首页> 外文期刊>Behavioural Brain Research: An International Journal >Neuroprotective effect of monophosphoryl lipid A, a detoxified lipid A derivative, in photothrombotic model of unilateral selective hippocampal ischemia in rat
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Neuroprotective effect of monophosphoryl lipid A, a detoxified lipid A derivative, in photothrombotic model of unilateral selective hippocampal ischemia in rat

机译:单磷虾脂质A,一种毒物脂质A衍生物的神经保护作用,在大鼠单侧选择性海马缺血的光诱发模型中

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Finding a neuroprotective strategy to rescue patients suffering from acute brain damage is of great interest. Monophosphoryl lipid A (MPL) is a derivative of lipopolysaccharide (LPS) that lacks many of the endotoxic properties of the parent molecule, and yet has similar protective effect. Here, we report the first evidence that MPL preconditioning, similar to LPS preconditioning, can induce neuroprotection against cerebral ischemia. MPL (0 5, 1, 5 mu g/rat) was injected unilaterally into the left cerebral ventricle of male rats, and 48 h later, rats were subjected to ipsilateral selective hippocampal ischemia using a modified version of the photothrombotic method. The neuroprotective effects of MPL and LPS were evaluated by measuring infarct size and assessing cognitive function. The expression level of some inflammatory and anti-inflammatory cytokines involving in TLR4 signaling pathway was also measured. Cognitive impairment and infarct size were obvious in control group receiving normal saline intracerebroventricularly and then selective hippocampal ischemia, compared to the sham group. Immunologic preconditioning with MPL or LPS significantly reduced infarct size and improved cognitive function. Additionally, immunologic preconditioning resulted in inflammatory mediators, NF-kappa B and TNF-alpha, down-regulation but anti-inflammatory mediators, IRF3, IFN-beta, and TGF-beta, up-regulation. Our data showed that both MPL and LPS preconditioning may reprogram the TLR4 signaling pathway to produce a cytokine profile which eventually leads to neuroprotection against ischemia injury. MPL, unlike LPS, is safe and well tolerated in clinic, thus it could be considered as a new approach in prevention or even treatment of cerebral ischemic insult consequences.
机译:寻找神经保护策略来拯救患有急性脑损伤的患者是非常兴趣的。单磷虾脂质A(MPL)是脂多糖(LPS)的衍生物,其缺乏母体分子的许多内毒性,但具有相似的保护作用。在这里,我们报告了第一种证据表明MPL预处理,类似于LPS预处理,可以诱导对脑缺血的神经保护作用。 MPL(05,1,5μg/大鼠)单侧注射到雄性大鼠的左脑室内,48小时后,使用过染色体的调节版本对大鼠进行同侧选择性海马缺血。通过测量梗塞尺寸和评估认知功能来评估MPL和LPS的神经保护作用。还测量了涉及TLR4信号通路的一些炎症和抗炎细胞因子的表达水平。对照组对照组接受正常盐水脑室和选择性海马缺血的对照组是显而易见的,与假手术组相比,对照组进行了显而易见的。免疫学前提用于MPL或LPS显着降低了梗塞尺寸和改善的认知功能。另外,免疫检查导致炎症介质,NF-Kappa和TNF-α,下调但抗炎介质,IRF3,IFN-Beta和TGF-β,上调。我们的数据表明,MPL和LPS预处理可以重新编程TLR4信号通路以产生细胞因子型材,最终导致神经保护免受缺血损伤的神经保护型。 MPL与LPS不同,在诊所是安全和良好的耐受性,因此可以被认为是预防甚至治疗脑缺血性损害后果的新方法。

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