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纳米颗粒敏化光穿孔技术可用于靶向单细胞中的炎性小体激活研究。

Nanoparticle-sensitized photoporation enables inflammasome activation studies in targeted single cells.

作者信息

Harizaj Aranit, Van Hauwermeiren Filip, Stremersch Stephan, De Rycke Riet, De Keersmaecker Herlinde, Brans Toon, Fraire Juan C, Grauwen Karolien, De Smedt Stefaan C, Lentacker Ine, Lamkanfi Mohamed, Braeckmans Kevin

机构信息

Laboratory of General Biochemistry and Physical Pharmacy, Faculty of Pharmaceutical Science, Ghent University, 9000 Ghent, Belgium.

出版信息

Nanoscale. 2021 Apr 7;13(13):6592-6604. doi: 10.1039/d0nr05067a. Epub 2021 Mar 26.

Abstract

Inflammasomes are multi-protein complexes that guard against cellular stress and microbial infections. Inflammasome activation studies frequently require delivery of pathogen-derived virulence factors into the cytosol of macrophages and other innate immune cells. This is a challenging requirement since primary macrophages are difficult-to-transfect, especially when it comes to the intracellular delivery of proteins. Here, we report on the use of nanoparticle-sensitized photoporation as a promising upcoming intracellular delivery technology for delivering proteins of various molecular weights into the cytosol of primary macrophages. While 60-70 nm gold nanoparticles are the most commonly used sensitizing nanoparticles for photoporation, here we find that 0.5 μm iron oxide nanoparticles perform markedly better on primary macrophages. We demonstrate that LFn-FlaA or lipopolysaccharides can be delivered in primary macrophages resulting in activation of the NLRC4 or the non-canonical inflammasome, respectively. We furthermore show that photoporation can be used for targeted delivery of these toxins into selected cells, opening up the possibility to study the interaction between inflammasome activated cells and surrounding healthy cells. Taken together, these results show that nanoparticle-sensitized photoporation is very well suited to deliver pathogenic virulence factors in primary macrophages, thus constituting an effective new enabling technology for inflammasome activation studies.

摘要

炎性小体是一种多蛋白复合物,可抵御细胞应激和微生物感染。炎性小体激活研究通常需要将病原体衍生的毒力因子递送至巨噬细胞和其他先天免疫细胞的胞质溶胶中。这是一项具有挑战性的要求,因为原代巨噬细胞难以转染,尤其是在蛋白质的细胞内递送方面。在此,我们报道了使用纳米颗粒敏化光穿孔作为一种有前景的新兴细胞内递送技术,用于将各种分子量的蛋白质递送至原代巨噬细胞的胞质溶胶中。虽然60 - 70纳米的金纳米颗粒是光穿孔最常用的敏化纳米颗粒,但我们发现0.5微米的氧化铁纳米颗粒在原代巨噬细胞上的表现明显更好。我们证明,LFn - FlaA或脂多糖可以递送至原代巨噬细胞中,分别导致NLRC4或非经典炎性小体的激活。我们还表明,光穿孔可用于将这些毒素靶向递送至选定的细胞中,从而为研究炎性小体激活细胞与周围健康细胞之间的相互作用开辟了可能性。综上所述,这些结果表明纳米颗粒敏化光穿孔非常适合在原代巨噬细胞中递送致病性毒力因子,从而构成了一种用于炎性小体激活研究的有效的新使能技术。

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