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T细胞衍生的白细胞介素-3可诱导非B细胞、非T细胞产生白细胞介素-4,以放大曼氏血吸虫感染小鼠对非寄生虫抗原的辅助性T细胞2型细胞因子反应。

T cell-derived IL-3 induces the production of IL-4 by non-B, non-T cells to amplify the Th2-cytokine response to a non-parasite antigen in Schistosoma mansoni-infected mice.

作者信息

Kullberg M C, Berzofsky J A, Jankovic D L, Barbieri S, Williams M E, Perlmann P, Sher A, Troye-Blomberg M

机构信息

Immunobiology Section, National Institute of Allergy and Infectious Diseases (NIAID), National Institutes of Health, Bethesda, MD 20892, USA.

出版信息

J Immunol. 1996 Feb 15;156(4):1482-9.

PMID:8568251
Abstract

We describe a novel amplification mechanism underlying the increased early IL-4 production observed in Schistosoma mansoni-infected mice in response to a non-parasite Ag, sperm whale myoglobin (SwMb). Earlier studies have shown that splenic Fc epsilon R+ non-B, non-T (NBNT) cells from schistosome-infected mice secrete IL-4 after stimulation with parasite Ag. We now demonstrate that purified NBNT cells from SwMb-immunized S. mansoni-infected mice do not respond directly to SwMb, but produce IL-4 in response to IL-3. Accordingly, we show that the early SwMb-specific IL-4 response of spleen cells (SC) from immunized infected mice is dependent on IL-3 and on CD4+ T cells. Thus, most of the early SwMb-induced IL-4 from SC of infected mice appears to be produced by NBNT cells triggered by IL-3 synthesized by SwMb-specific CD4+ T cells. IL-3-induced IL-4 production was also observed in purified NBNT cells from immunized uninfected mice, but the frequency and/or IL-4-producing capacity of splenic IL-3-responsive cells was found to be 8 to 16 times higher in immunized infected animals. IL-4 production by purified CD4+ cells from immunized infected mice was also seen after SwMb stimulation, but this response showed slower kinetics than those of total SC, was IL-3-independent, and on average threefold greater than that by CD4+ cells from immunized uninfected controls. Thus, increased SwMb-induced IL-4 production in immunized S. mansoni-infected mice results from direct synthesis by CD4+ T cells, as well as their stimulation via IL-3 of an expanded population of NBNT cells. The latter pathway may serve as an amplification loop for Th2-cytokine responses.

摘要

我们描述了一种新的扩增机制,该机制是曼氏血吸虫感染小鼠在对非寄生虫抗原抹香鲸肌红蛋白(SwMb)产生应答时早期白细胞介素-4(IL-4)产量增加的基础。早期研究表明,来自血吸虫感染小鼠的脾脏FcεR⁺非B、非T(NBNT)细胞在受到寄生虫抗原刺激后会分泌IL-4。我们现在证明,从经SwMb免疫的曼氏血吸虫感染小鼠中纯化得到的NBNT细胞不会直接对SwMb作出反应,而是在受到白细胞介素-3(IL-3)刺激时产生IL-4。相应地,我们表明,来自免疫感染小鼠的脾细胞(SC)对SwMb的早期特异性IL-4应答依赖于IL-3和CD4⁺T细胞。因此,感染小鼠的SC中大多数早期SwMb诱导的IL-4似乎是由SwMb特异性CD4⁺T细胞合成的IL-3触发的NBNT细胞产生的。在来自免疫未感染小鼠的纯化NBNT细胞中也观察到了IL-3诱导的IL-4产生,但发现免疫感染动物脾脏中对IL-3有反应的细胞的频率和/或产生IL-4的能力比免疫未感染动物高8至16倍。在SwMb刺激后,也观察到来自免疫感染小鼠的纯化CD4⁺细胞产生IL-4,但这种应答的动力学比总SC的应答慢,不依赖于IL-3,并且平均比来自免疫未感染对照的CD4⁺细胞的应答大3倍。因此,在经免疫的曼氏血吸虫感染小鼠中,SwMb诱导的IL-4产生增加是由于CD4⁺T细胞的直接合成,以及它们通过IL-3对扩增的NBNT细胞群体的刺激。后一种途径可能作为Th2细胞因子应答的扩增环。

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