Nanopharmaceuticals: A Boon to the Brain-Targeted Drug Delivery

Mahira Zeeshan, Mahwash Mukhtar, Q. Ain, Salman Khan, H. Ali
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引用次数: 12

Abstract

Brain is well known for its multifarious nature and complicated diseases. Brain consists of natural barriers that pose difficulty for the therapeutic agents to reach the brain tissues. Blood-brain barrier is the major barrier while blood-brain tumor barrier, blood-cerebrospinal (CSF) barrier and efflux pump impart additional hindrance. Therapeutic goal is to achieve a considerable drug concentration in the brain tissues in order to obtain desired therapeutic outcomes. To overcome the barriers, nanotechnology was employed in the field of drug delivery and brain targeting. Nanopharmaceuticals are rapidly emerging sub-branch that deals with the drug-loaded nanocarriers or nanomaterials that have unique physicochemical properties and minute size range for penetrating the CNS. Additionally, nanopharmaceuticals can be tailored with functional modalities to achieve active targeting to the brain tissues. The magic behind their therapeutic success is the reduced amount of dose and lesser toxicity, whereby local-izing the therapeutic agent to the specific site. Different types of nanopharmaceuticals like polymeric, lipidic and amphiphilic nanocarriers were administered into the living organisms by exploiting different routes for improved targeted therapy. Therefore, it is essential to throw light on the properties, mechanism and delivery route of the major nanopharmaceuticals that are employed for the brain-specific drug delivery.
纳米药物:脑靶向药物输送的福音
大脑以其多样性和复杂的疾病而闻名。大脑由天然屏障组成,使治疗剂难以到达脑组织。血脑屏障是主要屏障,血脑肿瘤屏障、血脑脊液屏障和外排泵是辅助屏障。治疗目标是在脑组织中达到相当大的药物浓度,以获得理想的治疗效果。为了克服这些障碍,纳米技术被应用于药物传递和脑靶向领域。纳米药物是一门新兴的分支学科,研究具有独特的物理化学性质和穿透中枢神经系统的微小尺寸范围的载药纳米载体或纳米材料。此外,纳米药物可以根据功能模式进行定制,以实现对脑组织的主动靶向。它们治疗成功的神奇之处在于剂量的减少和毒性的降低,从而使治疗剂局部化到特定部位。不同类型的纳米药物,如聚合物、脂质和两亲性纳米载体,通过利用不同的途径进入生物体,以改善靶向治疗。因此,有必要阐明用于脑特异性药物递送的主要纳米药物的性质、机制和递送途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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