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INHIBITION OF THE HEDGEHOG PATHWAY TARGETS THE TUMOR-ASSOCIATED STROMA IN PANCREATIC CANCER

机译:刺猬途径的抑制靶向胰腺癌中的肿瘤相关基质

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摘要

The Hedgehog (Hh) pathway has emerged as an important pathway in multiple tumor types and is thought to be dependent on a paracrine signaling mechanism. The purpose of this study was to determine the role of pancreatic cancer-associated fibroblasts (human pancreatic stellate cells, HPSCs) in Hh signaling. In addition, we evaluated the efficacy of a novel Hh antagonist, AZD8542, on tumor progression with an emphasis on the role of the stroma compartment.Expression of Hh pathway members and activation of the Hh pathway were analyzed in both HPSCs and pancreatic cancer cells. We tested the effects of SMO inhibition with AZD8542 on tumor growth in vivo using an orthotopic model of pancreatic cancer containing varying amounts of stroma.HPSCs expressed high levels of SMO receptor and low levels of Hh ligands, whereas cancer cells showed the converse expression pattern. HPSC proliferation was stimulated by sonic Hedgehog with upregulation of downstream GLI1 mRNA. These effects were abrogated by AZD8542 treatment. In an orthotopic model of pancreatic cancer, AZD8542 inhibited tumor growth only when HPSCs were present, implicating a paracrine signaling mechanism dependent on stroma. Further evidence of paracrine signaling of the Hh pathway in prostate and colon cancer models is provided, demonstrating the broader applicability of our findings.ConclusionBased on the use of our novel human derived pancreatic cancer stellate cells, our results suggest that Hh-targeted therapies primarily affect the tumor-associated stroma, rather than the epithelial compartment.
机译:刺猬(Hh)通路已成为多种肿瘤类型中的重要通路,并被认为依赖于旁分泌信号传导机制。这项研究的目的是确定与胰腺癌相关的成纤维细胞(人胰腺星状细胞,HPSCs)在Hh信号中的作用。此外,我们评估了新型Hh拮抗剂AZD8542对肿瘤进展的疗效,并着重于间质的作用。在HPSCs和胰腺癌细胞中均分析了Hh通路成员的表达和Hh通路的激活。我们使用含有不同数量间质的胰腺癌原位模型测试了AZD8542抑制SMO对体内肿瘤生长的影响.HPSCs高水平表达SMO受体而低水平表达Hh配体,而癌细胞则表现出相反的表达模式。刺猬刺猬刺激HPSC增殖,并下游GLI1 mRNA上调。 AZD8542处理消除了这些影响。在胰腺癌的原位模型中,AZD8542仅在存在HPSC时才抑制肿瘤生长,这暗示依赖于基质的旁分泌信号传导机制。提供了在前列腺癌和结肠癌模型中Hh途径的旁分泌信号传导的进一步证据,证明了我们的发现具有更广泛的适用性。结论基于使用我们的新型人源性胰腺癌星状细胞,我们的结果表明,靶向Hh的疗法主要影响肿瘤相关基质,而不是上皮区室。

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