Modulation of 8-Oxoguanine DNA Glycosylase 1 (OGG1) Alleviated Anemia Severity and Excessive Cytokines Release during Plasmodium berghei Malaria in Mice.

IF 0.9 4区 医学 Q4 PARASITOLOGY
Abdullahi Samaila, Rusliza Basir, Nur Aimi Liyana Abdul Aziz, Abdusalam Abdullah Alarabei, Mukhtar Lawal Gambo, Maizaton Atmadini Abdullah, Mohd Khairi Hussain, Norshariza Nordin, Roslaini Abd Majid
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引用次数: 0

Abstract

Background: The interplay of OGG1, 8-Oxoguanine, and oxidative stress triggers the exaggerated release of cytokines during malaria, which worsens the outcome of the disease. We aimed to investigate the involvement of OGG1 in malaria and assess the effect of modulating its activity on the cytokine environment and anemia during P. berghei malaria in mice.

Methods: Plasmodium berghei ANKA infection in ICR mice was used as a malaria model. OGG1 concentration and oxidative stress levels in P. berghei-infected mice and their control counterparts were assessed during malaria using enzyme-linked immunosorbent assay. OGG1 activity in malaria mice was modulated using treatment with TH5487 and O8-OGG1 inhibitors. The effects of modulating OGG1 activity using OGG1 inhibitors on cytokine release and anemia during P. berghei malaria infection were assessed by cytometric bead array and measurement of total normal red blood cell count respectively.

Results: The plasma OGG1 level was significantly upregulated and positively correlated with parasitemia during P. berghei malaria in mice. Modulation of OGG1 ameliorated malaria severity by improving the total normal RBC count in TH5487 and O8-treated mice. Modulation of OGG1 with TH5487 caused significant reductions in serum levels of TNF-α, IFN-γ, IL-6, and IL-10. Similarly, OGG1 modulation activity using an O8-OGG1 inhibitor caused a significant reduction in serum levels of TNF-α, IL-2, IL-6, and IL-10.

Conclusion: The findings indicate the involvement of OGG1 in the P. berghei malaria infection. OGG1 inhibition by TH5487 and O8-OGG1 inhibitors suppressed excessive cytokine release, and this may represent a novel therapeutic strategy for ameliorating the severity of malaria infection.

8-氧鸟嘌呤DNA糖基化酶1 (OGG1)调节减轻伯氏疟原虫疟疾小鼠贫血严重程度和过度细胞因子释放
背景:OGG1、8-氧鸟嘌呤和氧化应激的相互作用引发疟疾期间细胞因子的过度释放,从而恶化疾病的结局。我们旨在研究OGG1在疟疾中的作用,并评估调节其活性对伯氏疟原虫疟疾期间小鼠细胞因子环境和贫血的影响。方法:以感染柏氏疟原虫的ICR小鼠作为疟疾模型。采用酶联免疫吸附法测定疟疾期间伯氏疟原虫感染小鼠和对照小鼠的OGG1浓度和氧化应激水平。使用TH5487和O8-OGG1抑制剂治疗疟疾小鼠,可调节OGG1活性。使用OGG1抑制剂调节OGG1活性对伯氏疟原虫感染期间细胞因子释放和贫血的影响分别通过细胞头阵列和正常红细胞总数测定进行了评估。结果:小鼠伯氏疟原虫发病期间血浆OGG1水平显著上调,并与寄生虫血症呈正相关。调节OGG1通过提高TH5487和o8治疗小鼠的正常红细胞总数来改善疟疾的严重程度。用TH5487调节OGG1可显著降低血清中TNF-α、IFN-γ、IL-6和IL-10的水平。同样,使用O8-OGG1抑制剂调节OGG1活性可显著降低血清TNF-α、IL-2、IL-6和IL-10水平。结论:OGG1参与了勃氏疟原虫疟疾感染。通过TH5487和O8-OGG1抑制剂抑制OGG1可以抑制过度的细胞因子释放,这可能是改善疟疾感染严重程度的一种新的治疗策略。
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来源期刊
CiteScore
1.80
自引率
0.00%
发文量
55
审稿时长
6-12 weeks
期刊介绍: Iranian Journal of Parasitology (IJP) is the official publication of Iranian Society of Parasitology (ISP) launched in 2006. The society was inaugurated in 1994 and pursues the improvement of the knowledge on the parasites and parasitic diseases, exchange of scientific knowledge with foreign societies, publicity activities, and consultation on the parasitic diseases, and intimate relationship among society members. The main aims of the Journal are: contribution to the field of Parasitology, including all aspects of parasites and parasitic diseases (medical and veterinary) and related fields such as Entomology which may be submitted by scientists from Iran and all over the world.
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