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首页> 外文期刊>Journal of Colloid and Interface Science >Synthetic and biological identities of polymeric nanoparticles influencing the cellular delivery: An immunological link
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Synthetic and biological identities of polymeric nanoparticles influencing the cellular delivery: An immunological link

机译:聚合物纳米粒子的合成和生物学性质影响细胞递送:免疫基

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摘要

Enhanced understanding of bio-nano interaction requires recognition of hidden factors such as protein corona, a layer of adsorbed protein around nano-systems. This study compares the biological identity and fingerprint profile of adsorbed proteins on PLGA-based nanoparticles through nano-liquid chromatography-tandem mass spectrometry. The total proteins identified in the corona of nanoparticles (NPs) with different in size, charge and compositions were classified based on molecular mass, isoelectric point and protein function. A higher abundance of complement proteins was observed in modified NPs with an increased size, while NPs with a positive surface charge exhibited the minimum adsorption for immunoglobulin proteins. A correlation of dysopsonin/opsonin ratio was found with cellular uptake of NPs exposed to two positive and negative Fc receptor cell lines. Although the higher abundance of dysopsonins such as apolipoproteins may cover the active sites of opsonins causing a lower uptake, the correlation of adsorbed dysopsonin/opsonin proteins on the NPs surface has an opposite trend with the intensity of cell uptake. Despite the reduced uptake of corona-coated NPs in comparison with pristine NPs, the dysopsonin/opsonin ratio controlled by the physicochemistry properties of NPs could potentially be used to tune up the cellular delivery of polymeric NPs. (C) 2019 Elsevier Inc. All rights reserved.
机译:增强了对生物纳米相互作用的理解需要识别蛋白质电晕等隐藏因子,纳米系统周围的吸附蛋白层。该研究将吸附蛋白质在基于PLGA的纳米颗粒上通过纳米液相色谱 - 串联质谱法进行比较。基于分子量,电荷和组合物的纳米颗粒(NPS)中鉴定的蛋白质的总蛋白质基于分子量,等电点和蛋白质功能来分类。在改性NPS中观察到较高丰富的补体蛋白,其尺寸增加,而具有正表面电荷的NPS表现出免疫球蛋白蛋白的最小吸附。发现脱蛋白素/ opsonin比的相关性与接触两种阳性和阴性Fc受体细胞系的NPS细胞摄取。尽管诸如载脂蛋白的脱糖蛋白等较高丰富的脱胆糖蛋白的活性位点导致降低摄取,但是吸附的困难/ Opsonin蛋白在NPS表面上的相关性具有相反的趋势,具有细胞摄取的强度。尽管电晕涂覆NP的比较减小的摄取与原始的NP,所述dysopsonin /调理素比由NP的物理化学性质来控制可能被用于调补聚合物NP的细胞递送。 (c)2019 Elsevier Inc.保留所有权利。

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