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Neuroprotective effects of a ketogenic diet in combination with exogenous ketone salts following acute spinal cord injury 被引量:1
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作者 Bo-Tao Tan Hui Jiang +5 位作者 Aaron JMoulson Xiao-Liang Wu Wen-Chun Wang Jie Liu Ward TPlunet wolfram tetzlaff 《Neural Regeneration Research》 SCIE CAS CSCD 2020年第10期1912-1919,共8页
We have previously shown that induction of ketosis by ketogenic diet(KD)conveyed neuroprotection following spinal cord injury in rodent models,however,clinical translation may be limited by the slow raise of ketone le... We have previously shown that induction of ketosis by ketogenic diet(KD)conveyed neuroprotection following spinal cord injury in rodent models,however,clinical translation may be limited by the slow raise of ketone levels when applying KD in the acute post-injury period.Thus we investigated the use of exogenous ketone supplementation(ketone sodium,KS)combined with ketogenic diet as a means rapidly inducing a metabolic state of ketosis following spinal cord injury in adult rats.In uninjured rats,ketone levels increased more rapidly than those in rats with KD alone and peaked at higher levels than we previously demonstrated for the KD in models of spinal cord injury.However,ketone levels in KD+KS treated rats with SCI did not exceed the previously observed levels in rats treated with KD alone.We still demonstrated neuroprotective effects of KD+KS treatment that extend our previous neuroprotective observations with KD only.The results showed increased neuronal and axonal sparing in the dorsal corticospinal tract.Also,better performance of forelimb motor abilities were observed on the Montoya staircase(for testing food pellets reaching)at 4 and 6 weeks post-injury and rearing in a cylinder(for testing forelimb usage)at 6 and 8 weeks post-injury.Taken together,the findings of this study add to the growing body of work demonstrating the potential benefits of inducing ketosis following neurotrauma.Ketone salt combined with a ketogenic diet gavage in rats with acute spinal cord injury can rapidly increase ketone body levels in the blood and promote motor function recovery.This study was approved by the Animal Care Committee of the University of British Columbia(protocol No.A14-350)on August 31,2015. 展开更多
关键词 AXON behavior corticospinal tract ketogenic diet ketone supplementation MYELIN neuroprotection spinal cord injury
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含有取向纳米纤维束的神经移植物构建与神经修复应用研究 被引量:2
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作者 尹桂波 Victor Leung +2 位作者 Frank.K.Ko wolfram tetzlaff 刘婕 《现代纺织技术》 北大核心 2017年第6期1-6,共6页
为提高纳米纤维神经移植物的接触引导,设计了一种含有取向纳米纤维束的"芯鞘"型神经移植物,它利用静电纺高取向纳米纤维膜,两次卷绕形成"芯"和"鞘",最后通过静电纺丝喷覆而成。利用扫描电镜观察并表征了... 为提高纳米纤维神经移植物的接触引导,设计了一种含有取向纳米纤维束的"芯鞘"型神经移植物,它利用静电纺高取向纳米纤维膜,两次卷绕形成"芯"和"鞘",最后通过静电纺丝喷覆而成。利用扫描电镜观察并表征了纤维及其移植物形态,测试了力学性能,将此移植物用于大鼠10mm坐骨神经缺损,术后两月通过体外刺激和组织学观察了修复效果。结果表明:通过调整静电纺收集转辊转速可获得高取向聚乳酸纳米纤维,纳米纤维膜工程应力和伸长率达到(49.32±14.83)MPa和17.71%±0.06%,利用该膜构建的神经移植物缝合强力达到(1.18±0.40)N/针,能支持与保护神经再生,移植两月后,大鼠能够感知热与外力刺激,组织学观察发现,有神经纤维和血旺细胞长入神经移植物,证明了该构建技术的可行性,并有可能为神经修复提供一种新的移植材料。 展开更多
关键词 聚乳酸 纳米纤维 静电纺丝 神经修复 生物性能
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