用bcr-abl转化细胞攻击dna疫苗小鼠,CD4+而CD8+ T细胞的肿瘤保护活性。

Clinical & Developmental Immunology Pub Date : 2013-01-01 Epub Date: 2013-11-21 DOI:10.1155/2013/923107
Martina Petráčková, Vincent Lučanský, Vladimír Vonka
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引用次数: 3

摘要

近年来,多次报道CD4细胞在慢性髓性白血病的免疫学中发挥重要作用。因此,在使用bcr-abl转化细胞的动物模型中测试它们的活性是有意义的。用携带bcr-abl融合基因的DNA疫苗对BALB/c小鼠进行四次免疫。最后一次接种疫苗两周后,小鼠皮下注射同源bcr-abl转化的12B1细胞,形成实体瘤。在挑战时,用CD8+ T细胞或CD4+ T细胞的抗体治疗动物。对耗竭的效果进行了监测,发现非常有效。所有未免疫的动物都出现了肿瘤。所有未接受抗体治疗的动物,以及那些CD8+ T细胞被耗尽的动物,都能完全抵御这种挑战。另一方面,几乎所有用抗cd4 +抗体治疗的小鼠都发生了肿瘤。这些结果强烈提示CD4+ T细胞在当前系统中起效应器作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Tumor protective activity of CD4+ but not of CD8+ T cells in DNA-vaccinated mice challenged with bcr-abl-transformed cells.

Tumor protective activity of CD4+ but not of CD8+ T cells in DNA-vaccinated mice challenged with bcr-abl-transformed cells.

Tumor protective activity of CD4+ but not of CD8+ T cells in DNA-vaccinated mice challenged with bcr-abl-transformed cells.

Tumor protective activity of CD4+ but not of CD8+ T cells in DNA-vaccinated mice challenged with bcr-abl-transformed cells.

In the recent past, it has repeatedly been reported that CD4 cells play an important role in the immunology of chronic myeloid leukaemia. It was therefore of interest to test their activity in an animal model using bcr-abl-transformed cells. BALB/c mice were four times immunized with a DNA vaccine carrying the bcr-abl fusion gene. Two weeks after the last vaccine dose, the animals were challenged with syngeneic bcr-abl-transformed 12B1 cells which form solid tumors after subcutaneous administration. At the time of challenge, animals were treated with antibodies against the CD8+ T cells or CD4+ T cells. The efficacy of the depletion was monitored and found highly effective. All nonimmunized animals developed tumors. All animals untreated with the antibodies as well as those in which CD8+ T cells had been depleted, were fully protected against the challenge. On the other hand, almost all mice treated with anti-CD4+ antibody developed tumors. These results strongly suggested that the CD4+ T cells acted as effectors in the present system.

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