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突变型EL-4胸腺瘤细胞与EB病毒感染在B淋巴细胞激活中的联合作用:a) EL-4激活的淋巴细胞的EB病毒感染。b) 使用EL-4细胞作为淋巴母细胞系的饲养细胞。

Combination of mutant EL-4 thymoma cells and EBV-infection in B lymphocyte activation a) EBV-infection of EL-4-activated lymphocytes. b) Use of EL-4 cells as feeders for lymphoblastoid cell lines.

作者信息

Barcellini W, Borghi M O, Nicoletti F, Bonara P, Fain C, Meroni P L

机构信息

Istituto di Clinica Medica I, University of Milan, Italy.

出版信息

J Clin Lab Immunol. 1990 Sep;33(1):21-8.

PMID:1966941
Abstract

The combination of mutant EL-4 thymoma cells and Epstein-Barr virus (EBV)-infection in the activation of human B lymphocytes was studied with two approaches: a) limiting numbers of B cells were first activated by EL-4 contact in order to expand the B cell population and then infected with EBV. Results show that EBV could induce further Ig synthesis, although was unable to determine proliferation or to generate immortalized lines from EL-4 activated cells. b) EL-4 cells were compared to conventional PBM as feeders for cultures of established lymphoblastoid cell lines (LCL) at low cell densities. EL-4 feeder activity was strictly dependent on the presence of phorbol-myristate-acetate (PMA) and supernatant from stimulated T-lymphocytes (T-SN). EL-4 feeders induced earlier proliferation peak and greater Ig synthesis by LCL. The latter effect could be also mediated by the addition of PMA and T-SN, even if a cooperating cell-to-cell signal by PMA and T-SN-sensitized-EL-4 cells could not be excluded. Altogether results indicate that EL-4 cells do not represent a clear advantage over classic PBM as feeders for cultures of established LCL at low cell densities.

摘要

采用两种方法研究了突变的EL-4胸腺瘤细胞与爱泼斯坦-巴尔病毒(EBV)感染在激活人B淋巴细胞中的联合作用:a)首先通过EL-4接触激活有限数量的B细胞以扩大B细胞群体,然后用EBV感染。结果表明,EBV能够诱导进一步的Ig合成,尽管无法确定增殖情况,也无法从EL-4激活的细胞中产生永生化细胞系。b)将EL-4细胞与传统的外周血单核细胞(PBM)作为低细胞密度下已建立的淋巴母细胞系(LCL)培养的饲养细胞进行比较。EL-4饲养细胞的活性严格依赖于佛波醇-肉豆蔻酸酯-乙酸酯(PMA)和刺激的T淋巴细胞上清液(T-SN)的存在。EL-4饲养细胞诱导LCL出现更早的增殖高峰和更高的Ig合成。即使不能排除PMA和T-SN致敏的EL-4细胞之间细胞间信号协同作用,后一种效应也可通过添加PMA和T-SN介导。总体结果表明,在低细胞密度下作为已建立的LCL培养的饲养细胞,EL-4细胞并不比经典的PBM具有明显优势。

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