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首页> 外文期刊>Cancer research: The official organ of the American Association for Cancer Research, Inc >Hedgehog signaling inhibition blocks growth of resistant tumors through effects on tumor microenvironment
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Hedgehog signaling inhibition blocks growth of resistant tumors through effects on tumor microenvironment

机译:刺猬信号抑制通过对肿瘤微环境的影响来阻止耐药性肿瘤的生长

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摘要

Hedgehog (Hh) signaling is implicated in bone development and cellular transformation. Here we show that inhibition of Hh pathway activity inhibits tumor growth through effects on the microenvironment. Pharmacologic inhibition of the Hh effector Smoothened (Smo) increased trabecular bone in vivo and inhibited osteoclastogenesis in vitro. In addition, enhanced Hh signaling due to heterozygosity of the Hh inhibitory receptor Patched (Ptch1 +/-) increased bone resorption, suggesting direct regulation of osteoclast (OC) activity by the Hh pathway. Ptch1 +/- mice had increased bone metastatic and subcutaneous tumor growth, suggesting that increased Hh activation in host cells promoted tumor growth. Subcutaneous growth of Hh-resistant tumor cells was inhibited by LDE225, a novel orally bioavailable SMO antagonist, consistent with effects on tumor microenvironment. Knockdown of the Hh ligand Sonic Hh (SHH) in these cells decreased subcutaneous tumor growth and decreased stromal cell production of interleukin-6, indicating that tumor-derived Hh ligands stimulated tumor growth in a paracrine fashion. Together our findings show that inhibition of the Hh pathway can reduce tumor burden, regardless of tumor Hh responsiveness, through effects on tumor cells, OCs, and stromal cells within the tumor microenvironment. Hh may be a promising therapeutic target for solid cancers and bone metastases.
机译:刺猬(Hh)信号传导与骨骼发育和细胞转化有关。在这里,我们表明抑制Hh通路活性通过对微环境的影响来抑制肿瘤的生长。 Hh效应平滑剂(Smo)的药理学抑制作用在体内增加了小梁骨并在体外抑制了破骨细胞的生成。此外,由于Hh抑制受体Patched(Ptch1 +/-)的杂合性导致Hh信号增强,增加了骨吸收,表明通过Hh途径直接调节破骨细胞(OC)活性。 Ptch1 +/-小鼠增加了骨转移和皮下肿瘤的生长,表明宿主细胞中Hh活化的增加促进了肿瘤的生长。 HDE耐药肿瘤细胞的皮下生长受到新型口服生物利用SMO拮抗剂LDE225的抑制,这与对肿瘤微环境的影响一致。在这些细胞中敲除Hh配体Sonic Hh(SHH)降低了皮下肿瘤的生长,并降低了白介素6的基质细胞生成,表明肿瘤来源的Hh配体以旁分泌的方式刺激了肿瘤的生长。我们的研究结果共同表明,抑制Hh途径可通过对肿瘤微环境内的肿瘤细胞,OC和基质细胞产生影响,从而降低肿瘤负担,而与肿瘤Hh反应无关。 Hh可能是实体癌和骨转移的有希望的治疗靶标。

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