Kalantari Tahereh, Ciric Bogoljub, Kamali-Sarvestani Eskandar, Rostami Abdolmohamad
Diagnostic Laboratory Sciences and Technology Research Center, School of Paramedical Sciences, Shiraz University of Medical Sciences, Shiraz, Iran.
Department of Laboratory Sciences, School of Paramedical Sciences, Shiraz University of Medical Sciences, Shiraz, Iran.
Iran J Basic Med Sci. 2020 Mar;23(3):287-292. doi: 10.22038/IJBMS.2020.36160.8615.
In addition to pro-inflammatory role, dendritic cells (DCs) can also be anti-inflammatory when they acquire tolerogenic phenotype. In this study we tested the role of CD40 and IL-23p19 in antigen presenting function of bone marrow-derived DCs (BMDCs) by comparing BMDCs derived from CD40 knockout (CD40KO-DCs) and IL-23p19 (IL-23p19KO-DCs) knockout mice with those from C57BL/6 mice (Cont-DCs). We have focused on CD40 and IL-23, as these molecules have well established pro-inflammatory roles in a number of autoimmune and inflammatory diseases.
The expression of maturation markers MHC II and co-stimulatory molecules CD40, CD80, and CD86 was analyzed by flow cytometry, while the expression of CD40 and IL-23p19 was measured by RT-PCR. The capacity of BMDCs to activate CD4+ T cells was evaluated by 3H-thymidine incorporation, and the capacity of BMDCs to uptake antigen was evaluated using fluorescent OVA and flow cytometry.
The lack of CD40 or IL-23p19 had no effect on uptake of FITC-OVA by the DCs, confirming their immature phenotype. Moreover, CD40KO-DCs had significantly reduced capacity to stimulate proliferation of CD4+ T cells. CD4+ T cells activated by CD40KO-DCs and IL-23p19KO-DCs produced significantly less IFN-γ (-value ≤0.05), while CD4+ T cells stimulated by IL-23p19KO-DCs produced less GM-CSF and more IL-10 than Cont-DCs.
This study shows that CD40KO-DCs and IL-23p19KO-DCs have a marked tolerogenic potency . Future studies should determine if and to what extent DCs lacking CD40 or IL-23 have a potential to be useful in therapy of autoimmune inflammation.
除了具有促炎作用外,树突状细胞(DCs)在获得耐受性表型时也可具有抗炎作用。在本研究中,我们通过比较来自CD40基因敲除(CD40KO-DCs)和IL-23p19(IL-23p19KO-DCs)基因敲除小鼠的骨髓来源DCs(BMDCs)与来自C57BL/6小鼠的BMDCs(Cont-DCs),测试了CD40和IL-23p19在骨髓来源DCs(BMDCs)抗原呈递功能中的作用。我们重点关注了CD40和IL-23,因为这些分子在许多自身免疫性和炎性疾病中已确立了促炎作用。
通过流式细胞术分析成熟标志物MHC II以及共刺激分子CD40、CD80和CD86的表达,同时通过RT-PCR检测CD40和IL-23p19的表达。通过3H-胸腺嘧啶掺入法评估BMDCs激活CD4+ T细胞的能力,使用荧光OVA和流式细胞术评估BMDCs摄取抗原的能力。
CD40或IL-23p19的缺失对DCs摄取FITC-OVA没有影响,证实了它们的未成熟表型。此外,CD40KO-DCs刺激CD4+ T细胞增殖的能力显著降低。由CD40KO-DCs和IL-23p19KO-DCs激活的CD4+ T细胞产生的IFN-γ明显减少(P值≤0.05),而由IL-23p19KO-DCs刺激的CD4+ T细胞产生的GM-CSF比Cont-DCs少,IL-10比Cont-DCs多。
本研究表明CD40KO-DCs和IL-23p19KO-DCs具有显著的耐受性潜能。未来的研究应确定缺乏CD40或IL-23的DCs是否以及在多大程度上有可能用于自身免疫性炎症的治疗。