转化生长因子- β信号在人乙肝病毒多步骤肝癌发生中的双重作用:早期和晚期反应基因

Jeong Eun Yoo, Ji Hae Nahm, Young-Joo Kim, Youngsic Jeon, Young Nyun Park
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引用次数: 0

摘要

背景/目的:转化生长因子β (TGF-β)具有肿瘤抑制因子和肿瘤促进因子的双重作用。在小鼠肝细胞中探索的TGF-β信号已被报道用于预测肝细胞癌(HCC)患者的临床结局;早期表现出TGF-β信号的hcc预后优于晚期表现出TGF-β信号的hcc。TGF-β早期和晚期信号在人b病毒多步骤肝癌发生的明确病变中的表达状态尚不清楚。方法:采用实时荧光定量PCR和免疫组化方法,检测TGF-β信号表达及TGF-β早、晚应答信号在肝硬化、低级别发育不良结节(dn)、高级别dn、早期hcc和进展期hcc (phcc)中的相关性。结果:TGF-β信号基因TGFB1、TGFBR1、TGFBR2、SMAD4的表达水平随着肝癌发生的进展而逐渐升高,在phcc中达到峰值。TGF-β早期应答基因(GADD45B、FBP1、CYP1A2、CYP3A4)的表达随着肝癌多阶段发生的进展逐渐降低,TGF-β晚期信号基因(TWIST、SNAI1)的表达显著升高。此外,TWIST和SNAI1的mRNA表达水平与茎干标记物的表达水平呈良好相关,TGF-β信号表达上调,而FBP1的表达水平与茎干标记物的表达水平呈负相关。结论:TGF-β诱导干性的晚期应答信号的富集可能参与了多步骤肝癌晚期的进展,而TGF-β的早期应答信号可能在多步骤肝癌早期癌前病变中具有抑瘤作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

The dual role of transforming growth factor-beta signatures in human B viral multistep hepatocarcinogenesis: early and late responsive genes.

The dual role of transforming growth factor-beta signatures in human B viral multistep hepatocarcinogenesis: early and late responsive genes.

The dual role of transforming growth factor-beta signatures in human B viral multistep hepatocarcinogenesis: early and late responsive genes.

The dual role of transforming growth factor-beta signatures in human B viral multistep hepatocarcinogenesis: early and late responsive genes.

Background/aim: Transforming growth factor-beta (TGF-β) has a dichotomous role, functioning as a tumor suppressor and tumor promoter. TGF-β signatures, explored in mouse hepatocytes, have been reported to predict the clinical outcomes of hepatocellular carcinoma (HCC) patients; HCCs exhibiting early TGF-β signatures showed a better prognosis than those with late TGF-β signatures. The expression status of early and late TGF-β signatures remains unclear in defined lesions of human B-viral multistep hepatocarcinogenesis.

Methods: The expression of TGF-β signatures, early and late responsive signatures of TGF-β were investigated and analyzed for their correlation in cirrhosis, low-grade dysplastic nodules (DNs), high-grade DNs, early HCCs and progressed HCCs (pHCCs) by real-time PCR and immunohistochemistry.

Results: The expression levels of TGF-β signaling genes (TGFB1, TGFBR1, TGFBR2 and SMAD4) gradually increased with the progression of hepatocarcinogenesis, peaking in pHCCs. The expression of early responsive genes of TGF-β (GADD45B, FBP1, CYP1A2 and CYP3A4) gradually decreased, and that of the late TGF-β signatures (TWIST and SNAI1) significantly increased according to the progression of multistep hepatocarcinogenesis. Furthermore, mRNA levels of TWIST and SNAI1 were well correlated with those of stemness markers, with upregulation of TGF-β signaling, whereas FBP1 expression was inversely correlated with that of stemness markers.

Conclusions: The enrichment of the late responsive signatures of TGF-β with induction of stemness is considered to be involved in the progression of the late stage of multistep hepatocarcinogenesis, whereas the early responsive signatures of TGF-β are suggested to have tumor-suppressive roles in precancerous lesions of the early stage of multistep hepatocarcinogenesis.

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