Institute of Biomedicine and Molecular Immunology Alberto Monroy, National Research Council, Palermo, Italy.
OMICS. 2011 Jun;15(6):383-92. doi: 10.1089/omi.2010.0092. Epub 2011 Mar 16.
Celecoxib (Celebrex((R)), Pfizer) is a selective cyclooxygenase-2 (COX-2) inhibitor with chemopreventive and antitumor effects. However, it is now well known that celecoxib has several COX-2-independent activities. To better understand COX-2-independent molecular mechanisms underlying the antitumor activity of celecoxib, we investigated the expression profile of the celecoxib-treated COX-2-positive (Huh7) and COX-2-negative (HepG2) liver cancer cell lines, using microarray analysis. Celecoxib treatment resulted in significantly altered expression levels of 240 and 403 transcripts in Huh7 and HepG2 cells, respectively. Confirmation of the microarray results was performed for selected genes by semiquantitative RT-PCR. A pathway/functional analysis of celecoxib-affected transcripts, using ingenuity pathway analysis and exploring biological association networks, revealed that celecoxib modulates expression of numerous genes involved in a variety of cellular processes, including cell death, cellular growth and proliferation, lipid metabolism, and energy turnover. Some of these processes were common for both HCC cell lines and seem to be coupled with NF-κB signaling, while others were cell-specific and possibly linked to the presence or the absence of COX-2 activity in the corresponding cell line. Many novel genes emerged from our analyses that were not previously reported to be affected by celecoxib. Further studies on selected celecoxib-responsive genes will establish if they may serve as potential molecular targets for more effective therapeutic strategies in HCC.
塞来昔布(西乐葆((R)),辉瑞)是一种选择性环氧化酶-2(COX-2)抑制剂,具有化学预防和抗肿瘤作用。然而,现在人们已经清楚地认识到,塞来昔布具有几种 COX-2 非依赖性活性。为了更好地了解塞来昔布抗肿瘤活性的 COX-2 非依赖性分子机制,我们使用微阵列分析研究了塞来昔布处理的 COX-2 阳性(Huh7)和 COX-2 阴性(HepG2)肝癌细胞系的表达谱。塞来昔布处理导致 Huh7 和 HepG2 细胞分别有 240 和 403 个转录本的表达水平发生显著改变。通过半定量 RT-PCR 对选定基因的微阵列结果进行了验证。使用 ingenuity 通路分析和探索生物关联网络对塞来昔布影响的转录本进行了通路/功能分析,结果表明塞来昔布调节了许多参与多种细胞过程的基因的表达,包括细胞死亡、细胞生长和增殖、脂质代谢和能量转换。这些过程中的一些在两种 HCC 细胞系中是共同的,并且似乎与 NF-κB 信号通路有关,而其他过程是细胞特异性的,可能与相应细胞系中 COX-2 活性的存在或不存在有关。我们的分析中出现了许多以前没有报道过受塞来昔布影响的新基因。对选定的塞来昔布反应基因的进一步研究将确定它们是否可以作为 HCC 更有效治疗策略的潜在分子靶标。