Shilpa Kodati, Sunil K Chauhan, Yihe Chen, Parisa Emami-Naeini, Masahiro Omoto, Thomas H Dohlman, William Stevenson, Afsaneh Amouzegar, Gayathri Tummala, Daniel R Saban, Reza Dana
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Draining lymph nodes (DLN) were harvested at week 3 after transplantation, and proliferation of isolated recipient T cells through direct and indirect pathways was determined using mixed lymphocyte reaction assay. Frequencies of CD4<sup>+</sup>CD25<sup>+</sup>Foxp3<sup>+</sup> regulatory T cells, their expression of Foxp3, and frequencies of IFNy<sup>+</sup>CD4<sup>+</sup> Th1 cells were determined in DLN using flow cytometry. Finally, CD4<sup>+</sup> T cells were cultured with bone marrow-derived dendritic cells from either C57BL/6 or BALB/c mice in the presence of IL-6-blocking antibody to determine Treg induction through direct and indirect pathways, respectively. Treatment with anti-IL-6 antibody suppressed both the direct and indirect pathways of allosensitization in graft recipients and significantly improved allograft survival rates. Furthermore, <i>in vivo</i> blockade of IL-6 enhanced Foxp3 expression by Tregs in graft recipients undergoing rejection, but did not exert a significant effect on Treg frequencies. Finally, IL-6 neutralization <i>in vitro</i> enhanced the differentiation of Tregs from CD4<sup>+</sup> T cells through both direct and indirect pathways. 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引用次数: 0
摘要
本研究旨在确定全身性阻断白细胞介素-6(IL-6)对角膜移植小鼠模型的异体敏感性、调节性 T 细胞频率和抑制表型以及异体移植存活率的影响。异体角膜移植以 C57BL/6 小鼠为供体,BALB/c 小鼠为受体。移植受体在移植后头7天每天注射抗IL-6抗体或同种型对照抗体(1.25毫克/毫升),之后隔天注射,直到第8周。采用卡普兰-米尔生存分析法评估了8周的异体移植存活率。在移植后第3周收获引流淋巴结(DLN),并使用混合淋巴细胞反应测定法通过直接和间接途径测定离体受体T细胞的增殖情况。使用流式细胞术测定 DLN 中 CD4+CD25+Foxp3+ 调节性 T 细胞的频率、Foxp3 的表达以及 IFNy+CD4+ Th1 细胞的频率。最后,CD4+ T细胞与来自C57BL/6或BALB/c小鼠的骨髓树突状细胞在IL-6阻断抗体存在下进行培养,以分别确定通过直接和间接途径诱导的Treg。抗IL-6抗体抑制了移植物受体异体敏感化的直接和间接途径,并显著提高了异体移植物的存活率。此外,在体内阻断IL-6可增强发生排斥反应的移植物受体中Tregs的Foxp3表达,但对Treg频率没有明显影响。最后,体外 IL-6 中和可通过直接和间接途径促进 Tregs 从 CD4+ T 细胞分化。我们的研究结果表明,给角膜异体移植受者全身注射 IL-6 阻断抗体能抑制直接和间接途径的异体敏感化,与 Tregs 表达 Foxp3 的增加有关,并能提高异体移植的存活率。
The purpose of this study is to determine the effect of systemic blockade of Interleukin-6 (IL-6) on allosensitization, regulatory T cell frequencies and suppressive phenotype, and allograft survival rates in a mouse model of corneal transplantation. Allogeneic corneal transplantation was performed using C57BL/6 mice as donors and BALB/c mice as recipients. Graft recipients were injected daily with either anti-IL-6 antibody or an isotype control antibody (1.25 mg/ml) for the first 7 days and on alternate days thereafter until week 8 after transplantation. Allograft survival was evaluated for 8 weeks using Kaplan-Meier survival analysis. Draining lymph nodes (DLN) were harvested at week 3 after transplantation, and proliferation of isolated recipient T cells through direct and indirect pathways was determined using mixed lymphocyte reaction assay. Frequencies of CD4+CD25+Foxp3+ regulatory T cells, their expression of Foxp3, and frequencies of IFNy+CD4+ Th1 cells were determined in DLN using flow cytometry. Finally, CD4+ T cells were cultured with bone marrow-derived dendritic cells from either C57BL/6 or BALB/c mice in the presence of IL-6-blocking antibody to determine Treg induction through direct and indirect pathways, respectively. Treatment with anti-IL-6 antibody suppressed both the direct and indirect pathways of allosensitization in graft recipients and significantly improved allograft survival rates. Furthermore, in vivo blockade of IL-6 enhanced Foxp3 expression by Tregs in graft recipients undergoing rejection, but did not exert a significant effect on Treg frequencies. Finally, IL-6 neutralization in vitro enhanced the differentiation of Tregs from CD4+ T cells through both direct and indirect pathways. Our results demonstrate that systemic administration of IL-6-blocking antibody to corneal allograft recipients suppresses direct and indirect routes of allosensitization, is associated with increased expression of Foxp3 by Tregs, and improves allograft survival rates.
期刊介绍:
Computers and Electronics in Agriculture provides international coverage of advances in the development and application of computer hardware, software, electronic instrumentation, and control systems for solving problems in agriculture, including agronomy, horticulture (in both its food and amenity aspects), forestry, aquaculture, and animal/livestock farming. The journal publishes original papers, reviews, and applications notes on topics pertaining to advances in the use of computers or electronics in plant or animal agricultural production, including agricultural soils, water, pests, controlled environments, structures, and wastes, as well as the plants and animals themselves. Post-harvest operations considered part of agriculture (such as drying, storage, logistics, production assessment, trimming and separation of plant and animal material) are also covered. Relevant areas of technology include artificial intelligence, sensors, machine vision, robotics, networking, and simulation modelling.