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聚合物键合糖基化金纳米粒子将唾液酸化糖蛋白募集到其蛋白质冠层中,导致非靶向凝集素结合。

Polymer-tethered glycosylated gold nanoparticles recruit sialylated glycoproteins into their protein corona, leading to off-target lectin binding.

机构信息

Department of Chemistry, University of Warwick, Gibbet Hill Road, CV4 7AL, Coventry, UK.

Division of Biomedical Sciences, Warwick Medical School, University of Warwick, Gibbet Hill Road, CV4 7AL, Coventry, UK.

出版信息

Nanoscale. 2022 Sep 22;14(36):13261-13273. doi: 10.1039/d2nr01818g.

Abstract

Upon exposure to biological fluids, the fouling of nanomaterial surfaces results in non-specific capture of proteins, which is particularly important when in contact with blood for and applications. It is crucial to evaluate not just the protein components but also the glycans attached to those proteins. Polymer-tethered glycosylated gold nanoparticles have shown promise for use in biosensing/diagnostics, but the impact of the glycoprotein corona has not been established. Here we investigate how polymer-tethered glycosylated gold nanoparticles interact with serum proteins and demonstrate that the protein corona introduces new glycans and hence off-specific targeting capability. Using a panel of RAFT-derived polymers grafted to the gold surface, we show that the extent of corona formation is not dependent on the type of polymer. In lectin-binding assays, a glycan (galactose) installed on the chain-end of the polymer was available for binding even after protein corona formation. However, using sialic-acid binding lectins, it was found that there was significant off-target binding due to the large density of sialic acids introduced in the corona, confirmed by western blotting. To demonstrate the importance, we show that the nanoparticles can bind Siglec-2, an immune-relevant lectin post-corona formation. Pre-coating with (non-glycosylated) bovine serum albumin led to a significant reduction in the total glycoprotein corona. However, sufficient sialic acids were still present in the residual corona to lead to off-target binding. These results demonstrate the importance of the glycans when considering the protein corona and how 'retention of the desired function' does not rule out 'installation of undesired function' when considering the performance of glyco-nanomaterials.

摘要

当纳米材料表面接触到生物体液时,会发生蛋白质的非特异性捕获,这在与血液接触的 和 应用中尤为重要。不仅要评估蛋白质成分,还要评估附着在这些蛋白质上的糖链。聚合物键合糖基化金纳米粒子在生物传感/诊断中有很好的应用前景,但糖蛋白冠的影响尚未确定。在这里,我们研究了聚合物键合糖基化金纳米粒子与血清蛋白的相互作用,并证明蛋白质冠会引入新的糖链,从而产生非特异性靶向能力。我们使用一系列接枝在金表面的 RAFT 衍生聚合物进行研究,表明冠形成的程度与聚合物的类型无关。在凝集素结合实验中,即使在形成蛋白质冠后,聚合物链末端接枝的糖基(半乳糖)仍可用于结合。然而,使用唾液酸结合凝集素发现,由于冠中引入了大量的唾液酸,会导致明显的非特异性结合,这一结果通过 Western 印迹得到了证实。为了证明其重要性,我们展示了纳米粒子可以与 Siglec-2 结合,Siglec-2 是一种免疫相关的凝集素,在形成蛋白质冠后。预先用(非糖基化)牛血清白蛋白包被会导致总糖蛋白冠显著减少。然而,在残留的冠中仍然存在足够的唾液酸,导致非特异性结合。这些结果表明,在考虑糖蛋白冠时,糖链很重要,并且当考虑糖基纳米材料的性能时,“保留所需功能”并不排除“安装不需要的功能”。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bc33/9494357/98f359bb6a07/d2nr01818g-f1.jpg

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