Du Yang, Zhang Pei, Liu Wei, Tian Jie
CAS Key Laboratory of Molecular Imaging, Beijing Key Laboratory of Molecular Imaging, the State Key Laboratory of Management and Control for Complex Systems, Institute of Automation, Chinese Academy of Sciences, Beijing, 100190 China.
The University of Chinese Academy of Sciences, Beijing, 100049 China.
Phenomics. 2022 Feb 7;2(2):88-101. doi: 10.1007/s43657-021-00041-y. eCollection 2022 Apr.
Increasing evidence has demonstrated that abnormal epigenetic modifications are strongly related to cancer initiation. Thus, sensitive and specific detection of epigenetic modifications could markedly improve biological investigations and cancer precision medicine. A rapid development of molecular imaging approaches for the diagnosis and prognosis of cancer has been observed during the past few years. Various biomarkers unique to epigenetic modifications and targeted imaging probes have been characterized and used to discriminate cancer from healthy tissues, as well as evaluate therapeutic responses. In this study, we summarize the latest studies associated with optical molecular imaging of epigenetic modification targets, such as those involving DNA methylation, histone modification, noncoding RNA regulation, and chromosome remodeling, and further review their clinical application on cancer diagnosis and treatment. Lastly, we further propose the future directions for precision imaging of epigenetic modification in cancer. Supported by promising clinical and preclinical studies associated with optical molecular imaging technology and epigenetic drugs, the central role of epigenetics in cancer should be increasingly recognized and accepted.
越来越多的证据表明,异常的表观遗传修饰与癌症的发生密切相关。因此,灵敏且特异的表观遗传修饰检测能够显著改善生物学研究和癌症精准医学。在过去几年中,用于癌症诊断和预后的分子成像方法得到了快速发展。各种表观遗传修饰特有的生物标志物和靶向成像探针已被鉴定出来,并用于区分癌症组织与健康组织,以及评估治疗反应。在本研究中,我们总结了与表观遗传修饰靶点的光学分子成像相关的最新研究,例如涉及DNA甲基化、组蛋白修饰、非编码RNA调控和染色体重塑的研究,并进一步综述了它们在癌症诊断和治疗中的临床应用。最后,我们进一步提出了癌症表观遗传修饰精准成像的未来方向。在与光学分子成像技术和表观遗传药物相关的临床前和临床研究取得良好成果的支持下,表观遗传学在癌症中的核心作用应得到越来越多的认可和接受。