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New Blocking Antibodies against Novel AGR2-C4.4A Pathway Reduce Growth and Metastasis of Pancreatic Tumors and Increase Survival in Mice

机译:针对新型AGR2-C4.4A途径的新型阻断抗体可降低胰腺肿瘤的生长和转移并提高小鼠的存活率

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摘要

Anterior gradient 2 (AGR2) promotes cancer growth, metastasis and resistance to therapy via unknown mechanisms. We investigated the effects of extracellular AGR2 signaling through the orphan GPI-linked receptor C4.4A in pancreatic ductal adenocarcinoma (PDAC). Proliferation, migration and invasion and apoptosis were measured using colorimetric, Boyden chamber, and fluorescence-activated cell sorting analyses. We developed blocking monoclonal antibodies against AGR2 and C4.4A and tested their effects, along with siRNAs, on cancer cell functions and on orthotopic tumors in nude mice. Extracellular AGR2 stimulated proliferation, migration, invasion and chemoresistance of PDAC cell lines. AGR2 interacted with C4.4A in cell lysates and mixtures of recombinant proteins. Knockdown of C4.4A reduced migration and resistance to gemcitabine. PDAC tissues, but not adjacent healthy pancreatic tissues, expressed high levels of AGR2 and C4.4A. AGR2 signaling through C4.4A required laminins 1 or 5 and integrin β1. Administration of antibodies against AGR2 and C4.4A reduced growth and metastasis and caused regression of aggressive xenograft tumors leading to increased survival of mice. These data support a model in which AGR2 binds and signals via C4.4A in an autocrine loop and promotes the growth of pancreas tumors in mice. Blocking monoclonal antibodies against AGR2 and C4.4A may have therapeutic potential against PDAC.
机译:前梯度2(AGR2)通过未知机制促进癌症生长,转移和对治疗的抵抗力。我们调查了胰腺孤管腺癌(PDAC)中通过孤儿GPI连接受体C4.4A的细胞外AGR2信号传导的影响。使用比色法,Boyden室和荧光激活细胞分选分析测量增殖,迁移,侵袭和凋亡。我们开发了针对AGR2和C4.4A的封闭性单克隆抗体,并测试了它们与siRNA一起对裸鼠体内癌细胞功能和原位肿瘤的作用。细胞外AGR2刺激PDAC细胞系的增殖,迁移,侵袭和化学抗性。 AGR2在细胞裂解液和重组蛋白混合物中与C4.4A相互作用。降低C4.4A的迁移量和对吉西他滨的耐药性。 PDAC组织而非邻近的健康胰腺组织表达高水平的AGR2和C4.4A。通过C4.4A进行AGR2信号转导需要层粘连蛋白1或5和整联蛋白β1。施用针对AGR2和C4.4A的抗体可减少生长和转移,并导致侵袭性异种移植肿瘤消退,从而导致小鼠存活率提高。这些数据支持了AGR2在自分泌循环中通过C4.4A结合并发出信号并促进小鼠胰腺肿瘤生长的模型。针对AGR2和C4.4A的封闭性单克隆抗体可能具有针对PDAC的治疗潜力。

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