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研究囊泡大小如何影响囊泡在二氧化钛上的吸附:空间堆积与形状变形之间的竞争。

Investigating how vesicle size influences vesicle adsorption on titanium oxide: a competition between steric packing and shape deformation.

作者信息

Ferhan Abdul Rahim, Jackman Joshua A, Cho Nam-Joon

机构信息

School of Materials Science and Engineering, Nanyang Technological University, 50 Nanyang Avenue 639798, Singapore.

出版信息

Phys Chem Chem Phys. 2017 Jan 18;19(3):2131-2139. doi: 10.1039/c6cp07930j.

Abstract

Understanding the adsorption behavior of lipid vesicles at solid-liquid interfaces is important for obtaining fundamental insights into soft matter adsorbates as well as for practical applications such as supported lipid bilayer (SLB) fabrication. While the process of SLB formation has been highly scrutinized, less understood are the details of vesicle adsorption without rupture, especially at high surface coverages. Herein, we tackle this problem by employing simultaneous quartz crystal microbalance-dissipation (QCM-D) and localized surface plasmon resonance (LSPR) measurements in order to investigate the effect of vesicle size (84-211 nm diameter) on vesicle adsorption onto a titanium oxide surface. Owing to fundamental differences in the measurement principles of the two techniques as well as a mismatch in probing volumes, it was possible to determine both the lipid mass adsorbed near the sensor surface as well as the total mass of adsorbed lipid and hydrodynamically coupled solvent in the adsorbed vesicle layer as a whole. With increasing vesicle size, the QCM-D frequency signal exhibited monotonic behavior reaching an asymptotic value, whereas the QCM-D energy dissipation signal continued to increase according to the vesicle size. In marked contrast, the LSPR-tracked lipid mass near the sensor surface followed a parabolic trend, with the greatest corresponding measurement response occurring for intermediate-size vesicles. The findings reveal that the maximum extent of adsorbed vesicles contacting a solid surface occurs at an intermediate vesicle size due to the competing influences of vesicle deformation and steric packing. Looking forward, such information can be applied to control the molecular self-assembly of phospholipid assemblies as well as provide the basis for investigating deformable, soft matter adsorbates.

摘要

了解脂质囊泡在固液界面的吸附行为,对于深入理解软物质吸附质以及诸如制备支撑脂质双层(SLB)等实际应用而言至关重要。尽管SLB形成过程已受到高度审视,但对于囊泡无破裂吸附的细节,尤其是在高表面覆盖率下的情况,人们了解较少。在此,我们通过同时采用石英晶体微天平 - 耗散(QCM - D)和局域表面等离子体共振(LSPR)测量来解决这个问题,以研究囊泡大小(直径84 - 211 nm)对囊泡吸附到氧化钛表面的影响。由于这两种技术测量原理的根本差异以及探测体积的不匹配,能够确定传感器表面附近吸附的脂质质量以及整个吸附囊泡层中吸附的脂质和流体动力学耦合溶剂的总质量。随着囊泡尺寸的增加,QCM - D频率信号呈现单调行为并达到渐近值,而QCM - D能量耗散信号则继续随囊泡尺寸增加。与之形成显著对比的是,传感器表面附近LSPR追踪的脂质质量呈现抛物线趋势,中等尺寸的囊泡产生最大的相应测量响应。研究结果表明,由于囊泡变形和空间堆积的竞争影响,吸附囊泡与固体表面接触的最大程度出现在中等囊泡尺寸处。展望未来,此类信息可用于控制磷脂组装体的分子自组装,并为研究可变形的软物质吸附质提供基础。

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