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中文摘要
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莱姆关节炎(LA)是伯氏疏螺旋体感染的一种常见的晚期表现,通常在适当的抗生素治疗后痊愈。然而,在一些患者中,关节炎在口服和静脉注射抗生素治疗2-3个月后明显杀死螺旋体后持续数月或数年,称为抗生素难治性LA。这些患者的关节以过度的滑膜炎症和增殖为特征。MicroRNAs(MiRNAs)是炎症和增殖等多种生物学过程的重要调节因子,miRNA功能缺陷的小鼠对伯氏杆菌感染和更严重的莱姆关节炎的免疫反应发生了显著的变化。然而,miRNAs在人类LA中的作用尚未被研究。为了确定miRNAs如何调节人类LA,一项无偏倚的筛选被用来测量抗生素耐药LA患者滑液(SF)和滑膜组织中miRNA的表达。以感染性LA(静脉注射抗生素治疗前)、RA(典型的慢性关节炎症性疾病)或骨关节炎(OA,一种轻微炎症性关节疾病)作为对照组。来自LA和RA患者的滑膜组织和SF,而不是OA,含有炎性miRNA信号,包括miR-146a和miR-155。在抗生素耐药的LA患者中,这种炎性miRNA信号与炎症标志物的升高和较长的病程相关。除了炎症特征外,抗生素耐药的LA和RA患者还具有明显的增殖miRNA特征,包括miR-142和miR-223。相比之下,感染性LA(口服或静脉注射抗生素治疗前)或OA患者缺乏这种增殖特征。在体外对滑膜病变中的主要常驻细胞成纤维细胞的研究表明,从LA患者的SF分离的miRNAs转移到成纤维样滑膜细胞中,提示miRNAs可能在LA发病过程中作为驻留细胞基因表达的旁分泌调节。根据这些初步结果,建议抗生素治疗后,抗生素敏感的LA患者适当下调炎症反应,修复受损组织,从而导致关节炎的缓解。相比之下,抗生素耐药的LA患者在明显的螺旋体死亡后未能恢复体内平衡,最初对感染的免疫反应发展为不受控制的滑膜炎症和增殖。在这些患者中,炎性miRNAs的积聚表明未能下调免疫反应,而增殖性miRNAs的积聚表明未能适当地调节增殖和组织修复。本研究旨在确定miRNAs在人类LA发病机制中调节滑膜炎症和增殖的作用,并探索miRNAs作为感染诱导的慢性炎症患者新的生物标志物和治疗靶点的潜力。
英文摘要
Lyme arthritis (LA), a common late manifestation of infection with Borrelia burgdorferi, usually resolves after appropriate antibiotic therapy. However, in some patients arthritis persist for months or years following apparent spirochetal killing by 2-3 months of oral and IV antibiotic therapy, termed antibiotic-refractory LA. Joints in these patients are characterized by excessive synovial inflammation and proliferation. MicroRNAs (miRNAs) are important regulators of various biological processes such as inflammation and proliferation, and mice with defects in miRNA function have significantly altered immune responses to B. burgdorferi infection and more severe Lyme arthritis. However, the role of miRNAs has not yet been examined in human LA. To determine how miRNAs modulate human LA, an unbiased screen was performed to measure miRNA expression in synovial fluid (SF) and synovial tissue from antibiotic-refractory LA patients. Patients with infectious LA (before IV antibiotic therapy), RA (a prototypic chronic joint inflammatory disease), or osteoarthritis (OA, a minimally inflammatory joint disease) were used as comparison groups. Synovial tissue and SF from patients with LA and RA, but not OA, contained an inflammatory miRNA signature, including miR- 146a and miR-155. In patients with antibiotic-refractory LA, this inflammatory miRNA signature correlated with elevated inflammatory markers and longer disease duration. In addition to an inflammatory signature, antibiotic-refractory LA and RA patients had a distinct proliferative miRNA signature, including miR-142 and miR-223. In contrast, infectious LA (prior to oral or IV antibiotic therapy) or OA patients lacked this proliferative signature. In vitro studies using fibroblasts, the predominant resident cell in the synovial lesion, demonstrated that miRNAs isolated from SF of LA patients are transferred to fibroblast-like synoviocytes, suggesting miRNAs may act as paracrine regulators of gene expression in resident cells during LA pathogenesis. Based on these preliminary results, it is proposed that after antibiotic therapy, patients with antibiotic- responsive LA appropriately down-regulate inflammation and repair damaged tissue, leading to resolution of arthritis. In contrast, patients with antibiotic-refractory LA fail to restore homeostasis following apparent spirochetal killing, and what starts as an immune response to infection develops into uncontrolled synovial inflammation and proliferation. In these patients, accumulation of inflammatory miRNAs indicates a failure to down-modulate immune responses, and accumulation of proliferative miRNAs indicates a failure to appropriately regulate proliferation and tissue repair. This proposal aims to determine the roles of miRNAs in regulating synovial inflammation and proliferation in human LA pathogenesis, and to explore the potential of miRNAs as novel biomarkers and therapeutic targets for patients with infection-induced chronic inflammation.
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MHC class II immunopeptidomics analysis of the SARS-CoV-2 proteome
  • 批准号:
    10182284
  • 项目类别:
  • 资助金额:
    $23.4万
  • 财政年份:
    2021
  • 负责人:
    Robert Lochhead
  • 依托单位:
MHC class II immunopeptidomics analysis of the SARS-CoV-2 proteome
  • 批准号:
    10491687
  • 项目类别:
  • 资助金额:
    $19.5万
  • 财政年份:
    2021
  • 负责人:
    Robert Lochhead
  • 依托单位:
海外基金