肿瘤微环境
免疫系统
免疫疗法
癌症研究
趋化因子
高内皮静脉
免疫学
癌症免疫疗法
炎症
趋化因子受体
医学
T细胞
树突状细胞
外渗
生物
渗透(HVAC)
CCL19型
免疫检查点
内皮细胞活化
CD8型
兴奋剂
白细胞贩卖
肿瘤浸润淋巴细胞
淋巴系统
免疫分型
细胞粘附
溶瘤病毒
癌症疫苗
过继性细胞移植
癌症
癌细胞
细胞疗法
受体
获得性免疫系统
嵌合抗原受体
免疫耐受
淋巴毒素
作者
Roberta Bianchi,Leo Kunz,Ralf J. Hosse,Michelle Brydon,Ana Amorim,Petra Schwalie,Dario Speziale,Ahmet Varol,Birte Appelt,Elzbieta Drozdowicz,Marine Le Clech,Alberto Valdeolivas,Nadine Kumpesa,Kerstin Hahn,Marion Richardson,Nicolas Giroud,Benedek Pesti,Christian Gassner,Reiner Wimmer,Louisa Henniger
标识
DOI:10.1158/1078-0432.c.8600777
摘要
<div>AbstractPurpose:<p>Immune checkpoint inhibitors (CPI) have revolutionized cancer therapy, yet many patients derive limited benefit because of poor immune infiltration within the tumor microenvironment (TME). The presence of tertiary lymphoid structures (TLS) and high endothelial venules (HEV) correlates with improved immunotherapy responses. This study evaluated whether selective activation of lymphotoxin β receptor (<i>LTBR</i>) signaling, targeted to fibroblast activation protein (<i>FAP</i>)-expressing tumor stroma, could remodel the TME to enhance immune cell infiltration and potentiate immunotherapy.</p>Experimental Design:<p>FAP-LTBR was engineered as a novel tumor-targeted <i>LTBR </i>agonist and was characterized for its binding, activation, and immunomodulatory properties <i>in vitro</i> and <i>in vivo</i>. Functional effects were assessed using primary human endothelial cells, three-dimensional (3D) microfluidic vascular models, and multiple murine tumor models. Spatial transcriptomics and 3D immunophenotyping elucidated TME remodeling. Therapeutic efficacy was tested as monotherapy and in combination with CPIs or T-cell engagers.</p>Results:<p>FAP-LTBR selectively activated endothelial cells and induced chemokine secretion in a <i>FAP</i>-dependent manner, enhancing T-cell adhesion and extravasation <i>in vitro</i>. In murine models, FAP-LTBR promoted HEV differentiation, TLS-like immune aggregates, and broad tumor inflammation marked by increased B- and T-cell infiltration, including stem-like <i>TCF1</i>+ <i>CD8</i><sup>+</sup> T cells. FAP-LTBR synergized with CPIs and T-cell engagers to induce durable tumor regression, with superior <i>CD8</i><sup>+</sup> T-cell recruitment and redistribution into tumor cores.</p>Conclusions:<p>FAP-LTBR represents a first-in-class tumor-targeted <i>LTBR</i> agonist that remodels the TME, promoting HEV differentiation, immune cell infiltration, and the formation of organized lymphoid aggregates, which collectively enhance immunotherapy efficacy in preclinical models.</p></div>
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