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基于介孔硅纳米粒子的多功能靶向药物传递系统:机遇与挑战。

Towards multifunctional, targeted drug delivery systems using mesoporous silica nanoparticles--opportunities & challenges.

机构信息

Department of Physical Chemistry, Åbo Akademi University, Center for Functional Materials, Porthansgatan 3-5, FI-20500 Turku, Finland.

出版信息

Nanoscale. 2010 Oct;2(10):1870-83. doi: 10.1039/c0nr00156b. Epub 2010 Aug 23.

Abstract

One of the big challenges of medicine today is to deliver drugs specifically to defected cells. Nanoparticulate drug carriers have the potential to answer to this call, as nanoparticles can cross physiological barriers and access different tissues, and also be provided in a targetable form aimed at enhancing cell specificity of the carrier. Recent developments within material science and strong collaborative efforts crossing disciplinary borders have highlighted the potential of mesoporous silica nanoparticles (MSNs) for such targeted drug delivery. Here we outline recent advances which in this sense push MSNs to the forefront of drug delivery development. Relatively straightforward inside-out tuning of the vehicles, high flexibility, and potential for sophisticated release mechanisms make these nanostructures promising candidates for targeted drug delivery such as 'smart' cancer therapies. Moreover, due to the large surface area and the controllable surface functionality of MSNs, they can be controllably loaded with large amounts of drugs and coupled to homing molecules to facilitate active targeting, simultaneously carrying traceable (fluorescent or magnetically active) modalities, also making them highly interesting as theragnostic agents. However, the increased relative surface area and small size, and flexible surface functionalization which is beneficially exploited in nanomedicine, consequently also includes potential risks in their interactions with biological systems. Therefore, we also discuss some safety issues regarding MSNs and highlight how different features of the drug delivery platform influence their behaviour in a biological setting. Addressing these burning questions will facilitate the application of MSNs in nanomedicine.

摘要

当今医学的一大挑战是将药物专门递送到病变细胞。纳米颗粒药物载体有可能满足这一需求,因为纳米颗粒可以穿越生理屏障并进入不同的组织,并且还可以以靶向形式提供,旨在增强载体对细胞的特异性。材料科学的最新进展以及跨越学科边界的强大合作努力突出了介孔硅纳米颗粒(MSNs)在这种靶向药物输送中的潜力。在这里,我们概述了最近的进展,这些进展在某种意义上将 MSNs 推向了药物输送发展的前沿。相对简单的内外调整载体、高灵活性和潜在的复杂释放机制使这些纳米结构成为靶向药物输送的有前途的候选物,例如“智能”癌症治疗。此外,由于 MSNs 的大表面积和可控制的表面功能,它们可以可控地装载大量药物,并与归巢分子结合以促进主动靶向,同时携带可追踪的(荧光或磁性)模式,也使它们作为治疗和诊断剂非常有吸引力。然而,相对表面积增加、尺寸小、表面功能化灵活,这些在纳米医学中得到了有益的利用,但也包括它们与生物系统相互作用的潜在风险。因此,我们还讨论了一些关于 MSNs 的安全问题,并强调了药物输送平台的不同特征如何影响它们在生物环境中的行为。解决这些紧迫问题将有助于 MSNs 在纳米医学中的应用。

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