Hogan K T, Hollingsworth M A, Seymour R E, Quinn M K, Evans D L
Immunopharmacology. 1984 Feb;7(1):49-57. doi: 10.1016/0162-3109(84)90007-9.
Polyclonal T cell activation, syngeneic tumor cell and alloantigen-induced proliferative responses were studied to determine if the regulation of these responses in normal and tumor-bearing NBR rats is mediated through products of the cyclooxygenase pathway and prostaglandin E2 (PGE2) in particular. Young rats and tumor-bearing rats have previously been shown to produce poor proliferative responses to PHA, Con A and syngeneic methylcholanthrene (MCA)-induced fibrosarcoma cells. The poor responses to PHA and Con A are mediated by PGE2 in unfractionated ( UNF ) and nylon wool adherent (ADH) cells. The same relationship was also established in the mixed leukocyte tumor cell (MLTC) response to MCA tumor cells although it appears to be of only minor significance as the enhancement following indomethacin (IND) treatment is still a relatively poor response. Indomethacin generally had no effect on the proliferative responses of tumor-bearing animals indicating that the suppression was not mediated through the cyclooxygenase pathway. We have also extended a previous observation in which UNF cells were found to be unresponsive to alloantigen stimulation. This suppression does not appear to be mediated through cyclooxygenase products as IND treatment does not enhance the UNF response although it does enhance the ADH response. These data indicate that a complex network of cyclooxygenase dependent and independent regulation exists in normal and tumor-bearing NBR rats.
研究了多克隆T细胞活化、同基因肿瘤细胞和同种异体抗原诱导的增殖反应,以确定正常和荷瘤NBR大鼠中这些反应的调节是否通过环氧化酶途径的产物,特别是前列腺素E2(PGE2)介导。先前已表明,幼鼠和荷瘤大鼠对PHA、Con A和同基因甲基胆蒽(MCA)诱导的纤维肉瘤细胞产生较差的增殖反应。对PHA和Con A的较差反应由未分离(UNF)细胞和尼龙毛黏附(ADH)细胞中的PGE2介导。在对MCA肿瘤细胞的混合白细胞肿瘤细胞(MLTC)反应中也建立了相同的关系,尽管吲哚美辛(IND)治疗后的增强反应仍然相对较差,但其意义似乎不大。吲哚美辛通常对荷瘤动物的增殖反应没有影响,表明这种抑制不是通过环氧化酶途径介导的。我们还扩展了先前的一项观察结果,即发现UNF细胞对同种异体抗原刺激无反应。这种抑制似乎不是通过环氧化酶产物介导的,因为IND治疗虽然增强了ADH反应,但并未增强UNF反应。这些数据表明,正常和荷瘤NBR大鼠中存在一个复杂的环氧化酶依赖性和非依赖性调节网络。