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Convection-enhanced delivery of nanocarriers for the treatment of brain tumors

机译:对流增强的纳米载体的递送用于治疗脑肿瘤

摘要

Primary brain tumors have a significant infiltrative capacity as their reappearance after resection usually occurs within 2cm of the tumor margin. Local delivery method such as Convection-Enhanced Delivery (CED) has been introduced to avoid this recurrence by delivering active molecules via positive-pressure methods. For an efficient infusion, the distribution volume of the drug has to be optimized while avoiding backflow, since this is responsible for side effects and a reduction of therapeutic efficacy. The encapsulation of the drug infused in nanosized structures can be considered, which would lead to a reduction of both toxicity of the treatment and infusion time during CED. In the present review, we will firstly discuss the technical approach of CED with regard to catheter design and brain characteristics; secondly, we will describe the u27idealu27 nanocarrier in terms of size, surface properties, and interaction with the extracellular matrix for optimal diffusion in the brain parenchyma. We also discuss preclinical and clinical applications of this new method.
机译:原发性脑肿瘤具有显着的浸润能力,因为切除后的复发通常发生在肿瘤边缘的2cm之内。已经引入诸如对流增强递送(CED)之类的局部递送方法,以通过正压方法递送活性分子来避免这种复发。为了有效输注,必须优化药物的分配体积,同时避免回流,因为这会引起副作用并降低治疗功效。可以考虑将药物封装在纳米结构中,这将导致CED期间治疗毒性和输注时间的减少。在本综述中,我们将首先讨论CED在导管设计和脑部特征方面的技术方法;其次,我们将根据尺寸,表面性质以及与细胞外基质的相互作用来描述 u27ideal u27纳米载体,以实现在脑实质中的最佳扩散。我们还将讨论这种新方法的临床前和临床应用。

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