PO.CL12.01 · 临床研究
基于多重免疫荧光的bintrafusp alfa治疗HER2阳性乳腺癌患者的空间分析:一项转化病理学研究
Multiplex immunofluorescence based spatial analysis of HER2 positive breast cancer patients treated with bintrafusp alfa: A translational pathology study
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摘要 Abstract
中文摘要
目的:表征肿瘤免疫微环境的空间重塑,并界定II期和III期HER2阳性乳腺癌患者接受Bintrafusp Alfa(一种将PD-L1阻断与TGFbeta陷阱相结合的双功能抗体)治疗后相关的细胞和结构变化。
实验设计:对入组MD Anderson临床试验NCT03620201的患者的福尔马林固定石蜡包埋的基线和治疗中活检(TP2)标本,通过五个多重免疫荧光(mIF)面板进行分析,这些面板捕获了:(1)PD轴T细胞状态,(2)细胞毒性、记忆和调节性T细胞亚群,(3)肿瘤和髓系检查点及代谢配体,(4)T细胞共刺激和耗竭标志物,(5)髓系和中性粒细胞轴。空间分析使用SPIAT R软件包进行,以量化细胞类型分布、识别无监督空间聚类并界定邻域构成。根据复合TP2空间特征(如细胞角蛋白(CK)碎片化、瘤内CD8阳性浸润、富含检查点的界面以及免疫与肿瘤混合聚类)将病例分类为应答型或难治型。
结果:一部分TP2标本显示出明显的空间重塑,特征为:(i) CK结构碎片化为被更宽间质区域分隔的较小上皮巢,(ii) 肿瘤-间质界面及上皮巢内CD8和CD3 T细胞浸润增加,(iii) 局灶性PD1、PDL1、OX40阳性和ICOS阳性免疫龛,伴局灶TIM3表达,以及(iv) 巨噬细胞和中性粒细胞更接近碎片化的CK边界,但无广泛的髓系亚群激活。这些特征在应答型肿瘤中富集,形成肿瘤与免疫混合聚类及炎症性空间邻域。相反,难治型肿瘤保留了紧密的CK巢、外周T细胞环以及有限的检查点标志物表达。
结论:使用Bintrafusp Alfa联合阻断PD-L1和TGFbeta可促进乳腺癌微环境的异质性空间重编程。有益的重塑特征为上皮与免疫混合聚类、瘤内细胞毒性和记忆T细胞浸润以及富含检查点的界面,而难治病例的特征为持续的上皮内聚性和抑制性髓系环境。总体而言,空间区隔化、检查点扩增和免疫聚类成为应答强度的指标。我们的发现强调需要根据空间背景来定制干预措施;免疫排斥型肿瘤可能受益于T细胞启动或髓系重编程,而炎症性应答者可能需要维持检查点抑制以持续清除肿瘤。
查看英文原文 English abstract
Purpose: To characterize spatial remodeling of the tumor immune microenvironment and to define therapy associated cellular and architectural changes in stage II and III HER2 positive breast cancer treated with Bintrafusp Alfa, a bifunctional antibody that combines PD-L1 blockade with a TGFbeta trap.
Experimental Design: Formalin fixed paraffin embedded baseline and on treatment biopsies (TP2) from patients enrolled in the MD Anderson clinical trial NCT03620201 were analyzed across five Multiplex Immunofluorescence (mIF) panels that captured: (1) PD axis T cell states, (2) cytotoxic, memory, and regulatory T cell subsets, (3) tumor and myeloid checkpoints and metabolic ligands, (4) T cell co-stimulation and exhaustion markers, and (5) myeloid and neutrophil axes. Spatial analysis was performed using the SPIAT R package to quantify cell-type distributions, identify unsupervised spatial clusters, and define neighborhood compositions. Cases were classified as responsive or refractory based on composite TP2 spatial features such as cytokeratin (CK) fragmentation, intratumoral CD8 positive infiltration, checkpoint-rich interfaces, and mixed immune and tumor clustering.
Results: A subset of TP2 specimens showed clear spatial remodeling characterized by(i) fragmentation of CK architecture into smaller epithelial nests separated by broader stromal areas,(ii) increased infiltration of CD8 and CD3 T cells at tumor stroma interfaces and within epithelial nests,(iii) localized PD1, PDL1, OX40 positive, and ICOS positive immune niches with focal TIM3 expression, and(iv) closer proximity of macrophages and neutrophils to fragmented CK borders without widespread activation of myeloid subsets.These features were enriched in responsive tumors, forming mixed tumor and immune clusters and inflamed spatial neighborhoods. In contrast, refractory tumors retained cohesive CK nests, peripheral T cell rims, and limited checkpoint marker expression.
Conclusions: Combined PD-L1 and TGFbeta inhibition with Bintrafusp Alfa promotes heterogeneous spatial reprogramming of the breast cancer microenvironment. Beneficial remodeling is characterized by mixed epithelial and immune clusters, intratumoral cytotoxic and memory T cell infiltration, and checkpoint rich interfaces, while refractory cases are defined by persistent epithelial cohesion and suppressive myeloid environments. Overall, spatial compartmentalization, checkpoint expansion, and immune clustering emerged as indicators of response intensity. Our findings stress the need to tailor interventions to the spatial context; immune excluded tumors may benefit from T cell priming or myeloid reprogramming, while inflamed responders might require maintenance of checkpoint inhibition to sustain tumor clearance.
利益披露 Disclosure
M. G. Raso, None..
E. N. Barrientos-Toro, None..
J. Li, None..
R. K. Pandurengan, None..
H. Batra, None..
X. Tang, None..
D. Oliva Rico, None..
J. Mendoza Perez, None..
J. Schwartz Gomez, None..
S. Damodaran, None..
N. Jacob, None..
J. K. Litton, None..
R. K. Murthy, None..
C. L. Haymaker, None.