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High performance collection of cerebrospinal fluid in rats: Evaluation of erythropoietin penetration after osmotic opening of the blood-brain barrier

机译:大鼠脑脊液的高性能采集:渗透性血脑屏障开放后促红细胞生成素的渗透评估

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An important issue to be considered when studying a new drug for treatment of central nervous system (CNS) diseases is its ability to cross the blood-brain barrier (BBB) and distribute throughout the brain. As cerebrospinal fluid (CSF) has demonstrated to be an invaluable reservoir to study CNS availability of therapeutic proteins, we have developed an improved method for CSF sampling from the cisterna magna of rats. The technique enables the simple and rapid collection of adequate quantities (50-75. μl) of blood-free CSF, rendering a high percentage of animal survival (99%) without clinic or neurological consequences. Its success in avoiding blood contamination of CSF lays in the use of a mixture of lidocaine/ephinephrine topically injected in the rat's suboccipital area and neck. Another relevant feature of the methodology is its low cost, since the puncture device can be easily assembled with cheap and available materials and, more importantly, neither expensive stereotaxic equipment nor frame is required. The present method is demonstrated by studying the CSF pharmacokinetics of recombinant human erythropoietin (rhEPO), a well-studied therapeutic candidate for neurological diseases. Moreover, we applied this technique to evaluate a strategy of osmotic disruption of the BBB to achieve a faster delivery of rhEPO into the CNS.
机译:在研究用于治疗中枢神经系统(CNS)疾病的新药时,要考虑的一个重要问题是其穿越血脑屏障(BBB)并分布于整个大脑的能力。由于脑脊液(CSF)已被证明是研究治疗性蛋白质的中枢神经系统可用性的宝贵资源,因此我们开发了一种改进的方法,用于从大鼠大水罐中采集脑脊液。该技术可以简单,快速地收集足够数量(50-75。μl)的无血CSF,从而使动物存活率很高(99%),而不会造成临床或神经系统的后果。它在避免CSF血液污染方面的成功在于使用局部注入大鼠枕下区域和颈部的利多卡因/肾上腺素的混合物。该方法的另一个相关特征是它的低成本,因为该穿刺装置可以容易地用廉价和可用的材料组装,并且更重要的是,不需要昂贵的立体定位设备或框架。通过研究重组人促红细胞生成素(rhEPO)的CSF药代动力学,可以证明本方法。此外,我们应用了该技术来评估BBB的渗透破坏策略,以实现将rhEPO更快地递送至CNS。

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