Towards understanding cancer dormancy over strategic hitching up mechanisms to technologies

IF 27.7 1区 医学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Sumin Yang, Jieun Seo, Jeonghyeon Choi, Sung-Hyun Kim, Yunmin Kuk, Kyung Chan Park, Mingon Kang, Sangwon Byun, Jae-Yeol Joo
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引用次数: 0

Abstract

Delving into cancer dormancy has been an inherent task that may drive the lethal recurrence of cancer after primary tumor relief. Cells in quiescence can survive for a short or long term in silence, may undergo genetic or epigenetic changes, and can initiate relapse through certain contextual cues. The state of dormancy can be induced by multiple conditions including cancer drug treatment, in turn, undergoes a life cycle that generally occurs through dissemination, invasion, intravasation, circulation, immune evasion, extravasation, and colonization. Throughout this cascade, a cellular machinery governs the fate of individual cells, largely affected by gene regulation. Despite its significance, a precise view of cancer dormancy is yet hampered. Revolutionizing advanced single cell and long read sequencing through analysis methodologies and artificial intelligence, the most recent stage in the research tool progress, is expected to provide a holistic view of the diverse aspects of cancer dormancy.
了解癌症休眠,而不是将机制与技术相结合
研究癌症休眠一直是一项固有的任务,可能会导致原发性肿瘤缓解后癌症的致命复发。处于静止状态的细胞可以在沉默中存活短期或长期,可能发生遗传或表观遗传变化,并可以通过某些环境线索引发复发。休眠状态可由多种条件诱导,包括癌症药物治疗,反过来又经历一个生命周期,通常通过传播、侵袭、内渗、循环、免疫逃避、外渗和定植发生。在整个级联过程中,一种细胞机制支配着单个细胞的命运,主要受基因调控的影响。尽管它意义重大,但对癌症休眠的精确看法仍受到阻碍。通过分析方法和人工智能革新先进的单细胞和长读序列是研究工具进展的最新阶段,预计将为癌症休眠的各个方面提供一个整体的观点。
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来源期刊
Molecular Cancer
Molecular Cancer 医学-生化与分子生物学
CiteScore
54.90
自引率
2.70%
发文量
224
审稿时长
2 months
期刊介绍: Molecular Cancer is a platform that encourages the exchange of ideas and discoveries in the field of cancer research, particularly focusing on the molecular aspects. Our goal is to facilitate discussions and provide insights into various areas of cancer and related biomedical science. We welcome articles from basic, translational, and clinical research that contribute to the advancement of understanding, prevention, diagnosis, and treatment of cancer. The scope of topics covered in Molecular Cancer is diverse and inclusive. These include, but are not limited to, cell and tumor biology, angiogenesis, utilizing animal models, understanding metastasis, exploring cancer antigens and the immune response, investigating cellular signaling and molecular biology, examining epidemiology, genetic and molecular profiling of cancer, identifying molecular targets, studying cancer stem cells, exploring DNA damage and repair mechanisms, analyzing cell cycle regulation, investigating apoptosis, exploring molecular virology, and evaluating vaccine and antibody-based cancer therapies. Molecular Cancer serves as an important platform for sharing exciting discoveries in cancer-related research. It offers an unparalleled opportunity to communicate information to both specialists and the general public. The online presence of Molecular Cancer enables immediate publication of accepted articles and facilitates the presentation of large datasets and supplementary information. This ensures that new research is efficiently and rapidly disseminated to the scientific community.
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