首页> 外文会议>International Conference on Neuroprotective Agents: Clinical and Experimental Aspects >Cerebrolysin reduces blood-cerebrospinal fluid barrier permeability change, brain pathology, and functional deficits following traumatic brain injury in the rat
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Cerebrolysin reduces blood-cerebrospinal fluid barrier permeability change, brain pathology, and functional deficits following traumatic brain injury in the rat

机译:大脑蛋白在大鼠创伤性脑损伤后降低血液脑脊液屏障渗透性变化,脑病理和功能缺陷

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Traumatic brain injuries (TBIs) induce profound breakdown of the blood-brain and blood-cerebrospinal fluid barriers (BCSFB), brain pathology/edema, and sensory-motor disturbances. Because neurotrophic factors, such as brain-derived neurotrophic factor (BDNF), insulin-like growth factor-1 (IGF-1), and glial cell-derived neurotrophic factor (GDNF), are neuroprotective in models of brain and spinal cord injuries, we hypothesized that a combination of neurotrophic factors would enhance neuroprotective efficacy. In the present investigation, we examined the effects of Cerebrolysin, a mixture of different neurotrophic factors (Ebewe Neuro Pharma, Austria) on the brain pathology and functional outcome in a rat model of TBI. TBI was produced under Equithesin (3 mL/kg, i.p.) anesthesia by making a longitudinal incision into the right parietal cerebral cortex. Untreated inj ured rats developed profound disruption of the blood-brain barrier (BBB) to proteins, edema/cell injury, and marked sensory-motor dysfunctions on rota-rod and grid-walking tests at 5 h TBI. Intracerebroventricular administration of Cerebrolysin (10 or 30 μL) either 5 min or 1 h after TBI significantly reduced leakage of Evans blue and radioiodine tracers across the BBB and BCSFB, and attenuated brain edema formation/neuronal damage in the cortex as well as underlying subcortical regions. Cerebrolysin-treated animals also had improved sensory-motor functions. However, administration of Cerebrolysin 2 h after TBI did not affect these parameters significantly. These observations in TBI demonstrate that early intervention with Cerebrolysin reduces BBB and BCSFB permeability changes, attenuates brain pathology and brain edema, and mitigates functional deficits. Taken together, our observations suggest that Cerebrolysin has potential therapeutic value in TBI.
机译:创伤性脑损伤(TBIS)诱导血脑和血液脑脊液屏障(BCSFB),脑病理/水肿和感觉电动机干扰的深刻崩溃。因为神经营养因子,例如脑衍生的神经营养因子(BDNF),胰岛素样生长因子-1(IGF-1)和胶质细胞衍生的神经营养因子(GDNF)是脑和脊髓损伤模型中的神经保护,我们假设神经营养因子的组合会增强神经保护效果。在目前的调查中,我们研究了大脑蛋白,不同神经营养因子(EBEWE Neuro Pharma,奥地利)的混合物对TBI大鼠模型的大脑病理和功能结果的影响。通过将纵向切口置于正确的顶部脑皮质,在QUARHESIN(3ml / kg,i.p.)麻醉下产生TBI。未经治疗的Imj呼救的大鼠产生了深刻的破坏血脑屏障(BBB)对蛋白质,水肿/细胞损伤,并在5小时TBI的旋转杆和网格行走试验上标记的感觉电动机功能障碍。在TBI之后,TBI在BBB和BCSFB上显着降低了埃文斯蓝和放射性碘示踪剂的泄漏,并减弱了皮层的脑水肿形成/神经元损伤之后,脑内或1小时的脑内或1小时施用脑内或1小时,并在皮层中抑制皮层以及底层皮质区域。大脑蛋白处理的动物也有改善的感觉运动功能。然而,在TBI之后施用大脑蛋白2小时并未显着影响这些参数。在TBI中的这些观察结果表明,利用大脑蛋白的早期干预降低了BBB和BCSFB渗透性的变化,衰减脑病理和脑水肿,并减轻功能性缺陷。我们的观察结果表明,大脑蛋白在TBI中具有潜在的治疗价值。

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