Chen Wuya, Wang Wenwen, Chen Liyi, Chen Jiamei, Lu Xinhua, Li Zhibin, Wu Baoyan, Yin Liang, Guan Yan-Qing
School of Life Science, South China Normal University, Guangzhou 510631, P. R. China.
J Mater Chem B. 2018 Jan 14;6(2):327-336. doi: 10.1039/c7tb02608k. Epub 2017 Dec 19.
A realistic control of cell cycle arrest is an attractive goal for the development of new effective anti-cancer drugs. Any clinical application of an effective anti-cancer drug necessarily relies on the understanding of cellular interaction mechanisms. In the present study, we prepared a co-immobilized TNF-α plus IFN-γ biomaterial, which showed a significant inhibition effect on cervical cancer cell growth, as demonstrated by a series of structural and cellular characterizations. We found that co-immobilized TNF-α plus IFN-α induced a long-term G phase cell cycle arrest in HeLa, SiHa, and CaSki cells, respectively. More surprisingly, the expression level of the p27 protein decreased, even when p27 mRNA was highly expressed. In addition, gene-chip results and microarray analysis showed that p57 may be downstream from p27, which acts as a direct regulator of the long-term G cell cycle arrest in these cells, leaving no escape for cervical cancer cells. Finally, we also investigated the anti-tumor mechanism of co-immobilized TNF-α plus IFN-γin vivo, using a nude mice animal model. To sum up, our findings suggested that the co-immobilized TNF-α plus IFN-γ can induce a long-term cell cycle arrest in cancer, thus serving as a very efficient tool for treating cervical cancer.
对细胞周期停滞进行切实有效的控制是开发新型高效抗癌药物的一个诱人目标。有效抗癌药物的任何临床应用都必然依赖于对细胞相互作用机制的了解。在本研究中,我们制备了一种共固定化的肿瘤坏死因子-α(TNF-α)加干扰素-γ(IFN-γ)生物材料,一系列结构和细胞表征表明,该生物材料对宫颈癌细胞生长具有显著抑制作用。我们发现,共固定化的TNF-α加干扰素-α(IFN-α)分别在HeLa、SiHa和CaSki细胞中诱导了长期的G期细胞周期停滞。更令人惊讶的是,即使p27信使核糖核酸(mRNA)高表达,p27蛋白的表达水平仍下降。此外,基因芯片结果和微阵列分析表明,p57可能位于p27的下游,p27作为这些细胞中G期细胞周期长期停滞的直接调节因子,使宫颈癌细胞无处可逃。最后,我们还使用裸鼠动物模型在体内研究了共固定化的TNF-α加IFN-γ的抗肿瘤机制。综上所述,我们的研究结果表明,共固定化的TNF-α加IFN-γ可诱导癌症中的长期细胞周期停滞,从而成为治疗宫颈癌的一种非常有效的工具。