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Characterization of Murine Dendritic Cell Line JAWS II and Primary Bone Marrow-Derived Dendritic Cells in Chlamydia muridarum Antigen Presentation and Induction of Protective Immunity▿

机译:鼠衣原体抗原表达和诱导保护性免疫中小鼠树突状细胞系JAWS II和原代骨髓源性树突状细胞的表征▿

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摘要

Dendritic cells (DCs) appear to orchestrate much of the immunobiology of Chlamydia infection, but most studies of Chlamydia-DC interaction have been limited by the availability and heterogeneity of primary bone marrow-derived DCs (BMDCs). We therefore evaluated the immunobiology of Chlamydia muridarum infection in an immortal DC line termed JAWS II derived from BMDCs of a C57BL/6 p53-knockout mouse. JAWS II cells were permissive to the developmental cycle of Chlamydia. Infection-induced cell death was 50 to 80% less in JAWS II cells than in BMDCs. Chlamydia infected JAWS II cells and yielded infectious progeny 10-fold greater than that with primary BMDCs. JAWS II cells showed an expression pattern of cell activation markers and cytokine secretion following Chlamydia infection similar to that of primary BMDCs by up-regulating the expression of CD86, CD40, and major histocompatibility complex class II and secreting significant amounts of interleukin-12 (IL-12) but not IL-10. JAWS II cells pulsed with Chlamydia stimulated immune CD4+ T cells to secrete gamma interferon. Adoptive transfer of ex vivo Chlamydia-pulsed JAWS II cells conferred levels of immunity on C57BL/6 mice similar to those conferred by primary BMDCs. Taken together, the data show that JAWS II cells exhibit immunobiological characteristics and functions similar to those of primary BMDCs in terms of Chlamydia antigen presentation in vitro and antigen delivery in vivo. We conclude that the JAWS II cell line can substitute for primary BMDCs in Chlamydia immunobiological studies.
机译:树突状细胞(DC)似乎可以协调衣原体感染的大部分免疫生物学,但是衣原体-DC相互作用的大多数研究都受到原发性骨髓来源的DC(BMDC)的可用性和异质性的限制。因此,我们评估了一种永生DC品系mur衣原体感染的免疫生物学,该品系被称为JAWS II,源自C57BL / 6 p53基因敲除小鼠的BMDC。 JAWS II细胞允许衣原体的发育周期。与BMDCs相比,JAWS II细胞的感染诱导细胞死亡减少了50%至80%。衣原体感染JAWS II细胞并产生的感染后代比原代BMDC大10倍。 JAWS II细胞通过上调CD86,CD40和II型主要组织相容性复合物的表达并分泌大量白细胞介素12(IL),显示出衣原体感染后与原代BMDC相似的细胞激活标志物和细胞因子分泌的表达模式。 -12),但不是IL-10。用衣原体脉冲的JAWS II细胞刺激免疫CD4 + T细胞分泌γ干扰素。体外传递衣原体脉冲的JAWS II细胞对C57BL / 6小鼠的免疫水平与原代BMDC相似。两者合计,数据显示就体外衣原体抗原呈递和体内抗原传递而言,JAWS II细胞具有与原代BMDC相似的免疫生物学特性和功能。我们得出结论,JAWS II细胞系可以替代衣原体免疫生物学研究中的原代BMDC。

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