首页> 美国卫生研究院文献>Journal of Cancer >A Fraction of CD133+ CNE2 Cells Is Made of Giant Cancer Cells with Morphological Evidence of Asymmetric Mitosis
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A Fraction of CD133+ CNE2 Cells Is Made of Giant Cancer Cells with Morphological Evidence of Asymmetric Mitosis

机译:CD133 + CNE2细胞的一部分由具有不对称有丝分裂形态学证据的巨型癌细胞组成

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摘要

CD133 has been suggested as a broad-spectrum marker for cancer stem cells(CSCs). The present study investigated the expression of CD133 in biopsy tissues of nasopharyngeal carcinoma (NPC), NPC cell lines and the immortalized cell line NP69 by immunohistochemistry, flow cytometry and qRT-PCR. CD133+ cancer cells were isolated using magnetic-activated cell sorting technology. The study demonstrated that CD133+ cells are rare in NPC tissues and cell lines and that their self-renewal and proliferation abilities are stronger than those of CD133- cells and suggested that CD133+ NPC cells have characteristics of cancer stem cells. We further observed CD133+ cancer cells using a light microscope and scanning electron microscope. Generally, CD133+ cells are small, regular and round with small microvilli. On the other hand, CD133- cells are more polymorphic and larger with long micromicrovilli. Additionally, in some fields, several giant cancer cells (GCCs) in the CD133+ cell group were identified under the light microscope. Most of them were polynuclear cells. Under the scanning electron microscope, we found indefinite regular small bodies on the surface of or surrounding the giant cancer cells, some of which appeared to be creeping out the parental cells. This phenomenon was not observed in the CD133- cell groups. Through comparison with descriptions of apoptotic bodies in the literature and from the results of the acridine orange test, we propose that some of the small bodies are daughter cells of the GCCs. This phenomenon is a mode of division of cancer cells called neosis, or budding, which is a form of reproduction for simple organisms. Budding is satisfied with the rapid speed of tumor development. GCCs could be isolated by CD133 beads because the daughter cells have stem-cell characteristics and express stem-cell markers.
机译:CD133已被建议作为癌症干细胞(CSCs)的广谱标记。本研究通过免疫组织化学,流式细胞术和qRT-PCR研究了CD133在鼻咽癌(NPC),NPC细胞系和永生化细胞系NP69活检组织中的表达。使用磁激活细胞分选技术分离出CD133 +癌细胞。研究表明,CD133 +细胞在NPC组织和细胞系中很少见,其自我更新和增殖能力强于CD133-细胞,并表明CD133 + NPC细胞具有癌症干细胞的特征。我们使用光学显微镜和扫描电子显微镜进一步观察了CD133 +癌细胞。通常,CD133 +细胞小,规则且圆形,微绒毛小。另一方面,CD133-细胞具有更多的多态性,并且具有长的微绒毛。此外,在某些领域,在光学显微镜下可以识别出CD133 +细胞组中的几个巨型癌细胞(GCC)。它们大多数是多核细胞。在扫描电子显微镜下,我们在巨型癌细胞的表面或周围发现了不确定的规则小体,其中一些似乎是从母体细胞中爬出来的。在CD133-细胞组中未观察到此现象。通过与文献中有关凋亡小体的描述进行比较,并根据the啶橙试验的结果,我们提出一些小小体是GCC的子代细胞。这种现象是癌细胞分裂的一种方式,称为新生,即出芽,是简单生物繁殖的一种形式。萌芽使肿瘤发展迅速。可以通过CD133珠子分离GCC,因为子细胞具有干细胞特征并表达干细胞标记。

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