Department of Chemical Engineering, College of Engineering, Seoul National University of Science and Technology, Seoul, South Korea.
Colloids Surf B Biointerfaces. 2011 Nov 1;88(1):517-20. doi: 10.1016/j.colsurfb.2011.07.046. Epub 2011 Jul 26.
The effect of the aminoglycoside (streptomycin) incorporation on the nanomechanical properties of pure dipalmitoylphosphatidylcholine (DPPC) vesicles was studied using atomic force microscope (AFM) on mica surface. The vesicles were prepared by extrusion and adsorbed on the mica surface. The forces, measured between an AFM tip and the vesicle, presented that the breakthrough of the tip into the vesicles occurred two times. Each breakthrough represented each penetration of the tip into each bilayer. Force data prior to the first breakthrough were fitted well with the Hertzian model to estimate Young's modulus and bending modulus of the vesicles. It was found that the Young's modulus and bending modulus were not varied with the incorporation of AGs (streptomycins) up to the 1:1 AG/DPPC vesicle system. This result may suggest that the AGs do not lead to the disruption of DPPC packing.
采用原子力显微镜(AFM)在云母表面研究了氨基糖苷(链霉素)掺入对纯二棕榈酰磷脂酰胆碱(DPPC)囊泡的纳米力学性质的影响。通过挤压制备囊泡,并将其吸附在云母表面。在 AFM 针尖和囊泡之间测量的力表明,针尖两次进入囊泡。每次突破都代表着针尖穿透每个双层。在第一次突破之前的力数据与赫兹模型拟合良好,以估计囊泡的杨氏模量和弯曲模量。结果发现,杨氏模量和弯曲模量在 AGs(链霉素)掺入到 1:1 AG/DPPC 囊泡体系之前没有变化。这一结果可能表明 AGs 不会导致 DPPC 堆积的破坏。