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新型 TLR 激动剂和细胞因子鸡尾酒处理树突状细胞诱导的炎症细胞因子的差异:自身免疫中的树突状细胞靶向治疗。

Differential induction of inflammatory cytokines by dendritic cells treated with novel TLR-agonist and cytokine based cocktails: targeting dendritic cells in autoimmunity.

机构信息

Department of immune targeting, Bioneer A/S, Kogle Allé 2, Hørsholm, DK-2970, Denmark.

出版信息

J Inflamm (Lond). 2010 Jul 27;7:37. doi: 10.1186/1476-9255-7-37.

Abstract

BACKGROUND

Dendritic cells (DC) are main gate-keepers of the immune system, bridging the innate and adaptive immune system. DCs are able to mature into inflammatory DCs at sites of inflammation in both autoimmune and allergic disease, thereby sustaining a continuous activation of the adaptive immune system at sites of inflammation. This function of DCs makes them attractive target cells for therapeutic intervention in inflammatory diseases. We have designed a DC-based screening model by which drug candidates can be evaluated for their ability to suppress DC maturation into an inflammatory and disease promoting phenotype.

METHODS

Human monocyte derived DCs were differentiated using IL-4 and GM-CSF to immature DCs (imDCs). The imDCs were treated with various combinations of TLR-agonists and pro-inflammatory cytokines to identify cocktails with ability to mature imDCs into inflammatory DCs. The effect of the cocktails on DC maturation was evaluated using ELISA and cytokine arrays to measure secreted cytokines and chemokines. FACS analysis was used to assess expression of maturation markers, and functional studies were carried out using naïve allogeneic T-cells to assay for a Th1-promoting DC phenotype.

RESULTS

Nine cocktails were designed with potent ability to induce secretion of the Th1-promoting cytokines IL-12p70 and TNFalpha from imDCs, and three were able to induce the Th17-promoting cytokine IL-23. The cocktails were further characterized using cytokine arrays, showing induction of inflammation related cytokines and chemokines like CXCL10, CCL2, CCL4, CCL8, CCL15, CCL20 and IL-8, of which some are present in a range of autoimmune pathologies. Prostaglandin E2 secretion was identified from DCs treated with TLR agonists poly I:C and peptidoglycan, but not LPS. The cocktails were able to induce DC maturation markers like HLA-DR, CD40, CD80, CD83 and CD86, except the TLR7/8 agonist R848. Functional end-points made by co-culture of allogeneic CD4+ T cells with the cocktail treated DCs, showed that five cocktails in particular could induce a classical Th1-phenotype with ability to secrete high amounts of the hall-mark cytokine IFNgamma. The model was validated using dexamethasone and two COX-inhibitors, which were able to suppress the cocktail driven pro-inflammatory DC maturation.

CONCLUSIONS

The identification of novel Th1-promoting cocktails allows screening of anti-inflammatory drug candidates by assessing the ability to suppress the activation and differentiation of imDCs into inflammatory DCs with a specific Th1-promoting phenotype. The model thus provides a screening tool, which can identify potential anti-inflammatory effects on the natural regulator of the immune response, the dendritic cell.

摘要

背景

树突状细胞(DC)是免疫系统的主要守门员,连接先天免疫和适应性免疫系统。在自身免疫和过敏性疾病中,DC 能够在炎症部位成熟为炎症性 DC,从而在炎症部位持续激活适应性免疫系统。DC 的这种功能使其成为治疗炎症性疾病的有吸引力的靶细胞。我们设计了一种基于 DC 的筛选模型,通过该模型可以评估候选药物抑制 DC 成熟为炎症和促进疾病表型的能力。

方法

使用 IL-4 和 GM-CSF 将人单核细胞衍生的 DC 分化为未成熟 DC(imDC)。用各种 TLR 激动剂和促炎细胞因子组合处理 imDC,以鉴定能够将 imDC 成熟为炎症性 DC 的鸡尾酒。通过 ELISA 和细胞因子阵列测量分泌的细胞因子和趋化因子来评估鸡尾酒对 DC 成熟的影响。使用 FACS 分析评估成熟标志物的表达,并使用幼稚同种异体 T 细胞进行功能研究,以检测 Th1 促进的 DC 表型。

结果

设计了九种具有强大能力的鸡尾酒,可诱导 imDC 分泌 Th1 促进细胞因子 IL-12p70 和 TNFalpha,三种可诱导 Th17 促进细胞因子 IL-23。使用细胞因子阵列进一步表征鸡尾酒,显示诱导炎症相关细胞因子和趋化因子,如 CXCL10、CCL2、CCL4、CCL8、CCL15、CCL20 和 IL-8,其中一些存在于多种自身免疫性疾病中。从用 TLR 激动剂 poly I:C 和肽聚糖处理的 DC 中鉴定出前列腺素 E2 分泌,但 LPS 则不然。鸡尾酒能够诱导 HLA-DR、CD40、CD80、CD83 和 CD86 等 DC 成熟标志物,TLR7/8 激动剂 R848 除外。通过与鸡尾酒处理的 DC 共培养同种异体 CD4+T 细胞的功能终点显示,五种鸡尾酒特别能够诱导具有分泌大量标志性细胞因子 IFNgamma 能力的经典 Th1 表型。该模型通过地塞米松和两种 COX 抑制剂进行了验证,这两种抑制剂能够抑制鸡尾酒驱动的促炎 DC 成熟。

结论

新型 Th1 促进鸡尾酒的鉴定允许通过评估候选药物抑制 imDC 向具有特定 Th1 促进表型的炎症性 DC 激活和分化的能力来筛选抗炎药物。因此,该模型提供了一种筛选工具,可以识别对天然免疫反应调节剂树突状细胞的潜在抗炎作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b5e0/2918604/f0623f5bf8f0/1476-9255-7-37-1.jpg

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