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体外紫外线照射诱导产生的抗原变体比例在源自单个肿瘤的克隆中有所不同。

Proportion of antigenic variants induced by in vitro UV irradiation differs in clones derived from a single tumor.

作者信息

Hostetler L W, Kripke M L

机构信息

Department of Immunology, University of Texas Cancer Center, Houston 77030.

出版信息

J Immunol. 1988 Jan 15;140(2):666-70.

PMID:3335785
Abstract

The purpose of this study was to examine the capacity of different clones derived from the same tumor to generate highly antigenic cells after in vitro exposure to UV radiation. Cells from the metastatic murine melanoma K1735 and clones of K1735 differing in metastatic potential were exposed to UV radiation in vitro, cloned, and tested for antigenic properties in vivo. Approximately half of the clones isolated after UV irradiation of parental K1735 melanoma cells were highly antigenic (five of nine). Similar treatment of cells of a nonmetastatic clone of K1735 generated clones that were all antigenic (nine of nine). In contrast, only one of nine clones derived from UV-irradiated cells of a highly metastatic clone of K1735 were antigenic. Clones derived from unirradiated cultures were not antigenic variants. The increased antigenicity of cells derived from UV-irradiated cultures did not correlate with an increase in expression of cell surface class I major histocompatibility complex antigens. These results demonstrate that the frequency of antigenic variant production after UV irradiation is an intrinsic property of the particular cell line used, and that even cloned cell lines derived from a single tumor differ in their ability to generate antigenic variants after UV irradiation. In addition, they indicate that the increased antigenicity is not necessarily due to a UV-induced increase in expression of cell surface class I histocompatibility antigens.

摘要

本研究的目的是检测源自同一肿瘤的不同克隆在体外暴露于紫外线辐射后产生高抗原性细胞的能力。将转移性小鼠黑色素瘤K1735的细胞以及转移性潜能不同的K1735克隆在体外暴露于紫外线辐射,进行克隆,并在体内检测其抗原特性。亲代K1735黑色素瘤细胞经紫外线照射后分离得到的克隆中,约一半具有高抗原性(9个中有5个)。对K1735的一个非转移性克隆的细胞进行类似处理,产生的克隆均具有抗原性(9个中有9个)。相比之下,源自K1735的一个高转移性克隆经紫外线照射的细胞的9个克隆中,只有1个具有抗原性。源自未照射培养物的克隆不是抗原性变体。紫外线照射培养物来源细胞的抗原性增加与细胞表面I类主要组织相容性复合体抗原表达的增加无关。这些结果表明,紫外线照射后抗原性变体产生的频率是所用特定细胞系的固有特性,并且即使是源自单个肿瘤的克隆细胞系在紫外线照射后产生抗原性变体的能力也有所不同。此外,它们表明抗原性增加不一定是由于紫外线诱导的细胞表面I类组织相容性抗原表达增加所致。

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