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Identification of chronic brain protein changes and protein targets of serum auto-antibodies after blast-mediated traumatic brain injury

机译:爆炸介导的脑外伤后慢性脑蛋白变化和血清自身抗体蛋白靶标的鉴定

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摘要

In addition to needing acute emergency management, blast-mediated traumatic brain injury (TBI) is also a chronic disorder with delayed-onset symptoms that manifest and progress over time. While the immediate consequences of acute blast injuries are readily apparent, chronic sequelae are harder to recognize. Indeed, the identification of individuals with mild-TBI or TBI-induced symptoms is greatly impaired in large part due to the lack of objective and robust biomarkers. The purpose of this study was to address these need by identifying candidates for serum-based biomarkers of blast TBI, and also to identify unique or differentially regulated protein expression in the thalamus in C57BL/6J mice exposed to blast using high throughput qualitative screens of protein expression. To identify thalamic proteins differentially or uniquely associated with blast exposure, we utilized an antibody-based affinity-capture strategy (referred to as “proteomics-based analysis of depletomes”; PAD) to deplete thalamic lysates from blast-treated mice of endogenous thalamic proteins also found in control mice. Analysis of this “depletome” detected 75 unique proteins, many with associations to the myelin sheath. To identify blast-associated proteins eliciting production of circulating autoantibodies, serum antibodies of blast-treated mice were immobilized, and their immunogens subsequently identified by proteomic analysis of proteins specifically captured following incubation with thalamic lysates (a variant of a strategy referred to as “proteomics-based expression library screening”; PELS). This analysis identified 46 blast-associated immunogenic proteins, including 6 shared in common with the PAD analysis (ALDOA, PHKB, HBA-A1, DPYSL2, SYN1, and CKB). These proteins and their autoantibodies are appropriate for further consideration as biomarkers of blast-mediated TBI.
机译:除需要紧急的紧急处理外,爆炸介导的创伤性脑损伤(TBI)也是一种慢性病,具有延迟发作的症状,这种症状会随着时间的流逝而逐渐发展。急性爆炸伤的直接后果是显而易见的,但慢性后遗症更难辨认。确实,在很大程度上,由于缺乏客观而可靠的生物标志物,对患有轻度TBI或TBI诱导症状的个体的鉴定大大受到损害。这项研究的目的是通过鉴定候选的基于血清TBI的生物标志物来满足这些需求,并利用高通量蛋白质定性筛查暴露于blast的C57BL / 6J小鼠丘脑中独特或差异调节的蛋白质表达表达。为了鉴定与母细胞暴露差异或唯一相关的丘脑蛋白,我们利用了基于抗体的亲和力捕获策略(称为“基于蛋白质组学的耗竭分析”; PAD)来耗竭来自经爆破处理的内源性丘脑蛋白质小鼠的丘脑溶解产物在对照小鼠中也发现。分析这种“耗尽型”可检测到75种独特的蛋白质,其中许多与髓鞘相关。为了鉴定引发循环自身抗体产生的胚细胞相关蛋白,固定了经胚细胞处理的小鼠的血清抗体,随后通过蛋白质组学分析与丘脑裂解液温育后特异性捕获的蛋白,鉴定了它们的免疫原(一种称为“蛋白质组学”策略的变体)的表达库筛选”; PELS)。该分析鉴定了46种与胚细胞相关的免疫原性蛋白质,其中包括6种与PAD分析共有的蛋白质(ALDOA,PHKB,HBA-A1,DPYSL2,SYN1和CKB)。这些蛋白质及其自身抗体适合作为blast介导的TBI的生物标记物进一步考虑。

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