Treuel Lennart, Docter Dominic, Maskos Michael, Stauber Roland H
Fraunhofer ICT-IMM, Carl-Zeiss-Str. 18-20, 55219 Mainz, Germany ; Physical Chemistry, University of Duisburg-Essen, Universitaetsstr. 5-7, 45117 Essen, Germany.
Molecular and Cellular Oncology/Mainz Screening Center (MSC), University Hospital of Mainz, Langenbeckstrasse 1, 55101 Mainz, Germany.
Beilstein J Nanotechnol. 2015 Mar 30;6:857-73. doi: 10.3762/bjnano.6.88. eCollection 2015.
In biological environments, nanoparticles are enshrouded by a layer of biomolecules, predominantly proteins, mediating its subsequent interactions with cells. Detecting this protein corona, understanding its formation with regards to nanoparticle (NP) and protein properties, and elucidating its biological implications were central aims of bio-related nano-research throughout the past years. Here, we discuss the mechanistic parameters that are involved in the protein corona formation and the consequences of this corona formation for both, the particle, and the protein. We review consequences of corona formation for colloidal stability and discuss the role of functional groups and NP surface functionalities in shaping NP-protein interactions. We also elaborate the recent advances demonstrating the strong involvement of Coulomb-type interactions between NPs and charged patches on the protein surface. Moreover, we discuss novel aspects related to the complexity of the protein corona forming under physiological conditions in full serum. Specifically, we address the relation between particle size and corona composition and the latest findings that help to shed light on temporal evolution of the full serum corona for the first time. Finally, we discuss the most recent advances regarding the molecular-scale mechanistic role of the protein corona in cellular uptake of NPs.
在生物环境中,纳米颗粒被一层生物分子所包裹,其中主要是蛋白质,这些蛋白质介导纳米颗粒随后与细胞的相互作用。检测这种蛋白质冠层,了解其与纳米颗粒(NP)和蛋白质性质相关的形成过程,并阐明其生物学意义,是过去几年生物相关纳米研究的核心目标。在此,我们讨论了蛋白质冠层形成过程中涉及的机制参数,以及这种冠层形成对颗粒和蛋白质的影响。我们回顾了冠层形成对胶体稳定性的影响,并讨论了官能团和NP表面功能在塑造NP-蛋白质相互作用中的作用。我们还阐述了最近的进展,这些进展表明NP与蛋白质表面带电斑块之间的库仑型相互作用起到了重要作用。此外,我们讨论了在全血清生理条件下形成的蛋白质冠层复杂性的新方面。具体而言,我们探讨了颗粒大小与冠层组成之间的关系,以及首次有助于揭示全血清冠层时间演变的最新发现。最后,我们讨论了蛋白质冠层在NP细胞摄取中的分子尺度机制作用的最新进展。