TP53 缺失通过上调 NF-κB-IFN-β-MHC-Ia 信号促进骨肉瘤对 NK 细胞的抵抗
TP53 Loss Elevates NF-κB-IFN-β-MHC-Ia Signaling to Promote NK Cell Resistance in Osteosarcoma.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Doxorubicin enhances adipogenesis in an FGF2-dependent manner and induces a tumour-promoting secretory phenotype.
Doxorubicin enhances adipogenesis in an FGF2-dependent manner and induces a tumour-promoting secretory phenotype.
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骨髓微环境中高度充满骨髓脂肪细胞(BMA),其来源于前体间充质干细胞(MSC)的分化。患者试验的证据表明,在接受某些形式的化疗后,患者骨髓脂肪含量增加。
此外,有研究提出BMA可赋予肿瘤细胞化疗耐药性,从而将BMA归为肿瘤支持性角色。我们在体外研究了化疗对人MSC成脂分化的影响,以及导致成脂分化改变的潜在机制,及其对肿瘤细胞增殖的后续影响。多柔比星或卡铂处理成脂分化的MSC导致成熟BMA百分比增加,这通过脂肪细胞标志物PPARG基因表达增加得到证实。RNA-seq分析发现,在多柔比星处理的成脂分化MSC中,成纤维细胞生长因子(FGF)通路基因显著增加,并在mRNA和蛋白水平得到验证。
值得注意的是,多柔比星处理后内源性和分泌型FGF2均显著增加。此外,siRNA介导的FGF2靶向敲低阻断了多柔比星增强的含脂质成熟BMA形成,使其恢复至与溶媒对照处理的BMA相似的水平。由于FGF2是一种分泌蛋白,我们检测并证实,从多柔比星处理的BMA转移条件培养基可增强体外肿瘤细胞增殖,而当从成脂分化MSC中去除FGF2时,该表型被部分消除。
我们的研究结果表明,化疗积极促进脂肪生成,部分是通过在阿霉素治疗背景下改变FGF2实现的,这直接增强了脂肪生成,进而导致肿瘤细胞生长增强。
The bone marrow microenvironment is highly saturated with bone marrow adipocytes (BMA), which differentiate from their precursor, mesenchymal stem cells (MSC). Evidence from patient trials suggests that bone marrow adiposity is increased in patients following some forms of chemotherapy.
Moreover, it has been suggested that BMA can confer chemotherapeutic resistance to tumour cells, thereby ascribing a tumour-supportive role to BMA.
We investigated the effect of chemotherapy on adipogenesis of human MSC in vitro, as well as potential underlying mechanisms leading to altered adipogenesis, and the effects in turn on tumour cell proliferation.
Doxorubicin or carboplatin treatment of adipogenic differentiating MSC led to an increased percentage of mature BMA confirmed by increased gene expression of the adipocyte marker, PPARG . RNA-seq analysis identified significant increases in fibroblast growth factor (FGF) pathway genes in doxorubicin treated adipogenic differentiated MSC, which were validated at the mRNA and protein level.
Notably, endogenous and secreted FGF2 was significantly increased with doxorubicin treatment.
Furthermore, siRNA-mediated targeting of FGF2 impeded the doxorubicin-enhanced formation of lipid-containing mature BMA returning it to levels similar to vehicle control treated BMA. As FGF2 is a secreted protein we tested and confirmed that transfer of conditioned media from doxorubicin-treated BMA enhanced proliferation of tumour cells in vitro , a phenotype that was partially abrogated when FGF2 was depleted from adipogenic differentiating MSC.
Our findings suggest that chemotherapy actively promotes adipogenesis, in part by alteration of FGF2 in the context of doxorubicin treatment, which directly enhances adipogenesis and in turn leads to enhanced tumour cell growth as a result.
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