A synthetic peptide with antisecretory activity, antisecretory factor (AF)-16, improves injury-related deficits in water and ion transport and decreases intracranial pressure after experimental cold lesion injury and encephalitis although its role in traumatic brain injury (TBI) is unknown. AF-16 or an inactive reference peptide was administrated intranasally 30âmin following midline fluid percussion injury (mFPI; nâ=â52), a model of diffuse mild-moderate TBI in rats. Sham-injured (nâ=â14) or naïve (nâ=â24) animals were used as controls. The rats survived for either 48âh or 15âdays post-injury. At 48âh, the animals were tested in the Morris water maze (MWM) for memory function and their brains analyzed for cerebral edema. Here, mFPI-induced brain edema compared to sham or naïve controls that was significantly reduced by AF-16 treatment (pâ<â0.05) although MWM performance was not altered. In the 15-day survival groups, the MWM learning and memory abilities as well as histological changes were analyzed. AF-16-treated brain-injured animals shortened both MWM latency and swim path in the learning trials (pâ<â0.05) and improved probe trial performance compared to brain-injured controls treated with the inactive reference peptide. A modest decrease by AF-16 on TBI-induced changes in hippocampal glial acidic fibrillary protein (GFAP) staining (pâ=â0.11) was observed. AF-16 treatment did not alter any other immunohistochemical analyses (degenerating neurons, beta-amyloid precursor protein (β-APP), and Olig2). In conclusion, intranasal AF-16-attenuated brain edema and enhanced visuospatial learning and memory following diffuse TBI in the rat. Intranasal administration early post-injury of a promising neuroprotective substance offers a novel treatment approach for TBI.
Intranasal Administration of the Antisecretory Peptide AF-16 Reduces Edema and Improves Cognitive Function Following Diffuse Traumatic Brain Injury in the Rat.
鼻内给药抗分泌肽 AF-16 可减轻大鼠弥漫性创伤性脑损伤后的水肿并改善认知功能
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作者:Clausen Fredrik, Hansson Hans-Arne, Raud Johan, Marklund Niklas
| 期刊: | Frontiers in Neurology | 影响因子: | 2.800 |
| 时间: | 2017 | 起止号: | 2017 Feb 14; 8:39 |
| doi: | 10.3389/fneur.2017.00039 | 研究方向: | 毒理研究 |
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