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Chapter 9 - Nanoparticles influence pathophysiology of spinal cord injury and repair.

机译:第9章-纳米颗粒影响脊髓损伤和修复的病理生理。

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Spinal cord injury (SCI) is a serious clinical problem for which no suitable therapeutic strategies have been worked out so far. Recent studies suggest that the SCI and its pathophysiological responses could be altered by systemic exposure to nanoparticles. Thus, SCI when made in animals intoxicated with engineered nanoparticles from metals or silica dust worsened the outcome. On the other hand, drugs tagged with titanium (TiO(2)) nanoparticles or encapsulated in liposomes could enhance their neuroprotective efficacy following SCI. Thus, to expand our knowledge on nanoparticle-induced alterations in the spinal cord pathophysiology further research is needed. These investigations will help to develop new strategies to achieve neuroprotection in SCI, for example, using nanodrug delivery. New results from our laboratory showed that nanoparticle-induced exacerbation of cord pathology following trauma can be reduced when the suitable drugs tagged with TiO(2) nanowires were administered into the spinal cord as compared to those drugs given alone. This indicates that nanoparticles depending on the exposure and its usage could induce both neurotoxicity and neuroprotection. This review discusses the potential adverse or therapeutic utilities of nanoparticles in SCI largely based on our own investigations. In addition, possible mechanisms of nanoparticle-induced exacerbation of cord pathology or enhanced neuroprotection following nanodrug delivery is described in light of recently available data in this rapidly emerging field of nanoneurosciences.
机译:脊髓损伤(SCI)是一个严重的临床问题,迄今为止尚未找到合适的治疗策略。最近的研究表明,全身性暴露于纳米颗粒可以改变SCI及其病理生理反应。因此,当在动物体内制成的SCI会被金属或二氧化硅粉尘中的工程化纳米粒子陶醉时,会使结果恶化。另一方面,标有钛(TiO(2))纳米粒子或封装在脂质体中的药物可增强SCI后的神经保护功效。因此,为了扩大我们对纳米颗粒引起的脊髓病理生理学改变的认识,需要进一步的研究。这些研究将有助于开发新的策略来实现SCI中的神经保护,例如,使用纳米药物递送。我们实验室的新结果表明,与单独给药的那些药物相比,当将合适的用TiO(2)纳米线标记的药物施用于脊髓时,可以减少纳米颗粒引起的脊髓病理损伤加重。这表明纳米颗粒取决于暴露及其用途可以诱导神经毒性和神经保护作用。这篇综述主要基于我们自己的研究来讨论纳米颗粒在SCI中的潜在不良作用或治疗用途。另外,根据纳米神经科学这个迅速兴起的领域中最近可获得的数据,描述了纳米颗粒递送后纳米颗粒诱导的脊髓病理恶化或增强的神经保护的可能机制。

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