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Targeting strategies for improving the efficacy of nanomedicine in oncology

机译:提高纳米药物在肿瘤学中疗效的靶向策略

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摘要

The use of nanoparticles as drug carriers has provided a powerful weapon in the fight against cancer. These nanocarriers are able to transport drugs that exhibit very different nature such as lipophilic or hydrophilic drugs and big macromolecules as proteins or RNA. Moreover, the external surface of these carriers can be decorated with different moieties with high affinity for specific membrane receptors of the tumoral cells to direct their action specifically to the malignant cells. The selectivity improvement yielded by these nanocarriers provided a significative enhancement in the efficacy of the transported drug, while the apparition of side effects in the host was reduced. Additionally, it is possible to incorporate targeting moieties selective for organelles of the cell, which improves even more the effect of the transported agents. In the last years, more sophisticated strategies such as the use of switchable, hierarchical or double targeting strategies have been proposed for overcoming some of the limitations of conventional targeting strategies. In this review, recent advances in the development of targeted nanoparticles will be described with the aim to present the current state of the art of this technology and its huge potential in the oncological field.
机译:纳米粒子作为药物载体的使用为抗击癌症提供了强大的武器。这些纳米载体能够转运表现出非常不同性质的药物,例如亲脂性或亲水性药物以及大分子蛋白质或RNA。此外,这些载体的外表面可以用对肿瘤细胞的特定膜受体具有高亲和力的不同部分修饰,以将其作用特异性地引导至恶性细胞。这些纳米载体产生的选择性改善显着提高了所运输药物的功效,同时减少了宿主的副作用。另外,有可能掺入对细胞的细胞器有选择性的靶向部分,这甚至进一步改善了所输送试剂的作用。在过去的几年中,已经提出了更复杂的策略,例如使用可切换,分层或双重目标策略,以克服常规目标策略的某些局限性。在这篇综述中,将描述靶向纳米颗粒开发的最新进展,旨在介绍该技术的最新技术及其在肿瘤学领域的巨大潜力。

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