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Vesicle adhesion visualized with total internal reflection imaging ellipsometry biosensor

机译:用全内反射成像椭偏仪生物传感器可视化囊泡粘连

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摘要

The behavior of giant lipid vesicles (GUVs) interacting with an adhesive surface coated with poly-L-lysine is investigated by a biosensor based on total internal reflection imaging ellipsometry (TIRIE). The adhesion of GUVs on the adhesive surface is regulated by the concentration of the poly-L-lysine coating, the pH of the vesicle suspension, and the flow rate of the suspending fluid. The TIRIE biosensor detects very clearly and sensitively GUV adsorption, flattening, rupture, and de-adhesion, all these behaviors being independently observed by phase contrast microscopy. These results show that the setting of the TIRIE biosensor, optimized for molecular sensing can be extended to GUV sensing. This work paves the way to develop a new sensitive high-throughput, low-consumption and low-cost biosensor technology for micron-size objects such as cells, capsules and liposomes.
机译:通过基于全内反射成像椭偏仪(TIRIE)的生物传感器研究了巨脂囊泡(GUV)与涂有聚L-赖氨酸的胶粘剂表面相互作用的行为。 GUV在胶粘剂表面的粘合力受聚L-赖氨酸涂层的浓度,囊泡悬浮液的pH值和悬浮液的流速调节。 TIRIE生物传感器非常清晰,灵敏地检测到GUV的吸附,变平,破裂和脱粘,所有这些行为都可以通过相差显微镜独立观察到。这些结果表明,针对分子感应优化的TIRIE生物传感器的设置可以扩展到GUV感应。这项工作为开发一种新的灵敏的高通量,低消耗,低成本的生物传感器技术铺平了道路,该技术可用于微米级物体,例如细胞,胶囊和脂质体。

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