Suppr超能文献

肿瘤休眠与细胞信号传导。V. 建立休眠后BCL1肿瘤的再生长。

Tumor dormancy and cell signaling. V. Regrowth of the BCL1 tumor after dormancy is established.

作者信息

Vitetta E S, Tucker T F, Racila E, Huang Y W, Marches R, Lane N, Scheuermann R H, Street N E, Watanabe T, Uhr J W

机构信息

Cancer Immunobiology Center and Department of Microbiology, University of Texas Southwestern Medical Center at Dallas, 75235, USA.

出版信息

Blood. 1997 Jun 15;89(12):4425-36.

PMID:9192767
Abstract

The majority of BALB/c mice immunized with the BCL1 lymphoma-derived idiotype (Id+) IgM and subsequently challenged with BCL1 tumor cells develop a state of tumor dormancy. The vast majority of dormant lymphoma cells are in cell cycle arrest, but there are also residual replicating cells. In the present studies, we attempted to define features of both the dormant lymphoma cells and the host that lead to escape from dormancy. Escape from dormancy occurs at a steady rate over a 2-year period, suggesting that it is a stochastic process. We found that, in the majority of mice, escape was due to the emergence of genetic variants that were no longer susceptible to the anti-Id-mediated induction of dormancy. Ten percent of these variants were Id-; the remainder were Id+ but could grow in the presence of anti-Id antibodies, suggesting that there were mutations in molecules involved in one or more mIg-mediated negative-signaling pathways. In two of five such escapees, alterations in either Syk, HS1, and/or Lyn were observed. In a small percentage of mice, a low titer of circulating anti-Id antibody before tumor challenge correlated with a subsequent, more rapid loss of dormancy.

摘要

用BCL1淋巴瘤衍生的独特型(Id+)IgM免疫的大多数BALB/c小鼠,随后用BCL1肿瘤细胞攻击,会进入肿瘤休眠状态。绝大多数休眠的淋巴瘤细胞处于细胞周期停滞状态,但也有残余的复制细胞。在本研究中,我们试图确定导致从休眠状态逃逸的休眠淋巴瘤细胞和宿主的特征。在两年时间里,逃逸出休眠状态的情况以稳定的速率发生,这表明它是一个随机过程。我们发现,在大多数小鼠中,逃逸是由于出现了不再易受抗独特型介导的休眠诱导影响的遗传变异。这些变异中有10%是Id-;其余的是Id+,但能在抗Id抗体存在的情况下生长,这表明参与一个或多个膜免疫球蛋白(mIg)介导的负信号通路的分子发生了突变。在五个这样的逃逸小鼠中有两个,观察到了Syk、HS1和/或Lyn的改变。在一小部分小鼠中,肿瘤攻击前循环抗Id抗体的低滴度与随后更快地失去休眠状态相关。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验