A human rectal carcinoma-derived differentiated epithelial cell line, HRT-18, was inoculated with faecal samples in an attempt to grow coronavirus-like particles (CVLP), which are widely prevalent in human stools in southern India. While CVLP did not grow in this cell line, a variety of enteroviruse
Cytogenetic studies on an epithelial cell line derived from poorly differentiated nasopharyngeal carcinoma
✍ Scribed by Zhang Sizhong; Gao Xiukung; Zeng Yi
- Publisher
- John Wiley and Sons
- Year
- 1983
- Tongue
- French
- Weight
- 431 KB
- Volume
- 31
- Category
- Article
- ISSN
- 0020-7136
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✦ Synopsis
Abstract
An epithelial cell line, CNE‐2, has been recently established from a poorly differentiated nasopharyngeal carcinoma, and it represents the first of its kind. Using chromosome banding techniques, cytogenetic analysis of the cell line was carried out. It was demonstrated that the chromosome numbers of the CNE‐2 cells varied from 87 to 107 and the modal number was 104‐103. All cells contained a series of structurally abnormal chromosomes, and most of them were either consistent or frequently found. Among these chromosomes there were two giant markers which, by banding pattern analysis, proved to be distinct from the so‐called giant group A marker chromosomes previously found in many lymphoblastoid cell lines from NPC. Comparison between the CNE‐2 and CNE, another epithelial cell line, which was established from well‐differentiated squamous NPC, showed that while they were quite different in many cytogenetic aspects, they had three marker chromosomes in common, namely, an iso8q, a t(?;3q) and a small acrocentric one. The question of whether chromosome markers specific for NPC exist is discussed in the light of the data presented.
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## Abstract Two epithelial tumor cell lines were established from biopsy specimens of 2 nasopharyngeal carcinomas (NPC) and designated HNE‐1 and HONE‐1. Uncloned HNE‐1 cells were found to be Epstein‐Barr virus (EBV) DNA‐positive when examined by Southern blot analysis up to passage 35, after which