Mahidol-Oxford Tropical Medicine Research Unit, Mahidol University, Bangkok, Thailand.
Centre for Tropical Medicine and Global Health, University of Oxford, Oxford, United Kingdom.
Sci Rep. 2017 Sep 22;7(1):12143. doi: 10.1038/s41598-017-12331-5.
Melioidosis, caused by Burkholderia pseudomallei, is a potentially lethal infection with no licensed vaccine. There is little understanding of why some exposed individuals have no symptoms, while others rapidly progress to sepsis and death, or why diabetes confers increased susceptibility. We prospectively recruited a cohort of 183 acute melioidosis patients and 21 control subjects from Northeast Thailand and studied immune parameters in the context of survival status and the presence or absence of diabetes. HLA-B46 (one of the commonest HLA class I alleles in SE Asia) and HLA-C01 were associated with an increased risk of death (odds ratio 2.8 and 3.1 respectively). Transcriptomic analysis during acute infection in diabetics indicated the importance of interplay between immune pathways including those involved in antigen presentation, chemotaxis, innate and adaptive immunity and their regulation. Survival was associated with enhanced T cell immunity to nine of fifteen immunodominant antigens analysed including AhpC (BPSL2096), BopE (BPSS1525), PilO (BPSS1599), ATP binding protein (BPSS1385) and an uncharacterised protein (BPSL2520). T cell immunity to GroEL (BPSL2697) was specifically impaired in diabetic individuals. This characterization of immunity associated with survival during acute infection offers insights into correlates of protection and a foundation for design of an effective multivalent vaccine.
类鼻疽,由类鼻疽伯克霍尔德菌引起,是一种潜在致命的感染,目前尚无许可疫苗。对于为什么有些接触者无症状,而有些则迅速发展为败血症和死亡,或者为什么糖尿病会增加易感性,人们知之甚少。我们前瞻性地招募了来自泰国东北部的 183 名急性类鼻疽患者和 21 名对照者,并研究了免疫参数与生存状况以及是否存在糖尿病之间的关系。HLA-B46(东南亚最常见的 HLA Ⅰ类等位基因之一)和 HLA-C01 与死亡风险增加相关(比值比分别为 2.8 和 3.1)。糖尿病患者急性感染期间的转录组分析表明,包括抗原呈递、趋化、先天和适应性免疫及其调节在内的免疫途径相互作用的重要性。生存与分析的十五种免疫优势抗原中的九种的 T 细胞免疫增强有关,包括 AhpC(BPSL2096)、BopE(BPSS1525)、PilO(BPSS1599)、ATP 结合蛋白(BPSS1385)和一种未鉴定的蛋白(BPSL2520)。GroEL(BPSL2697)的 T 细胞免疫在糖尿病个体中特异性受损。急性感染期间与生存相关的免疫特征为设计有效的多价疫苗提供了保护相关和基础。