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首页> 外文期刊>Journal of molecular graphics & modelling >Adsorption of plasma proteins onto PEGylated single-walled carbon nanotubes: The effects of protein shape, PEG size and grafting density
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Adsorption of plasma proteins onto PEGylated single-walled carbon nanotubes: The effects of protein shape, PEG size and grafting density

机译:血浆蛋白的吸附在聚乙二醇化的单壁碳纳米管上:蛋白质形状,PEG尺寸和移植密度的影响

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Graphical abstract Display Omitted Highlights ? We performed MD simulations of proteins with PEGylated SWNTs. ? Protein-SWNT binding decreases in the mushroom region of PEG. ? Protein adsorption depends on protein shape and conformational transition of PEG. Abstract Single-walled carbon nanotubes (SWCNTs) covalently functionalized or noncovalently coated with polyethylene glycol (PEG) of different sizes (Mw =2000 and 5000) and grafting densities (5–16 PEGs per SWCNT) are simulated with human fibrinogen (HFG) and serum albumin (HSA). Proteins migrate toward the SWCNT, but their adsorption extents differ. The extent of the HFG-SWCNT binding decreases with increasing PEG size and grafting density because PEGs more completely cover SWCNTs and thus block hydrophobic interactions between HFGs and SWCNTs, which occurs on PEG-functionalized SWCNTs but not on PEG-coated ones. In particular, the HFG-SWCNT binding significantly decreases in the transition region of PEG conformation from mushroom to brush, where PEGs extend like brushes as described in the Alexander-de Gennes theory. While the HFG adsorption is modulated by PEG conformation, the HSA adsorption is much weaker and less influenced by PEG, because spherical HSAs can bind to the restricted area of the SWCNT and thus cannot bind to the SWCNT as tightly as do linear HFGs. These findings agree with experiments showing less adsorption of proteins on the SWCNT functionalized with larger and more PEGs, and support experimental suggestions regarding the dependence of protein adsorption on protein shape and the mushroom-brush transition of PEG conformation. ]]>
机译:<![cdata [ 图形抽象 显示省略 亮点 我们对Pegymated SWnts进行了MD模拟蛋白质。 蛋白-WNT bindin g减少了PEG的蘑菇区域。 蛋白质吸附取决于PEG的蛋白质形状和构象转变。 Abstract 单壁碳纳米管(Swcnts)共价官能化或非共价涂覆聚乙二醇(PEG)不同大小(M W = 2000和5000)和用人纤维蛋白原(HFG)和血清白蛋白(HSA)模拟接枝密度(每个SWCNT)。蛋白质朝向SWCNT迁移,但它们的吸附范围不同。 HFG-SWCNT结合的程度随着PEG尺寸和移植密度的增加而降低,因为PEG更完全覆盖SWCNT,因此阻止HFG和SWCNT之间的疏水相互作用,这发生在PEG官能化的SWCNT上,但不在PEG掺杂物上发生。特别地,HFG-SWCNT结合在从蘑菇到刷子的PEG构象的过渡区域中显着降低,其中PEG延伸如亚历山大 - 德国理论中所述的刷子。虽然通过PEG构象调节HFG吸附,但HSA吸附是较弱,并且受PEG的影响较小,因为球形HSA可以与SWCNT的限制区域结合,因此不能像线性HFG一样紧密地结合SWCNT。这些发现一致意见显示,实验表明,蛋白质官能团的蛋白质吸附较少,并支持关于蛋白质吸附对蛋白质形状的依赖性和PEG构象的蘑菇刷转变的实验建议。 ]]>

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