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Subacute Changes in Cleavage Processing of Amyloid Precursor Protein and Tau following Penetrating Traumatic Brain Injury

机译:穿透性颅脑损伤后淀粉样前体蛋白和Tau蛋白裂解过程的亚急性变化

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摘要

Traumatic brain injury (TBI) is an established risk factor for the development of Alzheimer’s disease (AD). Here the effects of severe penetrating TBI on APP and tau cleavage processing were investigated in a rodent model of penetrating ballistic-like brain injury (PBBI). PBBI was induced by stereotactically inserting a perforated steel probe through the right frontal cortex of the anesthetized rat and rapidly inflating/deflating the probe’s elastic tubing into an elliptical shaped balloon to 10% of total rat brain volume causing temporary cavitation injury. Separate animals underwent probe injury (PrI) alone without balloon inflation. Shams underwent craniectomy. Brain tissue was collected acutely (4h, 24h, 3d) and subacutely (7d) post-injury and analyzed by immunoblot for full length APP (APP-FL) and APP beta c-terminal fragments (βCTFs), full length tau (tau-FL) and tau truncation fragments and at 7d for cytotoxic Beta amyloid (Aβ) peptides Aβ40 and Aβ42 analysis. APP-FL was significantly decreased at 3d and 7d following PBBI whereas APP βCTFs were significantly elevated by 4h post-injury and remained elevated through 7d post-injury. Effects on βCTFs were mirrored with PrI, albeit to a lesser extent. Aβ40 and Aβ42 were significantly elevated at 7d following PBBI and PrI. Tau-FL decreased substantially 3d and 7d post-PBBI and PrI. Importantly, a 22 kDa tau fragment (tau22), similar to that found in AD, was significantly elevated by 4h and remained elevated through 7d post-injury. Thus both APP and tau cleavage was dramatically altered in the acute and subacute periods post-injury. As cleavage of these proteins has also been implicated in AD, TBI pathology shown here may set the stage for the later development of AD or other tauopathies.
机译:颅脑外伤(TBI)是阿尔茨海默氏病(AD)发展的既定危险因素。在这里,在穿透性弹道样脑损伤(PBBI)的啮齿动物模型中研究了严重穿透性TBI对APP和tau裂解过程的影响。 PBBI的诱导是通过立体定向将穿孔的钢探针穿过麻醉大鼠的右额皮质,然后将探针的弹性管快速膨胀/收缩到椭圆形的气球中,使其占大鼠脑总体积的10%,从而造成暂时的空化损伤。单独的动物单独受到探针损伤(PrI),而没有球囊膨胀。残渣接受了颅骨切除术。损伤后急性(4h,24h,3d)和亚急性(7d)收集脑组织,并通过免疫印迹分析全长APP(APP-FL)和APP beta c-末端片段(βCTFs),全长tau(tau- FL)和tau截短片段,在第7天进行细胞毒性β淀粉样蛋白(Aβ)肽Aβ40和Aβ42分析。 PBBI后第3天和第7天APP-FL显着下降,而损伤后4h APPβCTFs显着升高,直到损伤后7d仍保持升高。 PrI反映了对βCTF的影响,尽管程度较小。 PBBI和PrI后7天,Aβ40和Aβ42显着升高。 Tau-FL在PBBI和PrI后第3天和第7天显着下降。重要的是,类似于AD中发现的22 kDa tau片段(tau22)在4h时显着升高,并在受伤后7d仍保持升高。因此,在损伤后的急性和亚急性时期,APP和tau的裂解均发生了显着改变。由于这些蛋白质的切割也与AD有关,因此此处显示的TBI病理可能为AD或其他疾病的后续发展奠定了基础。

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