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首页> 外文期刊>The Journal of Experomental Medicine >CYTODYNAMICS OF THE IMMUNE RESPONSE IN TWO LINES OF MICE GENETICALLY SELECTED FOR "HIGH" AND "LOW" ANTIBODY SYNTHESIS
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CYTODYNAMICS OF THE IMMUNE RESPONSE IN TWO LINES OF MICE GENETICALLY SELECTED FOR "HIGH" AND "LOW" ANTIBODY SYNTHESIS

机译:遗传选择“高”和“低”抗体的两类小鼠的免疫反应的细胞动力学

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Two lines of mice have been separated by selective breeding for the character "agglutinin production to heterologous erythrocytes." Around the 18th generation of selection the two lines could be considered as homozygous for the character investigated. This trait is under the control of a group of additive genes. The interline difference in the production of anti-SE agglutinins was verified for the range of antigen doses from subimmunogenic to maximal. After intravenous immunization with an optimal dose of SE, the duration of the exponential rise in serum antibody was 4–5 days in both lines. At this time most of the interline difference in responsiveness is already expressed. A cytodynamic study carried out in terms of plaque-forming cells (PFC) and rosette-forming cells (RFC) in the spleen during the exponential phase showed that the principal interline difference is found in the doubling time of cells engaged in the immune response.More precise cytodynamic analysis made in terms of RFC showed that the doubling time of RFC is 9 hr in high responder and 16 hr in low responder mice. The duration of the exponential rise and the number of target cells stimulated by antigen is the same in both lines. The interline difference at the end of the exponential rise (4 days postimmunization) is larger in terms of serum antibody (30–40-fold) than in terms of PFC or RFC (20- and 11-fold, respectively).A morphological study of RFC in nonimmunized mice showed that about 90% of rosettes were formed by small lymphocytes in both lines. The remainder were medium-sized lymphocytes. At the peak of the cellular response the RFC have differentiated into large lymphocytes, blast cells, and plasma cells. The contribution of plasma cells to RFC is much greater in the high than in the low line. The cytodynamic and morphologic results presented in this article are compatible with the hypothesis that the group of genes segregated in each line during the selective breeding control and regulate the rate of multiplication and differentiation of the antibody-producing cells.
机译:通过选择性育种已分离出两行小鼠,其特征为“向异源红细胞产生凝集素”。在选择的第18代前后,对于所研究的性状,两条品系可以认为是纯合的。此性状受一组加性基因的控制。从亚免疫原性到最大的抗原剂量范围,验证了抗SE凝集素生产中的品系差异。在用最佳剂量的SE静脉注射后,两系中血清抗体的指数上升持续时间为4-5天。此时,大多数线间响应差异已经表达出来。在指数期对脾脏中的斑块形成细胞(PFC)和玫瑰花结形成细胞(RFC)进行的细胞动力学研究表明,主要的细胞系间差异在于参与免疫应答的细胞的倍增时间。根据RFC进行的更精确的细胞动力学分析表明,RFC的倍增时间在高反应小鼠中为9小时,在低反应小鼠中为16小时。在两条细胞系中,指数上升的持续时间和抗原刺激的靶细胞数量相同。指数上升结束时(免疫后4天)的血清间抗体差异(30-40倍)大于PFC或RFC(分别为20和11倍)。形态学研究在未免疫的小鼠中,RFC的测定表明,两系中的小淋巴细胞形成了约90%的玫瑰花结。其余为中型淋巴细胞。在细胞反应的高峰期,RFC已分化为大淋巴细胞,胚细胞和浆细胞。浆细胞对RFC的贡献在高线时比低线时大得多。本文提出的细胞动力学和形态学结果与以下假设相吻合:在选择性育种过程中,每一系中分离出的一组基因控制着抗体产生细胞的增殖和分化速率。

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