首页> 外文期刊>Experimental Neurology >Effect of spinal cord injury on the permeability of the blood-brain and blood-spinal cord barriers to the neurotropin PACAP.
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Effect of spinal cord injury on the permeability of the blood-brain and blood-spinal cord barriers to the neurotropin PACAP.

机译:脊髓损伤对神经营养蛋白PACAP的血脑和脊髓屏障渗透性的影响。

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摘要

Pituitary adenylate cyclase-activating polypeptide (PACAP) has been shown to be a potent neurotropin. Because PACAP crosses the blood-brain barrier (BBB) by peptide transport system (PTS)-6, it can exert its neurotropic effects even when given peripherally. Recent studies have shown that the activity of BBB transporters of peptides and regulatory proteins can be affected by pathophysiological events, including spinal cord injury. We, therefore, determined whether PTS-6 is affected by spinal cord injury. We found that radioactively iodinated PACAP was taken up by brain and by all regions of the spinal cord. PTS-6 activity was demonstrable in the brain and the cervical and thoracic regions of the spinal cord. Spinal cord transection had widespread and long-lasting effects throughout the CNS on PTS-6 activity. The most dramatic effect was an anatomically descending decrease of PTS-6 activity that began in the brain immediately after injury. Later, beginning on day 7 after injury, PTS-6 activity was increased throughout the CNS. These effects on PTS-6 were unrelated to the negligible disruption of barrier function by the injury. We conclude that spinal cord injury results in responses that are regionally and temporally unique to PTS-6 and could affect the delivery of blood-borne PACAP to the CNS. Copyright 1998 Academic Press.
机译:垂体腺苷酸环化酶激活多肽(PACAP)已被证明是一种有效的神经营养蛋白。因为PACAP通过肽转运系统(PTS)-6穿过血脑屏障(BBB),所以即使在外围给予PACAP也可以发挥其神经营养作用。最近的研究表明,肽和调节蛋白的BBB转运蛋白的活性会受到包括脊髓损伤在内的病理生理事件的影响。因此,我们确定PTS-6是否受到脊髓损伤的影响。我们发现放射性碘化的PACAP被大脑和脊髓的所有区域吸收。在脑以及脊髓的颈和胸区域可证实PTS-6的活性。脊髓横断对中枢神经系统对PTS-6活性具有广泛而持久的影响。最显着的作用是在受伤后立即从大脑开始的解剖学上PTS-6活性下降。随后,从受伤后第7天开始,整个CNS的PTS-6活性均增加。这些对PTS-6的作用与损伤对屏障功能的可忽略的破坏无关。我们得出结论,脊髓损伤导致的反应在区域和时间上是PTS-6特有的,并且可能影响血源性PACAP向中枢神经系统的传递。版权所有1998学术出版社。

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