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Developmental traumatic brain injury decreased brain derived neurotrophic factor expression late after injury

机译:发育创伤性脑损伤在损伤后晚些时候脑衍生的神经营养因子表达减少

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摘要

Pediatric traumatic brain injury (TBI) is a major cause of acquired cognitive dysfunction in children. Hippocampal Brain Derived Neurotrophic Factor (BDNF) is important for normal cognition. Little is known about the effects of TBI on BDNF levels in the developing hippocampus. We used controlled cortical impact (CCI) in the 17 day old rat pup to test the hypothesis that CCI would first increase rat hippocampal BDNF mRNA/protein levels relative to SHAM and Naïve rats by post injury day (PID) 2 and then decrease BDNF mRNA/protein by PID14. Relative to SHAM, CCI did not change BDNF mRNA/protein levels in the injured hippocampus in the first 2 days after injury but did decrease BDNF protein at PID14. Surprisingly, BDNF mRNA decreased at PID 1, 3, 7 and 14, and BDNF protein decreased at PID 2, in SHAM and CCI hippocampi relative to Naïve. In conclusion, TBI decreased BDNF protein in the injured rat pup hippocampus 14 days after injury. BDNF mRNA levels decreased in both CCI and SHAM hippocampi relative to Naïve, suggesting that certain aspects of the experimental paradigm (such as craniotomy, anesthesia, and/or maternal separation) may decrease the expression of BDNF in the developing hippocampus. While BDNF is important for normal cognition, no inferences can be made regarding the cognitive impact of any of these factors. Such findings, however, suggest that meticulous attention to the experimental paradigm, and possible inclusion of a Naïve group, is warranted in studies of BDNF expression in the developing brain after TBI.
机译:儿科创伤性脑损伤(TBI)是获得儿童认知功能障碍的主要原因。海马脑衍生的神经营养因子(BDNF)对于正常认知是重要的。关于TBI对发育海马的BDNF水平的影响很少。我们在17天的老鼠小狗中使用了受控皮质冲击(CCI)来测试CCI首先通过后损伤后(PID)2,CCI将相对于假和幼稚大鼠增加大鼠海马BDNF mRNA /蛋白水平,然后减少BDNF mRNA PID14的/蛋白质。相对于假,CCI在损伤后的前2天内没有在受伤海马中改变BDNF mRNA /蛋白水平,但在PID14下会降低BDNF蛋白。令人惊讶的是,PID 1,3,7和14的BDNF mRNA降低,BDNF蛋白在PID 2中减少,在假和CCI海马相对于幼稚。总之,TBI在损伤后14天14天减少了受损大鼠幼虫海马的BDNF蛋白。 CCI和假海马的BDNF mRNA水平相对于Naïve,表明实验范例(例如Craniotomy,麻醉和/或母体分离)的某些方面可能会降低BDNF在发育中的海马中的表达。虽然BDNF对于正常认知很重要,但不能对任何这些因素的认知影响没有推断。然而,这种发现表明,对实验范式的细致关注以及可能包含幼稚组的可能包含在TBI后发育脑中的BDNF表达的研究。

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