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关于肿瘤细胞代谢重编程:检测不同程度去分化的肝细胞来源细胞系中的糖原。

On reprogramming of tumor cells metabolism: detection of glycogen in the cell lines of hepatocellular origin with various degrees of dedifferentiation.

作者信息

Teryukova Natalya P, Malkova Victoria V, Sakhenberg Elena I, Ivanov Vadim A, Bezborodkina Natalia N, Snopov Sergei A

机构信息

Institute of Cytology, Russian Academy of Sciences, Tikhoretsky ave. 4, Saint Petersburg, Russia, 194064.

Herzen State Pedagogical University of Russia, Saint Petersburg, Russia.

出版信息

Cytotechnology. 2018 Apr;70(2):879-890. doi: 10.1007/s10616-018-0200-1. Epub 2018 Feb 14.

Abstract

The reprogramming of cancer cells includes shifts in glucose and glycogen metabolism. The aim of our work was to check the ability of forming glycogen grains in hepatocellular tumor cell lines of various dedifferentiation levels. We studied the monolayer culture established in vitro after explanting cells from rat ascites Zajdela hepatoma strain C (ZH-C) as a "parental" line and its five daughter clonal sublines: the holoclonal sublines 3H, 5F, 6H and the meroclonal ones 1E, 9C, which possess, respectively, the properties of cancer stem-like cells (CSLCs) and cancer progenitor-like cells (CPLCs). Besides, we studied four permanent cell lines of a rat hepatoma HTC, two murine hepatomas BWTG3 and MH-22a, and human hepatoblastoma HepG2. We used normal rat hepatocytes as positive control cells that form glycogen. We estimated relative cell dedifferentiation levels of the studied lines via analysis of cell morphology, morphometry and motility character on stained cell preparations and lifetime video files. Glycogen in the cells was detected using a Schiff type Au-SO reagent. All studied hepatocellular tumor lines were not of equal dedifferentiation level as manifested by different nucleus-to-cytoplasm ratio, by epithelium-like or fibroblast-like morphology, by tight or loosen intercellular contacts, by cell migration of collective or individual types. Glycogen fluorescence of uneven intensity was observed in all normal rat hepatocytes, but only in some cell groups or in single cells of hepatocellular tumor lines. The large or small fluorescent grains were found not only in relatively less dedifferentiated parental ZH-C line, BWTG3 and HepG2 lines, but also in moderately dedifferentiated 1E and HTC lines and even in severely dedifferentiated 3H, 5F and 6H sublines, as well as in the islets of the rat ascites hepatoma induced in vivo by the injection of 3H cells (the tumor-initiating cells). On the other hand, MH-22 and 9C lines, being relatively less and moderately dedifferentiated, showed no glycogen fluorescence. Thus, in 10 tumor cell lines of hepatocellular origin, an ability to reserve glycogen manifested no obvious dependency on their dedifferentiation level. Glycogen grains were detected in some cells even of the severely dedifferentiated lines: in single CSLCs of holoclonal ZH sublines grown in vitro and in a majority of tumor-initiating cells derived from ascites hepatoma in vivo. We suggest that dynamic changes in glycogen formation in CSLCs and tumor-initiating cells might be of importance for their dedifferentiation, self-renewal in vitro, survival and metastasis in vivo. The role of glycogen in maintaining viability and metastasis of tumor cells is to be further studied.

摘要

癌细胞的重编程包括葡萄糖和糖原代谢的转变。我们工作的目的是检测不同去分化水平的肝细胞肿瘤细胞系形成糖原颗粒的能力。我们研究了从大鼠腹水Zajdela肝癌C株(ZH-C)作为“亲本”系及其五个子代克隆亚系体外接种后建立的单层培养物:全克隆亚系3H、5F、6H以及部分克隆亚系1E、9C,它们分别具有癌症干细胞样细胞(CSLCs)和癌症祖细胞样细胞(CPLCs)的特性。此外,我们还研究了大鼠肝癌HTC的四个永久细胞系、两个小鼠肝癌BWTG3和MH-22a以及人肝母细胞瘤HepG2。我们使用正常大鼠肝细胞作为形成糖原的阳性对照细胞。我们通过对染色细胞制剂和实时视频文件上的细胞形态、形态测量和运动特征进行分析,估计所研究细胞系的相对去分化水平。使用席夫型金-硫试剂检测细胞中的糖原。所有研究的肝细胞肿瘤系的去分化水平并不相同,表现为不同的核质比、上皮样或成纤维细胞样形态、紧密或疏松的细胞间接触、集体或个体类型的细胞迁移。在所有正常大鼠肝细胞中均观察到强度不均匀的糖原荧光,但仅在肝细胞肿瘤系的一些细胞群或单个细胞中观察到。不仅在去分化程度相对较低的亲本ZH-C系、BWTG3和HepG2系中发现了大或小的荧光颗粒,而且在中度去分化的1E和HTC系中也发现了,甚至在高度去分化的3H、5F和6H亚系中以及在注射3H细胞(肿瘤起始细胞)诱导的体内大鼠腹水肝癌的胰岛中也发现了。另一方面,去分化程度相对较低和中度的MH-22和9C系未显示糖原荧光。因此,在10个肝细胞来源的肿瘤细胞系中,储存糖原的能力与其去分化水平没有明显的相关性。即使在高度去分化的细胞系的一些细胞中也检测到了糖原颗粒:在体外培养的全克隆ZH亚系的单个CSLCs中以及在体内腹水肝癌来源的大多数肿瘤起始细胞中。我们认为CSLCs和肿瘤起始细胞中糖原形成的动态变化可能对它们的去分化、体外自我更新、体内存活和转移很重要。糖原在维持肿瘤细胞活力和转移中的作用有待进一步研究。

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Fundamentals of cancer metabolism.癌症代谢基础。
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