Mhashal Anil R, Roy Sudip
Physical Chemistry Division, CSIR-National Chemical Laboratory, Pune 411008, India.
Chemistry Department, Bar Ilan University, Israel.
Chemphyschem. 2016 Nov 4;17(21):3504-3514. doi: 10.1002/cphc.201600690. Epub 2016 Oct 12.
Herein, we study the permeation free energy of bare and octane-thiol-capped gold nanoparticles (AuNPs) translocating through a lipid membrane. To investigate this, we have pulled the bare and capped AuNPs from bulk water to the membrane interior and estimated the free energy cost. The adsorption of the bare AuNP on the bilayer surface is energetically favorable but further loading inside it requires energy. However, the estimated free-energy barrier for loading the capped AuNP into the lipid membrane is much higher compared to bare AuNP. We also demonstrate the details of the permeation process of bare and capped AuNPs. Bare AuNP induces the curvature in the lipid membrane whereas capped AuNP creates an opening in the interacting monolayer and get inserted into the membrane. The insertion of capped AuNP induces a partial unzipping of the lipid bilayer, which results in the ordering of the local lipids interacting with the nanoparticle. However, bare AuNP disrupts the lipid membrane by pushing the lipid molecules inside the membrane. We also analyze pore formation due to the insertion of capped AuNP into the membrane, which results in water molecules penetrating the hydrophobic region.
在此,我们研究了裸金纳米颗粒(AuNPs)和辛烷硫醇包覆的金纳米颗粒穿过脂质膜的渗透自由能。为了对此进行研究,我们将裸金纳米颗粒和包覆的金纳米颗粒从大量水中拉至膜内部,并估算了自由能成本。裸金纳米颗粒在双层表面的吸附在能量上是有利的,但进一步加载到其中则需要能量。然而,与裸金纳米颗粒相比,将包覆的金纳米颗粒加载到脂质膜中的估计自由能垒要高得多。我们还展示了裸金纳米颗粒和包覆的金纳米颗粒渗透过程的细节。裸金纳米颗粒会在脂质膜中引起曲率,而包覆的金纳米颗粒会在相互作用的单层中形成一个开口并插入膜中。包覆的金纳米颗粒的插入会导致脂质双层部分解开,从而导致与纳米颗粒相互作用的局部脂质有序排列。然而,裸金纳米颗粒通过将脂质分子推向膜内部来破坏脂质膜。我们还分析了由于包覆的金纳米颗粒插入膜中而形成的孔,这导致水分子穿透疏水区域。