首页> 外文OA文献 >Production of auto-anti-idiotypic antibody during the normal immune response to TNP-ficoll. I. Occurrence in AKR/J and BALB/c mice of hapten-augmentable, anti-TNP plaque-forming cells and their accelerated appearance in recipients of immune spleen cells
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Production of auto-anti-idiotypic antibody during the normal immune response to TNP-ficoll. I. Occurrence in AKR/J and BALB/c mice of hapten-augmentable, anti-TNP plaque-forming cells and their accelerated appearance in recipients of immune spleen cells

机译:在对TNP-ficoll的正常免疫反应过程中产生自身抗独特型抗体。 I.在AKR / J和BALB / c小鼠中出现的可增强半抗原的抗TNP斑块形成细胞及其在免疫脾细胞受体中的加速出现

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摘要

Attempts were made to elucidate the cause of the downward regulation of the splenic plaque-forming cell (PFC) response in AKR/J and BALB/c mice between days 4 and 7 after a single intravenous injection of 2,4,6,trinitrophenyl- lys-Ficoll(TNP-F). AKR/J spleen cells, taken 7 d after injection of TNP-F, were transferred, together with TNP-F, into normal AKR/J mice. The day-3 or – 4 PFC response of the recipients was much lower than that of recipients of normal cells. However, the suppression was only apparent because the presence of 10(-8)-10(-7) M 2,4,6-trinitrophenyl-ε-amino-n-caproic acid (TNP- EACA) (or 10(-7)-10(-6) M 2,4,-dinitrophenyl-ε-amino-n-caproic acid) in the PFC assay caused a dramatic increase in observed PFC, averaging 298 percent on day 3 and 122 percent on day 4. Recipients of normal cells showed no such hapten-augmentable PFC. T-depleted immune spleen cells did not cause any apparent suppression of the response to TNP-F, but hapten-augmentable PFC in recipient spleens were again prevalent. Suppression of the PFC response, as well as hapten-augmentable PFC, were seen after transfer of immune serum. It was postulated that hapten augmentation of PFC was caused by displacement of auto-anti-idiotypic antibody from the surface of blocked antibody- synthesizing cells. Further studies showed that such hapten-augmentable PFC occurred in the spleens of a large percentage of both AKR/J and BALB/c mice examined after day 4 of the primary response to TNP-F. Thus, it was hypothesized that the downward regulation of the magnitude and, possibly, also of the heterogeneity of the splenic-PFC response was due to an auto-antibody response to one or more major idiotypes of the anti-TNP response.
机译:试图阐明在单次静脉内注射2,4,6,三硝基苯基-后的第7至7天之间,AKR / J和BALB / c小鼠脾脏斑块形成细胞(PFC)反应下调的原因。 lys-Ficoll(TNP-F)。注射TNP-F后7天采集的AKR / J脾细胞与TNP-F一起转移到正常AKR / J小鼠中。接受者在第3天或第4天的PFC反应远低于正常细胞的接受者。然而,抑制作用是显而易见的,因为存在10(-8)-10(-7)M 2,4,6-三硝基苯基-ε-氨基-正己酸(TNP-EACA)(或10(-7 )-10(-6)M 2,4,-二硝基苯基-ε-氨基-正己酸M)在PFC分析中引起观察到的PFC急剧增加,在第3天平均为298%,在第4天平均为122%。正常细胞中没有显示出这种可增强半抗原的PFC。 T耗尽的免疫脾细胞并未引起对TNP-F反应的任何明显抑制,但受体脾中可半抗原增强的PFC再次盛行。转移免疫血清后,PFC反应的抑制以及半抗原可增强的PFC均被抑制。据推测,PFC的半抗原增加是由于自抗独特型抗体从封闭的抗体合成细胞的表面置换而引起的。进一步的研究表明,这种对半抗原可增强的PFC发生在对TNP-F初次应答的第4天后检查的大部分AKR / J和BALB / c小鼠的脾脏中。因此,假设脾-PFC应答的幅度以及可能的异质性的向下调节是由于对一种或多种抗-TNP应答的主要独特型的自身抗体应答。

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