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首页> 外文期刊>Purinergic signalling >Intralesional uridine-5a?2-triphosphate (UTP) treatment induced resistance to Emphasis Type="Italic"Leishmania amazonensis/Emphasis infection by boosting ThSubscript1/Subscript immune responses and reactive oxygen species production
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Intralesional uridine-5a?2-triphosphate (UTP) treatment induced resistance to Emphasis Type="Italic"Leishmania amazonensis/Emphasis infection by boosting ThSubscript1/Subscript immune responses and reactive oxygen species production

机译:腹腔内尿苷5a?2-三磷酸(UTP)处理可增强Th 1 免疫应答和产生活性氧,从而诱导对亚马逊利什曼原虫的抗药性

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Leishmania amazonensis is the etiologic agent of cutaneous leishmaniasis, an immune-driven disease causing a range of clinical symptoms. Infections caused by L. amazonensis suppress the activation and function of immune cells, including macrophages, dendritic cells, and CD4+ T cells. In this study, we analyzed the course of infection as well as the leishmanicidal effect of intralesional UTP treatment in L. amazonensis-infected BALB/c mice. We found that UTP treatment reduced the parasitic load in both footpad and lymph node sites of infection. UTP also boosted Th1 immune responses, increasing CD4+ T cell recruitment and production of IFN-?3, IL-1?2, IL-12, and TNF-?±. In addition, the role of UTP during innate immune response against L. amazonensis was evaluated using the air pouch model. We observed that UTP augmented neutrophil chemoattraction and activated microbicidal mechanisms, including ROS production. In conclusion, our data suggested an important role for this physiological nucleotide in controlling L. amazonensis infection, and its possible use as a therapeutic agent for shifting immune responses to Th1 and increasing host resistance against L. amazonensis infection.
机译:亚马逊利什曼原虫是皮肤利什曼病的病原体,皮肤利什曼病是一种免疫驱动的疾病,可引起一系列临床症状。由亚马逊乳杆菌引起的感染会抑制免疫细胞的激活和功能,包括巨噬细胞,树突状细胞和CD4 + T细胞。在这项研究中,我们分析了感染的过程,以及病原体内UTP处理在感染了亚马逊气杆菌的BALB / c小鼠中的杀菌作用。我们发现,UTP治疗可减少感染的脚垫和淋巴结部位的寄生虫负荷。 UTP还可以增强Th1免疫反应,增加CD4 + T细胞募集和IFN-α3,IL-1β2,IL-12和TNF-α±的产生。另外,使用气袋模型评价了UTP在针对亚马逊水母的先天免疫应答中的作用。我们观察到UTP增强了嗜中性粒细胞的趋化性并激活了杀菌机制,包括ROS的产生。总之,我们的数据表明该生理核苷酸在控制亚马逊线虫感染中具有重要作用,并且有可能用作转移针对Th1的免疫反应和增强宿主抵抗亚马逊线虫感染的治疗剂。

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