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小鼠对绵羊红细胞的免疫反应。I. 利用空斑技术对免疫事件的研究。

The immune response to sheep erythrocytes in the mouse. I. A study of the immunological events utilizing the plaque technique.

作者信息

Eidinger D, Pross H F

出版信息

J Exp Med. 1967 Jul 1;126(1):15-33. doi: 10.1084/jem.126.1.15.

Abstract

The direct and indirect plaque technique for the detection of antibody-forming cells against sheep erythrocytes was utilized for the investigation of a number of biological parameters of the primary and secondary immune response on a cellular level. The sequential pattern of 19S followed by 7S antibody formation was elicited in the primary response after a latent period of at least 1-2 days and 2-3 days respectively. The secondary response initiated 140 days after primary immunization, in contrast, was characterized by the simultaneous appearance of 19S and 7S antibody-forming cells after an observed latent period of 2-3 days. The cellular dynamics of the recruitment phase of the respective immunoglobulins in the primary and secondary response was interpreted as evidence for the derivation of the two classes of immunoglobulins from separate progenitors. The 19S antibody-forming cells were derived predominantly by a process of transformation and maturation and 7S antibody formers by a process of cellular division with a doubling time of about 12 hr. The draining lymph node exhibited maximal immunological reactivity due to its capacity to retain the particulate antigen. This capacity was considerably enhanced in the sensitized draining lymph node. Minimal cellular activity was also noted in distal lymphoid tissues which included the thymus. Focal cellular activity was observed in the draining lymph node for 60 days after immunization. Subsequently, very low level plaque-forming cellular activity was observed in association with persistence of maximal antibody activity. The appearance at 120 days of a generalized peak of cellular activity in lymphoid tissues throughout the host was considered an explanation for this discrepancy. The change in distribution of cellular antibody-forming activity, from a local to a generalized lymphatic response during the late phase of the immune response, implied a fundamental alteration in homeostatic mechanisms associated with maintenance of immune reactivity. Further manifestations of such an alteration were indicated by the appearance of 2-ME-sensitive 7S antibody nearly 3 months after primary intradermal immunization, which in the ensuing 5 months was associated with, and inversely related to, two major fluctuations in 2-ME-resistant 7S antibody. Evidence for the existence of immunological memory in the 19S system was not established in the present work. 19S anamnesis, for which evidence was derived from measurements of circulating antibody levels, was interpreted from cellular studies as the result of the substantial activity of previously uncommitted 19S lymphoid cells in distal lymphoid tissue associated with previously committed 19S cells contained in the draining lymph node.

摘要

采用直接和间接蚀斑技术检测抗绵羊红细胞的抗体形成细胞,在细胞水平上研究了初次和二次免疫应答的一些生物学参数。在初次应答中,分别经过至少1 - 2天和2 - 3天的潜伏期后,引发了先形成19S抗体随后形成7S抗体的顺序模式。相比之下,初次免疫140天后启动的二次应答,其特征是在观察到的2 - 3天潜伏期后,19S和7S抗体形成细胞同时出现。初次和二次应答中各自免疫球蛋白募集阶段的细胞动力学被解释为两类免疫球蛋白来源于不同祖细胞的证据。19S抗体形成细胞主要通过转化和成熟过程产生,而7S抗体形成细胞则通过细胞分裂过程产生,其倍增时间约为12小时。引流淋巴结由于其保留颗粒性抗原的能力而表现出最大的免疫反应性。在致敏的引流淋巴结中,这种能力显著增强。在包括胸腺在内的远端淋巴组织中也观察到最低限度的细胞活性。免疫接种后60天,在引流淋巴结中观察到局灶性细胞活性。随后,在最大抗体活性持续存在的情况下,观察到极低水平的蚀斑形成细胞活性。在宿主全身淋巴组织中120天时出现的细胞活性普遍峰值被认为是对此差异的一种解释。在免疫应答后期,细胞抗体形成活性的分布从局部淋巴反应转变为全身淋巴反应,这意味着与维持免疫反应性相关的稳态机制发生了根本改变。这种改变的进一步表现是,在初次皮内免疫近3个月后出现了对2 - 巯基乙醇敏感的7S抗体,在随后的5个月中,它与对2 - 巯基乙醇耐药的7S抗体的两个主要波动相关且呈负相关。在本研究中未证实19S系统中存在免疫记忆。19S回忆反应(其证据来自循环抗体水平的测量),从细胞研究角度解释为,是远端淋巴组织中先前未分化的19S淋巴细胞与引流淋巴结中先前已分化的19S细胞大量活动的结果。

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