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Improving the transport of chemotherapeutic drugs across the blood-brain barrier

机译:改善化疗药物跨血脑屏障的运输

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The successful treatment of brain tumors or metastases in the brain is still hampered by the very efficient blood-brain barrier, which prevents the cerebral accumulation of a pharmacologically sufficient amount of a drug. Beside the possibility of disintegrating the functionality of this effective working barrier, a nanocarrier-mediated transport is presently an interesting and promising method to increase the drug concentration in the brain. Nanocarriers are small vesicles (<200 nm) and can be prepared by polymerization, resulting in nanoparticles, or by producing superficial lipid structures to incorporate the drug. In this context, liposomes are of importance owing to their ability to adapt their properties to the pharmacological requirements. In this article, we will give an overview of current possibilities of enhancing anticancer drug transport across the blood-brain barrier, based on its structure and functionality. Special consideration will be given to recent liposomal approaches that use active targeting for receptor-mediated transport across this physiological barrier.
机译:脑瘤或脑转移瘤的成功治疗仍受到非常有效的血脑屏障的阻碍,该屏障可防止药理学上足够量的药物在大脑中的积聚。除了可能破坏该有效工作屏障的功能之外,纳米载体介导的转运目前是增加脑中药物浓度的有趣且有前途的方法。纳米载体是小囊泡(<200 nm),可以通过聚合反应制得纳米颗粒,也可以通过产生表面脂质结构来掺入药物来制备。在这种情况下,脂质体因其使其性质适应药理学要求而具有重要意义。在本文中,我们将基于其结构和功能概述增强抗癌药物跨血脑屏障运输的当前可能性。将特别考虑使用主动靶向进行跨此生理屏障的受体介导转运的最近脂质体方法。

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