Non-mitotic proliferation of malignant cancer cells revealed through live-cell imaging of primary and cell-line cultures.

IF 2.8 4区 生物学 Q3 CELL BIOLOGY Cell Division Pub Date : 2024-02-10 DOI:10.1186/s13008-024-00109-x
Iram Shazia Tyagi, Ho Yin Calvin Tsui, Si Chen, Xinyi Li, Wai-Kin Mat, Muhammad A Khan, Lucas Brendan Choy, Ka-Yin Aden Chan, Tat-Ming Danny Chan, Chi-Ping Stephanie Ng, Ho-Keung Ng, Wai Sang Poon, Hong Xue
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Abstract

Introduction: Anti-mitosis has been a key strategy of anti-cancer therapies, targeting at a fundamental property of cancer cells, their non-controllable proliferation due to overactive mitotic divisions. For improved anti-cancer therapies, it is important to find out whether cancer cells can proliferate independent of mitosis and become resistant to anti-mitotic agents.

Results: In this study, live-cell imaging was applied to both primary-cultures of tumor cells, and immortalized cancer cell lines, to detect aberrant proliferations. Cells isolated from various malignant tumors, such as Grade-III hemangiopericytoma, atypical meningioma, and metastatic brain tumor exhibit distinct cellular behaviors, including amoeboid sequestration, tailing, tunneling, nucleic DNA leakage, as well as prokaryote-like division such as binary fission and budding-shedding, which are collectively referred to and reported as 'non-mitotic proliferation' in this study. In contrast, benign tumors including Grade-I hemangiopericytoma and meningioma were not obvious in such behaviors. Moreover, when cultured in medium free of any anti-cancer drugs, cells from a recurrent Grade-III hemangiopericytoma that had been subjected to pre-operation adjuvant chemotherapy gradually shifted from non-mitotic proliferation to abnormal mitosis in the form of daughter number variation (DNV) and endomitosis, and eventually regular mitosis. Similarly, when treated with the anti-cancer drugs Epirubicin or Cisplatin, the cancer cell lines HeLa and A549 showed a shift from regular mitosis to abnormal mitosis, and further to non-mitosis as the dominant mode of proliferation with increasing drug concentrations. Upon removal of the drugs, the cells reversed back to regular mitosis with only minor occurrences of abnormal mitosis, accompanied by increased expression of the stem cell markers ALDH1, Sox, Oct4 and Nanog.

Conclusions: The present study revealed that various types of malignant, but not benign, cancer cells exhibited cellular behaviors indicative of non-mitotic proliferation such as binary fission, which was typical of prokaryotic cell division, suggesting cell level atavism. Moreover, reversible transitions through the three modes of proliferation, i.e., mitosis, abnormal mitosis and non-mitosis, were observed when anticancer drug concentrations were grossly increased inducing non-mitosis or decreased favoring mitosis. Potential clinical significance of non-mitotic proliferation in cancer drug resistance and recurrence, and its relationship with cancer stem cells are worthy of further studies.

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通过原代和细胞系培养物的活细胞成像揭示恶性肿瘤细胞的非有丝分裂增殖。
简介抗有丝分裂一直是抗癌疗法的关键策略,它针对的是癌细胞的一个基本特性,即由于过度活跃的有丝分裂而导致的不受控制的增殖。为了改进抗癌疗法,必须弄清癌细胞是否能独立于有丝分裂而增殖,并对抗击有丝分裂药物产生抗性:本研究对原代培养的肿瘤细胞和永生化的癌细胞系进行了活细胞成像,以检测异常增殖。从各种恶性肿瘤(如 III 级血管细胞瘤、非典型脑膜瘤和转移性脑瘤)中分离出来的细胞表现出不同的细胞行为,包括变形虫固着、尾随、隧道、核 DNA 泄漏以及原核细胞样分裂(如二分裂和出芽-脱落),本研究将这些行为统称为 "非有丝分裂增殖"。相比之下,良性肿瘤(包括一级血管瘤和脑膜瘤)在这种行为中并不明显。此外,在不含任何抗癌药物的培养基中培养复发的 III 级血管细胞瘤细胞时,经过术前辅助化疗的细胞从非有丝分裂增殖逐渐转变为子代数目变异(DNV)和内膜有丝分裂的异常有丝分裂,最终出现规则的有丝分裂。同样,当使用抗癌药物表柔比星或顺铂治疗时,HeLa 和 A549 癌细胞株显示出从规则有丝分裂到异常有丝分裂的转变,并随着药物浓度的增加进一步转变为以非有丝分裂为主的增殖模式。除去药物后,细胞恢复正常有丝分裂,只有少量异常有丝分裂,同时干细胞标志物 ALDH1、Sox、Oct4 和 Nanog 的表达增加:本研究发现,各种类型的恶性癌细胞(而非良性癌细胞)表现出了非有丝分裂增殖的细胞行为,如原核细胞分裂的典型表现--二分裂,这表明了细胞水平的无性繁殖。此外,当抗癌药物浓度显著增加以诱导非有丝分裂或降低以促进有丝分裂时,可观察到三种增殖模式(即有丝分裂、异常有丝分裂和非有丝分裂)的可逆转换。非有丝分裂增殖在癌症耐药性和复发中的潜在临床意义及其与癌症干细胞的关系值得进一步研究。
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来源期刊
Cell Division
Cell Division CELL BIOLOGY-
CiteScore
3.70
自引率
0.00%
发文量
5
审稿时长
>12 weeks
期刊介绍: Cell Division is an open access, peer-reviewed journal that encompasses all the molecular aspects of cell cycle control and cancer, cell growth, proliferation, survival, differentiation, signalling, gene transcription, protein synthesis, genome integrity, chromosome stability, centrosome duplication, DNA damage and DNA repair. Cell Division provides an online forum for the cell-cycle community that aims to publish articles on all exciting aspects of cell-cycle research and to bridge the gap between models of cell cycle regulation, development, and cancer biology. This forum is driven by specialized and timely research articles, reviews and commentaries focused on this fast moving field, providing an invaluable tool for cell-cycle biologists. Cell Division publishes articles in areas which includes, but not limited to: DNA replication, cell fate decisions, cell cycle & development Cell proliferation, mitosis, spindle assembly checkpoint, ubiquitin mediated degradation DNA damage & repair Apoptosis & cell death
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Maraviroc enhances Bortezomib sensitivity in multiple myeloma by inhibiting M2 macrophage polarization via PI3K/AKT/RhoA signaling pathway in macrophages. Detection of early relapse in multiple myeloma patients. LncRNA-ANRIL regulates CDKN2A to promote malignant proliferation of Kasumi-1 cells. ZNF169 promotes thyroid cancer progression via upregulating FBXW10. Interaction of STIL with FOXM1 regulates SF3A3 transcription in the hepatocellular carcinoma development.
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