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来自对胸腺依赖性抗原产生耐受的动物的脾细胞,可被脂多糖激活,以合成针对该耐受原的抗体。

Spleen cells from animals tolerant to a thymus-dependent antigen can be activated by lipopolysaccharide to synthesize antibodies against the tolerogen.

作者信息

Möller G, Gronowicz E, Persson U, Coutinho A, Möller E, Hammarström L, Smith E

出版信息

J Exp Med. 1976 Jun 1;143(6):1429-38. doi: 10.1084/jem.143.6.1429.

Abstract

Immunological tolerance was induced in adult mice by the injection of 5 mg of deaggregated hapten-protein conjugate. The tolerant state was confirmed 4-19 days later by the failure of such animals to mount an immune response against an aggregated form of the same thymus-dependent hapten-protein conjugate as well as by the inability of spleen cells from tolerant animals to respond to a thymus-independent hapten-carrier conjugate. Even though the animals were fully tolerant, their spleen cells were activated by lipopolysaccharide (LPS) in vitro to produce normal numbers of plaque-forming cells against the hapten. The finding that spleen cells from tolerant animals could be activated by LPS into synthesis of antibodies against the tolerogen indicates that tolerance to thymus-dependent antigens does not affect B cells, but presumably only T cells. It is suggested that the only stringent test for the existence of B-cell tolerance is the inability of polyclonal B-cell activators to activate antibody synthesis against the tolerogen. The findings make it unlikely that B-cell tolerance to autologous thymus-dependent antigens exists and further indicate that such antigens cannot deliver activating or tolerogenic signals to B cells, although they are competent to combine with and block the Ig receptors.

摘要

通过注射5毫克解聚的半抗原-蛋白质缀合物,在成年小鼠中诱导免疫耐受。4至19天后,通过这些动物无法对相同的胸腺依赖性半抗原-蛋白质缀合物的聚集形式产生免疫反应,以及耐受动物的脾细胞无法对胸腺非依赖性半抗原-载体缀合物作出反应,证实了耐受状态。尽管这些动物已完全耐受,但它们的脾细胞在体外被脂多糖(LPS)激活,以产生正常数量的针对半抗原的噬斑形成细胞。耐受动物的脾细胞可被LPS激活以合成针对耐受原的抗体,这一发现表明,对胸腺依赖性抗原的耐受并不影响B细胞,而可能仅影响T细胞。有人提出,对B细胞耐受存在的唯一严格测试是多克隆B细胞激活剂无法激活针对耐受原的抗体合成。这些发现使得B细胞对自身胸腺依赖性抗原产生耐受的可能性不大,并进一步表明,此类抗原虽然能够与Ig受体结合并阻断其功能,但无法向B细胞传递激活或致耐受信号。

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