首页> 外文期刊>Molecular cancer therapeutics >Antitumoral effects of calcitriol in Basal cell carcinomas involve inhibition of hedgehog signaling and induction of vitamin D receptor signaling and differentiation.
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Antitumoral effects of calcitriol in Basal cell carcinomas involve inhibition of hedgehog signaling and induction of vitamin D receptor signaling and differentiation.

机译:骨化三醇在基底细胞癌中的抗肿瘤作用包括抑制刺猬信号以及诱导维生素D受体信号和分化。

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Activation of the Hedgehog (Hh)-signaling pathway due to deficiency in the Hh receptor Patched1 (Ptch) is the pivotal defect leading to formation of basal cell carcinoma (BCC). Recent reports provided evidence of Ptch-dependent secretion of vitamin D(3)-related compound, which functions as an endogenous inhibitor of Hh signaling by repressing the activity of the signal transduction partner of Ptch, Smoothened (Smo). This suggests that Ptch-deficient tumor cells are devoid of this substance, which in turn results in activation of Hh-signaling. Here, we show that the application of the physiologically active form of vitamin D(3), calcitriol, inhibits proliferation and growth of BCC of Ptch mutant mice in vitro and in vivo. This is accompanied by the activation of the vitamin D receptor (Vdr) and induction of BCC differentiation. In addition, calcitriol inhibits Hh signaling at the level of Smo in a Vdr-independent manner. The concomitant antiproliferative effects on BCC growth are stronger than those of the Hh-specific inhibitor cyclopamine, even though the latter more efficiently inhibits Hh signaling. Taken together, we show that exogenous supply of calcitriol controls the activity of 2 independent pathways, Hh and Vdr signaling, which are relevant to tumorigenesis and tumor treatment. These data suggest that calcitriol could be a therapeutic option in the treatment of BCC, the most common tumor in humans.
机译:由于Hh受体Patched1(Ptch)缺乏而引起的Hedgehog(Hh)信号通路的激活是导致基底细胞癌(BCC)形成的关键缺陷。最近的报道提供了维生素D(3)相关化合物的Ptch依赖性分泌的证据,该化合物通过抑制Ptch,Smoothened(Smo)的信号转导伙伴的活性而作为Hh信号的内源性抑制剂。这表明缺乏Ptch的肿瘤细胞缺乏这种物质,进而导致Hh信号激活。在这里,我们显示了维生素D(3)的生理活性形式钙三醇的应用在体外和体内抑制了Ptch突变小鼠的BCC增殖和生长。这伴随着维生素D受体(Vdr)的激活和BCC分化的诱导。另外,骨化三醇以与Vdr无关的方式在Smo水平抑制Hh信号传导。尽管BH特异性抑制剂环巴胺能更有效地抑制Hh信号传导,但其对BCC生长的抗增殖作用要强于Hh特异性抑制剂环巴胺。两者合计,我们表明,骨化三醇的外源供应控制2个独立途径Hh和Vdr信号传导的活性,这与肿瘤发生和肿瘤治疗有关。这些数据表明骨化三醇可能是治疗人类最常见的肿瘤BCC的治疗选择。

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