Forschungszentrum Jülich GmbH, JCNS at Heinz Maier-Leibnitz Zentrum, Lichtenberstraße 1, 85747, Garching, Germany.
Forschungszentrum Jülich GmbH, JCNS at SNS-Oak Ridge National Laboratory (ORNL), 1 Bethel Valley Road, Oak Ridge, TN 37831, USA.
Sci Rep. 2017 Jun 30;7(1):4417. doi: 10.1038/s41598-017-04294-4.
Here we present an approach to measure dynamic membrane properties of phospholipid membranes close to an interface. As an example we show results of the membrane dynamics of a phospholipid membrane multilayer-stack on a solid substrate (silicon). On this sample we were able to measure local interaction and friction parameters using Grazing Incidence Neutron Spin Echo Spectroscopy (GINSES), where an evanescent neutron wave probes the fluctuations close to a rigid interface. With this method it is possible to access length scales in the nano to micrometer region as well as energies in the μeV range. Using a new neutron resonator structure we achieved the required intensity gain for this experiment. During our investigations we found an excitation mode of the phospholipid membrane that has not been reported previously and only became visible using the new methodology. We speculate that the energy transported by that undulation can also serve to distribute energy over a larger area of the membrane, stabilizing it. This new methodology has the capability to probe the viscoelastic effects of biological membranes, becoming a new tool for tribology on the nanoscale and has allowed the observation of the hitherto invisible property of phospholipid membranes using neutrons.
在这里,我们提出了一种测量接近界面的磷脂膜动态特性的方法。作为一个例子,我们展示了磷脂膜多层堆积在固体基底(硅)上的膜动力学的结果。在这个样品上,我们能够使用掠入射中子自旋回波谱(GINSES)测量局部相互作用和摩擦参数,其中一个消逝中子波探测接近刚性界面的涨落。使用这种方法,可以在纳米到微米的范围内以及微电子伏特的范围内获得能量。通过使用一种新的中子谐振器结构,我们为该实验获得了所需的强度增益。在我们的研究中,我们发现了一种以前没有报道过的磷脂膜的激发模式,只有使用新的方法才能看到这种模式。我们推测,这种波动所传递的能量也可以用来将能量分布在膜的更大区域,从而稳定它。这种新的方法能够探测生物膜的粘弹性效应,成为纳米尺度摩擦学的一种新工具,并允许使用中子观察到磷脂膜迄今为止看不见的性质。