首页> 外文期刊>Journal of neural transmission >Early microvascular reactions and blood-spinal cord barrier disruption are instrumental in pathophysiology of spinal cord injury and repair: novel therapeutic strategies including nanowired drug delivery to enhance neuroprotection.
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Early microvascular reactions and blood-spinal cord barrier disruption are instrumental in pathophysiology of spinal cord injury and repair: novel therapeutic strategies including nanowired drug delivery to enhance neuroprotection.

机译:早期的微血管反应和血脊髓屏障的破坏在脊髓损伤和修复的病理生理学中起着重要作用:新的治疗策略包括纳米线药物递送,以增强神经保护作用。

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摘要

Spinal cord injury (SCI) is a devastating disease that leads to permanent disability of victims for which no suitable therapeutic intervention has been achieved so far. Thus, exploration of novel therapeutic agents and nano-drug delivery to enhance neuroprotection after SCI is the need of the hour. Previous research on SCI is largely focused to improve neurological manifestations of the disease while ignoring spinal cord pathological changes. Recent studies from our laboratory have shown that pathological recovery of SCI appears to be well correlated with the improvement of sensory motor functions. Thus, efforts should be made to reduce or minimize spinal cord cell pathology to achieve functional and cellular recovery to enhance the quality of lives of the victims. While treating spinal cord disease, recovery of both neuronal and non-neuronal cells, e.g., endothelia and glial cells are also necessary to maintain a healthy spinal cord function after trauma. This review focuses effects of novel therapeutic strategies on the role of spinal cord microvascular reactions and endothelia cell functions, i.e., blood-spinal cord barrier (BSCB) in SCI and repair mechanisms. Thus, new therapeutic approach to minimize spinal cord pathology after trauma using antibodies to various neurotransmitters and/or drug delivery to the cord directly by topical application to maintain strong localized effects on the injured cells are discussed. In addition, the use of nanowired drugs to affect remote areas of the cord after their application on the injured spinal cord in thwarting the injury process rapidly and to enhance the neuroprotective effects of the parent compounds are also described in the light of current knowledge and our own investigations. It appears that local treatment with new therapeutic agents and nanowired drugs after SCI are needed to enhance neurorepair leading to improved spinal cord cellular functions and the sensory motor performances.
机译:脊髓损伤(SCI)是一种破坏性疾病,导致受害者永久性残疾,迄今为止,尚未对其进行适当的治疗干预。因此,探索新型治疗药物和纳米药物递送以增强SCI后的神经保护是一个小时的需要。先前对SCI的研究主要集中在改善疾病的神经学表现,而忽略脊髓病理变化。我们实验室的最新研究表明,SCI的病理恢复似乎与感觉运动功能的改善密切相关。因此,应努力减少或最小化脊髓细胞病理学,以实现功能和细胞恢复,以提高受害者的生活质量。在治疗脊髓疾病时,神经元和非神经元细胞例如内皮细胞和神经胶质细胞的恢复对于维持创伤后健康的脊髓功能也是必需的。本文综述了新型治疗策略对脊髓微血管反应和内皮细胞功能(即SCI中的血脊髓屏障(BSCB)和修复机制)的作用。因此,讨论了一种新的治疗方法,该方法通过使用各种神经递质的抗体和/或直接通过局部应用将药物直接递送至脐带以保持对受损细胞的强烈局部作用来使创伤后的脊髓病理学最小化。此外,根据目前的知识和我们的研究,还描述了使用纳米线药物在损伤脊髓上应用后影响脊髓远端区域以快速阻止损伤过程并增强母体化合物的神经保护作用。自己调查。看来在SCI之后需要用新的治疗剂和纳米线药物进行局部治疗以增强神经修复,从而改善脊髓的细胞功能和感觉运动性能。

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