肝细胞癌中着丝粒蛋白研究进展综述。

IF 3.1 2区 医学 Q3 IMMUNOLOGY
Zhongyuan Yang, Wenjiao Chen, Yunhui Liu, Yuxin Niu
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引用次数: 0

摘要

肝细胞癌(HCC)是全球癌症相关死亡的第四大原因,全球每年约有80万人死亡。由于HCC的早期症状和特点不典型,80%以上的HCC患者无法得到根治性治疗。HCC的治疗面临瓶颈,迫切需要新的治疗方法。由于HCC的发病机制尚不清楚,因此确定与之相关的分子机制和治疗靶点至关重要。着丝粒被认为是一种特殊的脱氧核糖核酸(DNA)序列,具有高度重复的序列,在细胞分裂过程中与纺锤体物理连接,确保子细胞之间遗传物质的均匀分裂。在细胞分裂过程中聚集在这个序列上的许多蛋白质被称为着丝粒蛋白(CENPs)。目前,大量研究表明,CENPs在肿瘤细胞中异常表达,并与患者预后相关。CENPs的异常表达是染色体不稳定的重要原因。此外,染色体不稳定性是大多数肿瘤的共同特征。染色体不稳定可导致恶性肿瘤不受控制和持续的分裂和增殖。针对CENPs的治疗方案在HCC的治疗中发挥着重要作用。如小核糖核酸(RNA)可以沉默CENP的表达,预防肝癌的发生和发展。近年来,针对hcc的CENPs的研究逐渐增多,但仍比较新颖,需要进一步系统阐述。在这篇综述中,我们详细介绍了CENPs的特点,并讨论了它们在HCC中的作用。并对其在临床中的应用前景进行了展望。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Recent updates of centromere proteins in hepatocellular carcinoma: a review.

Hepatocellular carcinoma (HCC) is the fourth leading cause of cancer-related death worldwide, with approximately 800,000 deaths worldwide each year. Owing to the atypical early symptoms and characteristics of HCC, over 80% of HCC patients cannot receive curative treatment. The treatment of HCC is facing a bottleneck, and new treatment methods are urgently needed. Since the pathogenesis of HCC is not yet clear, identifying the molecular mechanisms and therapeutic targets related to it is crucial. Centromeres are considered special deoxyribonucleic acid (DNA) sequences with highly repetitive sequences that are physically connected to the spindle during cell division, ensuring equal division of genetic material between daughter cells. The numerous proteins that aggregate on this sequence during cell division are called centromere proteins (CENPs). Currently, numerous studies have shown that CENPs are abnormally expressed in tumor cells and are associated with patient prognosis. The abnormal expression of CENPs is a key cause of chromosomal instability. Furthermore, chromosomal instability is a common characteristic of the majority of tumors. Chromosomal instability can lead to uncontrolled and sustained division and proliferation of malignant tumors. Therapeutic plans targeting CENPs play important roles in the treatment of HCC. For example, small ribonucleic acid (RNA) can silence CENP expression and prevent the occurrence and development of liver cancer. In recent years, studies of HCC-targeting CENPs have gradually increased but are still relatively novel, requiring further systematic elaboration. In this review, we provide a detailed introduction to the characteristics of CENPs and discuss their roles in HCC. In addition, we discuss their application prospects in future clinical practice.

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来源期刊
Infectious Agents and Cancer
Infectious Agents and Cancer ONCOLOGY-IMMUNOLOGY
CiteScore
5.80
自引率
2.70%
发文量
54
期刊介绍: Infectious Agents and Cancer is an open access, peer-reviewed online journal that encompasses all aspects of basic, clinical, epidemiological and translational research providing an insight into the association between chronic infections and cancer. The journal welcomes submissions in the pathogen-related cancer areas and other related topics, in particular: • HPV and anogenital cancers, as well as head and neck cancers; • EBV and Burkitt lymphoma; • HCV/HBV and hepatocellular carcinoma as well as lymphoproliferative diseases; • HHV8 and Kaposi sarcoma; • HTLV and leukemia; • Cancers in Low- and Middle-income countries. The link between infection and cancer has become well established over the past 50 years, and infection-associated cancer contribute up to 16% of cancers in developed countries and 33% in less developed countries. Preventive vaccines have been developed for only two cancer-causing viruses, highlighting both the opportunity to prevent infection-associated cancers by vaccination and the gaps that remain before vaccines can be developed for other cancer-causing agents. These gaps are due to incomplete understanding of the basic biology, natural history, epidemiology of many of the pathogens that cause cancer, the mechanisms they exploit to cause cancer, and how to interrupt progression to cancer in human populations. Early diagnosis or identification of lesions at high risk of progression represent the current most critical research area of the field supported by recent advances in genomics and proteomics technologies.
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