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Impact of Protein Modification on the Protein Corona on Nanoparticles and Nanoparticle--Cell Interactions

机译:蛋白质修饰对蛋白质电晕在纳米颗粒和纳米颗粒-细胞相互作用中的影响

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Recent studies have firmly established that cellular uptake of nanoparticles is strongly affected by the presence and the physicochemical properties of a protein adsorption layer around these nanoparticles. Here, we have modified human serum albumin (HSA), a serum protein often used in model studies of protein adsorption onto nanoparticles, to alter its surface charge distribution and investigated the consequences for protein corona formation around small (radius ~5 nm), dihydrolipoic acid-coated quantum dots (DHLA-QDs) by using fluorescence correlation spectroscopy. HSA modified by succinic anhydride (HSAsuc) to generate additional carboxyl groups on the protein surface showed a 3-fold decreased binding affinity toward the nanoparticles. A 1000-fold enhanced affinity was observed for HSA modified by ethylenediamine (HSAam) to increase the number of amino functions on the protein surface. Remarkably, HSAsuc formed a much thicker protein adsorption layer (8.1 nm) than native HSA (3.3 nm), indicating that it binds in a distinctly different orientation on the nanoparticle, whereas the HSAam corona (4.6 nm) is only slightly thicker. Notably, protein binding to DHLA-QDs was found to be entirely reversible, independent of the modification. We have also measured the extent and kinetics of internalization of these nanoparticles without and with adsorbed native and modified HSA by HeLa cells. Pronounced variations were observed, indicating that even small physicochemical changes of the protein corona may affect biological responses.
机译:最近的研究已经坚定地确定,纳米颗粒的细胞摄取受到这些纳米颗粒周围蛋白质吸附层的存在和理化特性的强烈影响。在这里,我们修改了人类血清白蛋白(HSA),它是一种经常用于蛋白质吸附到纳米颗粒的模型研究中的血清蛋白,以改变其表面电荷分布,并研究了小(半径〜5 nm),二氢脂质体周围蛋白质电晕形成的后果。荧光相关光谱法检测酸涂层量子点(DHLA-QDs)。琥珀酸酐(HSAsuc)修饰的HSA在蛋白质表面产生额外的羧基,对纳米粒子的结合亲和力降低了3倍。观察到对乙二胺(HSAam)修饰的HSA的亲和力提高了1000倍,从而增加了蛋白质表面氨基功能的数量。值得注意的是,HSAsuc形成的蛋白质吸附层(8.1 nm)比天然HSA(3.3 nm)厚得多,这表明它在纳米粒子上的结合方向明显不同,而HSAam电晕(4.6 nm)仅稍厚。值得注意的是,发现与DHLA-QD结合的蛋白质是完全可逆的,与修饰无关。我们还测量了没有和有HeLa细胞吸附天然和修饰的HSA的纳米颗粒的内在化程度和动力学。观察到明显的变化,表明即使蛋白冠的很小的物理化学变化也可能影响生物学反应。

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