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Effect of Vesicle Curvature on Phospholipase D Reaction-Induced-Rupture

机译:囊泡曲率对磷脂酶D反应诱导的破裂的影响

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Spherical phospholipid-bilayers, vesicles, were prepared using the layer-by-layer double emulsion technique, which allows the bilayer to be formed asymmetrically. On the outer layer of the vesicles, the phospholipase D (PLD) reacted to convert phosphatidylcholine (PC) to phosphatidic acid (PA). The reaction induced the curvature change of the vesicles, which eventually led to rupture. The response time from the time of PLD injection to the time of rupture was measured against different vesicle curvatures and the outer layer phase, using the fluorescence intensity change of a pH-sensitive dye encapsulated within the vesicles. The effect of the vesicle curvature on the response was observed to be more significantly dramatic at the solid phase, compared to the liquid phase. Furthermore, in the solid phase, the response time was faster for 80 and 155 nm vesicles and, slower for 605 nm vesicles than similarly sized vesicles in the liquid phase vesicles. This difference in the response time was thought to result from the configuration determined by the phase difference and the PLD behavior.
机译:使用逐层双重乳液技术制备球形磷脂双分子囊泡,该技术可使双分子膜不对称形成。在囊泡的外层,磷脂酶D(PLD)反应将磷脂酰胆碱(PC)转化为磷脂酸(PA)。反应引起囊泡的曲率变化,最终导致破裂。使用封装在囊泡中的pH敏感染料的荧光强度变化,针对不同的囊泡曲率和外层相测量了从PLD注射到破裂时间的响应时间。与液相相比,在固相中观察到囊泡曲率对反应的影响更为显着。此外,在固相中,与液相囊泡中的类似大小的囊泡相比,对于80nm和155nm囊泡的响应时间更快,而对于605nm囊泡的响应时间更慢。响应时间的这种差异被认为是由相位差和PLD行为决定的配置导致的。

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