-rich TMEs that may support payload release and potent bystander activity of ADCs. Furthermore, C3C could be used to select patients more likely to benefit from cleavable-linker ADCs representing a potential tool for both drug development and clinical precision oncology.
利益披露 Disclosure
M. Crespo-Bravo, None..
N. Willumsen, None..
M. Karsdal, None.