Bhattacharjee Dipanjan, Shenoy Smita, Bairy Kurady Laxminarayana
Department of Pharmacology, Kasturba Medical College, Manipal University, Manipal, Karnataka 576104, India.
Scientifica (Cairo). 2016;2016:6072357. doi: 10.1155/2016/6072357. Epub 2016 Mar 28.
Epigenetics deals with the interactions between genes and the immediate cellular environment. These interactions go a long way in shaping up each and every person's individuality. Further, reversibility of epigenetic interactions may offer a dynamic control over the expression of various critical genes. Thus, tweaking the epigenetic machinery may help cause or cure diseases, especially cancer. Therefore, cancer epigenetics, especially at a molecular level, needs to be scrutinised closely, as it could potentially serve as the future pharmaceutical goldmine against neoplastic diseases. However, in view of its rapidly enlarging scope of application, it has become difficult to keep abreast of scientific information coming out of various epigenetic studies directed against cancer. Using this review, we have attempted to shed light on two of the most important mechanisms implicated in cancer, that is, DNA (deoxyribonucleic acid) methylation and histone modifications, and their place in cancer pathogenesis. Further, we have attempted to take stock of the new epigenetic drugs that have emerged onto the market as well as those in the pipeline that offer hope in mankind's fight against cancer.
表观遗传学研究基因与直接细胞环境之间的相互作用。这些相互作用在塑造每个人的个性方面起着很大作用。此外,表观遗传相互作用的可逆性可能对各种关键基因的表达提供动态控制。因此,调整表观遗传机制可能有助于引发或治愈疾病,尤其是癌症。所以,癌症表观遗传学,特别是在分子水平上,需要仔细审查,因为它有可能成为未来对抗肿瘤疾病的制药宝库。然而,鉴于其应用范围迅速扩大,跟上针对癌症的各种表观遗传学研究得出的科学信息变得困难。通过这篇综述,我们试图阐明与癌症相关的两个最重要机制,即DNA(脱氧核糖核酸)甲基化和组蛋白修饰,以及它们在癌症发病机制中的地位。此外,我们试图评估已上市的新表观遗传药物以及那些有望在人类对抗癌症斗争中发挥作用的在研药物。