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Common Strategies To Prevent and Modulate Experimental Cerebral Malaria in Mouse Strains with Different Susceptibilities

机译:预防和调节不同易感性小鼠品系实验性脑疟的常用策略

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摘要

Cerebral malaria (CM) is a severe complication of Plasmodium falciparum infection, predominantly experienced by children and nonimmune adults, which results in significant mortality and long-term sequelae. Previous studies have reported distinct susceptibility gene loci in CBA/CaH (CBA) and C57BL/6 (B6) mice with experimental CM (ECM) caused by infection with Plasmodium berghei ANKA. Here we present an analysis of genome-wide expression profiles in brain tissue taken from B6 and CBA mice with ECM and report significant heterogeneity between the two mouse strains. Upon comparison of the leukocyte composition of ECM brain tissue, microglia were expanded in B6 mice but not CBA mice. Furthermore, circulating levels of gamma interferon, interleukin-10, and interleukin-6 were significantly higher in the serum of B6 mice than in that of CBA mice with ECM. Two therapeutic strategies were applied to B6 and CBA mice, i.e., (i) depletion of regulatory T (Treg) cells prior to infection and (ii) depletion of CD8+ T cells after the establishment of ECM. Despite the described differences between susceptible mouse strains, depletion of Treg cells before infection attenuated ECM in both B6 and CBA mice. In addition, the depletion of CD8+ T cells when ECM symptoms are apparent leads to abrogation of ECM in B6 mice and a lack of progression of ECM in CBA mice. These results may have important implications for the development of effective treatments for human CM.
机译:脑型疟疾是恶性疟原虫感染的一种严重并发症,主要发生于儿童和非免疫成年人,导致大量死亡率和长期后遗症。先前的研究已经报道了由伯氏疟原虫ANKA感染引起的具有实验性CM(ECM)的CBA / CaH(CBA)和C57BL / 6(B6)小鼠中的易感基因基因座。在这里,我们介绍了从B6和CBA小鼠的ECM脑组织中全基因组表达谱的分析,并报告了两种小鼠品系之间的显着异质性。比较ECM脑组织的白细胞组成后,小胶质细胞在B6小鼠而非CBA小鼠中扩增。此外,B6小鼠血清中的γ干扰素,白介素10和白介素6的循环水平显着高于患有ECM的CBA小鼠。对B6和CBA小鼠采用了两种治疗策略,即(i)感染前消耗调节性T(Treg)细胞和(ii)建立ECM后消耗CD8 + T细胞。尽管描述了易感小鼠品系之间的差异,但感染前Treg细胞的耗竭减弱了B6和CBA小鼠的ECM。此外,当出现ECM症状时,CD8 + T细胞的消耗会导致B6小鼠ECM废除,而CBA小鼠ECM缺乏进展。这些结果可能对开发有效的人类CM治疗方法具有重要意义。

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