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用于癌症靶向和刺激响应药物递送的单分散、100纳米以下多孔二氧化硅纳米粒子的聚电解质复合物模板合成法

Polyelectrolyte complex templated synthesis of monodisperse, sub-100 nm porous silica nanoparticles for cancer targeted and stimuli-responsive drug delivery.

作者信息

Newham George, Mathew Ryan K, Wurdak Heiko, Evans Stephen D, Ong Zhan Yuin

机构信息

School of Physics and Astronomy, University of Leeds, Leeds LS2 9JT, UK.

Leeds Institute of Medical Research at St. James's, School of Medicine, University of Leeds, Leeds LS2 9JT, UK; Department of Neurosurgery, Leeds General Infirmary, Leeds Teaching Hospitals NHS Trust, UK.

出版信息

J Colloid Interface Sci. 2021 Feb 15;584:669-683. doi: 10.1016/j.jcis.2020.10.133. Epub 2020 Nov 3.

Abstract

Porous silica nanoparticles (PSiNPs) have long attracted interest in drug delivery research. However, conventional synthesis methods for sub-100 nm, functionalised PSiNPs typically give poor monodispersity, reproducibility, or involve complex synthetic protocols. We report a facile, reproducible, and cost-effective one-pot method for the synthesis of cancer targeting and pH responsive PSiNPs in this size range, without the need for post-synthetic modification. This was achieved by using monodisperse l-arginine (Arg)/ poly(acrylic acid) (PAA) polyelectrolyte complexes (PECs) as soft templates for silane hydrolysis and condensation. Highly uniform PSiNPs with tunable size control between 42 and 178 nm and disordered pore structure (1.1-2.7 nm) were obtained. Both PAA and Arg were retained within the PSiNPs, which enabled a high doxorubicin hydrochloride (Dox) loading capacity (22% w/w) and a 4-fold increase in drug release under weakly acidic pH compared to physiological pH. The surface presentation of Arg conferred significantly higher intracellular accumulation of Arg/PAA-PSiNPs in patient-derived glioblastoma cells compared to non-tumorigenic neural progenitor cells, which effectively translated to lower IC50 values for Dox-loaded Arg/PAA-PSiNPs than non-functionalised PSiNPs. This work brings forward new insights for the development of monodisperse PSiNPs with highly desirable built-in functionalities for biomedical applications.

摘要

多孔二氧化硅纳米颗粒(PSiNPs)长期以来一直吸引着药物递送研究领域的关注。然而,用于合成亚100纳米功能化PSiNPs的传统方法通常单分散性差、重现性不佳,或者涉及复杂的合成方案。我们报道了一种简便、可重现且经济高效的一锅法,用于合成该尺寸范围内的癌症靶向和pH响应性PSiNPs,无需合成后修饰。这是通过使用单分散的L-精氨酸(Arg)/聚丙烯酸(PAA)聚电解质复合物(PECs)作为硅烷水解和缩合的软模板来实现的。获得了尺寸高度均匀、大小在42至178纳米之间可调且具有无序孔结构(1.1 - 2.7纳米)的PSiNPs。PAA和Arg都保留在PSiNPs内部,这使得盐酸多柔比星(Dox)具有较高的负载能力(22% w/w),并且与生理pH相比,在弱酸性pH下药物释放增加了4倍。与非致瘤性神经祖细胞相比,Arg的表面呈现使Arg/PAA - PSiNPs在患者来源的胶质母细胞瘤细胞中细胞内积累显著更高,这有效地转化为载有Dox的Arg/PAA - PSiNPs的IC50值低于非功能化PSiNPs。这项工作为开发具有高度理想的内置功能以用于生物医学应用的单分散PSiNPs带来了新的见解。

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