首页> 外文期刊>Inflammation research: Official journal of the European Histamine Research Society >Bazedoxifene protects cerebral autoregulation after traumatic brain injury and attenuates impairments in blood-brain barrier damage: involvement of anti-inflammatory pathways by blocking MAPK signaling
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Bazedoxifene protects cerebral autoregulation after traumatic brain injury and attenuates impairments in blood-brain barrier damage: involvement of anti-inflammatory pathways by blocking MAPK signaling

机译:苯磺岛保护脑自身损伤后脑自身调节,并衰减血脑屏障损伤的损伤:通过阻止MAPK信号传导抗炎途径

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ObjectiveTraumatic brain injury (TBI) is a significant cause of death and long-term deficits in motor and cognitive functions for which there are currently no effective chemotherapeutic drugs. Bazedoxifene (BZA) is a third-generation selective estrogen receptor modulator (SERM) and has been investigated as a treatment for postmenopausal osteoporosis. It is generally safe and well tolerated, with favorable endometrial and breast safety profiles. Recent findings have shown that SERMs may have therapeutic benefits; however, the role of BZA in the treatment of TBI and its molecular and cellular mechanisms remain poorly understood. The aim of the present study was to examine the neuroprotective effects of BZA on early TBI in rats and to explore the underlying mechanisms of these effects.Materials and methodsTBI was induced using a modified weight-drop method. Neurological deficits were evaluated according to the neurological severity score (NSS). Morris water maze and open-field behavioral tests were used to test cognitive functions. Brain edema was measured by brain water content, and impairments in the blood-brain barrier (BBB) were evaluated by expression analysis of tight junction-associated proteins, such as occludin and zonula occludens-1 (ZO-1). Neuronal injury was assessed by hematoxylin and eosin (H&E) staining. LC-MS/MS analysis was performed to determine the ability of BZA to cross the BBB.ResultsOur results indicated that BZA attenuated the impaired cognitive functions and the increased BBB permeability of rats subjected to TBI through activation of inflammatory cascades. In vivo experiments further revealed that BZA provided this neuroprotection by suppressing TBI-induced activation of the MAPK/NF-B signaling pathway. Thus, mechanically, the anti-inflammatory effects of BZA in TBI may be partially mediated by blocking the MAPK signaling pathway.ConclusionsThese findings suggest that BZA might attenuate neurological deficits and BBB damage to protect against TBI by blocking the MAPK/NF-B signaling pathway.
机译:ObjectiveTraum脑损伤(TBI)是电动机和认知功能中死亡和长期缺陷的重要原因,目前没有有效的化学治疗药物。 Bazedoxifene(BZA)是第三代选择性雌激素受体调节剂(SERM),并已被研究作为绝经后骨质疏松症的治疗。它通常是安全和良好的耐受性,具有良好的子宫内膜和乳房安全谱。最近的发现表明,Serms可能具有治疗效益;然而,BZA在治疗TBI及其分子和细胞机制中的作用仍然明白很差。本研究的目的是检查BZA在大鼠早期TBI上的神经保护作用,并探讨这些作用的潜在机制。使用改性的重量滴法诱导的材料和方法。根据神经系统严重程度评分(NSS)评估神经系统缺陷。莫里斯水迷宫和开放式行为试验用于测试认知功能。通过脑含水量测量脑水肿,通过​​表达分析紧密结合相关蛋白,例如occludin和ZO-1)来评估血脑屏障(BBB)的损伤。通过苏木精和曙红(H&E)染色评估神经元损伤。进行LC-MS / MS分析以确定BZA越过BBB的能力。结果表明,BZA通过激活炎症级联激活TBI的大鼠的大鼠BBB渗透率增加的能力。在体内实验中进一步揭示了通过抑制TBI诱导的MAPK / NF-B信号通路的激活来提供这种神经保护。因此,机械地,BZA的在TBI的抗炎作用可部分地通过阻断MAPK信号pathway.ConclusionsThese发现介导的提示,BZA可能通过阻断MAPK / NF-B信号通路衰减神经功能缺损和BBB破坏,以防止TBI 。

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