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Multifunctional to multistage delivery systems: The evolution of nanoparticles for biomedical applications

机译:多功能多级输送系统:生物医学应用纳米粒子的演变

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摘要

Nanomaterials are advancing in several directions with significant progress being achieved with respect to their synthesis, functionalization and biomedical application. In this review, we will describe several classes of prototypical nanocarriers, such as liposomes, silicon particles, and gold nanoshells, in terms of their individual function as well as their synergistic use. Active and passive targeting, photothermal ablation, and drug controlled release constitute some of the crucial functions identified to achieve a medical purpose. Current limitations in targeting, slow clearance, and systemic as well as local toxicity are addressed in reference to the recent studies that attempted to comprehend and solve these issues. The demand for a more sophisticated understanding of the impact of nanomaterialson the body and of their potential immune response underlies this discussion. Combined components are then discussed in the setting of multifunctional nanocarriers, a class of drug delivery systems we envisioned, proposed, and evolved in the last 5 years. In particular, our third generation of nanocarriers, the multistage vectors, usher in the new field of nanomedicine by combining several components onto multifunctional nanocarriers characterized by emerging properties and able to achieve synergistic effects.
机译:纳米材料正在向多个方向发展,在其合成,功能化和生物医学应用方面取得了重大进展。在这篇综述中,我们将根据其各自的功能及其协同用途来描述几类原型纳米载体,例如脂质体,硅颗粒和金纳米壳。主动和被动靶向,光热消融和药物控制释放构成了为实现医学目的而确定的一些关键功能。参照试图理解和解决这些问题的最新研究,解决了目前在靶向,缓慢清除以及全身以及局部毒性方面的局限性。对纳米材料对人体的影响及其潜在免疫反应的更深入了解的需求是这一讨论的基础。然后在多功能纳米载体的背景下讨论了组合的成分,多功能纳米载体是我们在最近五年中设想,提议和发展的一类药物递送系统。特别是,我们的第三代纳米载体多级载体通过将几种成分结合到具有新兴特性并能够实现协同效应的多功能纳米载体上,开创了纳米医学的新领域。

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