Tsuchida R, Das B, Yeger H, Koren G, Shibuya M, Thorner P S, Baruchel S, Malkin D
Department of Paediatrics, Division of Hematology/Oncology, The Hospital for Sick Children, Toronto, Ontario, Canada.
Oncogene. 2008 Jun 26;27(28):3923-34. doi: 10.1038/onc.2008.38. Epub 2008 Mar 10.
The cellular and molecular mechanisms of tumor progression following chemotherapy are largely unknown. Here, we demonstrate that cisplatin (CDDP) treatment upregulates VEGF and Flt1 expression leading to the survival and expansion of a highly tumorigenic fraction of side-population (SP) cells in osteosarcoma (HOS), neuroblastoma (SK-N-BE2) and rhabdomyosarcoma (RH-4) cell lines. In all three lines, we show that CDDP treatment increases levels of VEGF and Flt1 expression, and induces enhanced clonogenic capacity and increased expression of the 'stemness'-associated genes Nanog, Bmi-1 and Oct-4 in the SP fraction. In HOS, these changes are associated with the transformation of a non-tumorigenic osteosarcoma SP fraction to a highly tumorigenic phenotype. Inhibition of Flt1 led to complete reduction of tumorigenicity in the HOS SP fraction, and reduction of clonogenic capacity and expression of stemness genes in the SK-N-BE(2) and RH-4 SP fractions. Treatment with U0126, a specific inhibitor of MAPK/ERK1,2 completely downregulates CDDP-induced VEGF and Flt1 expression and induction/expansion of SP fraction in all three cell lines, indicating that these effects are mediated through MAPK/ERK1,2 signaling. In conclusion, we report a novel mechanism of CDDP-induced tumor progression, whereby the activation of VEGF/Flt1 autocrine signaling leads to the survival and expansion of a highly tumorigenic SP fraction.
化疗后肿瘤进展的细胞和分子机制在很大程度上尚不清楚。在此,我们证明顺铂(CDDP)处理上调VEGF和Flt1表达,导致骨肉瘤(HOS)、神经母细胞瘤(SK-N-BE2)和横纹肌肉瘤(RH-4)细胞系中具有高致瘤性的侧群(SP)细胞亚群存活并扩增。在所有这三种细胞系中,我们表明CDDP处理增加了VEGF和Flt1表达水平,并诱导SP亚群中克隆形成能力增强以及“干性”相关基因Nanog、Bmi-1和Oct-4表达增加。在HOS中,这些变化与非致瘤性骨肉瘤SP亚群转变为高致瘤性表型相关。抑制Flt1导致HOS SP亚群的致瘤性完全降低,以及SK-N-BE(2)和RH-4 SP亚群的克隆形成能力和干性基因表达降低。用MAPK/ERK1,2的特异性抑制剂U0126处理可完全下调CDDP诱导的VEGF和Flt1表达以及所有三种细胞系中SP亚群的诱导/扩增,表明这些效应是通过MAPK/ERK1,2信号传导介导的。总之,我们报道了一种CDDP诱导肿瘤进展的新机制,即VEGF/Flt1自分泌信号的激活导致具有高致瘤性的SP亚群存活并扩增。