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首页> 外文期刊>Journal of neurosurgery. >Surface properties, more than size, limiting convective distribution of virus-sized particles and viruses in the central nervous system.
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Surface properties, more than size, limiting convective distribution of virus-sized particles and viruses in the central nervous system.

机译:表面性质超过大小,限制了病毒大小的颗粒和病毒在中枢神经系统中的对流分布。

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OBJECT: Achieving distribution of gene-carrying vectors is a major barrier to the clinical application of gene therapy. Because of the blood-brain barrier, the distribution of genetic vectors to the central nervous system (CNS) is even more challenging than delivery to other tissues. Direct intraparenchymal microinfusion, a minimally invasive technique, uses bulk flow (convection) to distribute suspensions of macromolecules widely through the extracellular space (convection-enhanced delivery [CED]). Although acute injection into solid tissue is often used for delivery of oligonucleotides, viruses, and liposomes, and there is preliminary evidence that certain of these large particles can spread through the interstitial space of the brain by the use of convection, the use of CED for distribution of viruses in the brain has not been systematically examined. That is the goal of this study. METHODS: Investigators used a rodent model to examine the influence of size, osmolarity of buffering solutions, and surface coating on the volumetric distribution of virus-sized nanoparticles and viruses (adeno-associated viruses and adenoviruses) in the gray matter of the brain. The results demonstrate that channels in the extracellular space of gray matter in the brain are large enough to accommodate virus-sized particles and that the surface characteristics are critical determinants for distribution of viruses in the brain by convection. CONCLUSIONS: These results indicate that convective distribution can be used to distribute therapeutic viral vectors in the CNS.
机译:目的:实现携带基因载体的分布是基因治疗临床应用的主要障碍。由于血脑屏障的原因,遗传载体向中枢神经系统(CNS)的分配比向其他组织的输送更具挑战性。直接实质内微输注是一种微创技术,它使用大流量(对流)在细胞外空间广泛分布大分子悬浮液(对流增强递送[CED])。尽管通常使用向实体组织中进行急性注射来递送寡核苷酸,病毒和脂质体,并且有初步证据表明这些大颗粒中的某些可以通过对流或CED的使用而扩散穿过大脑的间隙。大脑中病毒的分布尚未得到系统的检查。这是本研究的目标。方法:研究人员使用啮齿动物模型检查大小,缓冲溶液的渗透压和表面涂层对大脑灰质中病毒大小的纳米颗粒和病毒(腺相关病毒和腺病毒)的体积分布的影响。结果表明,大脑灰质细胞外空间中的通道足够大,足以容纳病毒大小的颗粒,并且表面特征是通过对流作用在大脑中分布病毒的关键决定因素。结论:这些结果表明对流分布可用于在CNS中分布治疗性病毒载体。

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