首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Formation, Stability, and Mechanical Properties of Bovine Serum Albumin Stabilized Air Bubbles Produced Using Coaxial Electrohydrodynamic Atomization
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Formation, Stability, and Mechanical Properties of Bovine Serum Albumin Stabilized Air Bubbles Produced Using Coaxial Electrohydrodynamic Atomization

机译:同轴电流体雾化产生的牛血清白蛋白稳定气泡的形成,稳定性和力学性能

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Bovine serum albumin (BSA) microbubbles were generated using coaxial electrohydrodynamic atomization (CEDHA) using various concentrations of BSA solutions. The bubble characteristics and the long-term stability of the microbubbles were studied through adjustment of processing parameters and the collection media. Bubbles in the range of 40?800 μm were obtained in a controlled fashion, and increasing the flow rate of the BSA solution reduced the polydispersity of the microbubbles. Use of distilled water?glutaraldehyde, glycerol, and glycerol?Tween 80 collection media allowed a remarkable improvement in bubble stability compared to BSA solution collection medium. Possible physical mechanisms were developed to explain the stability of the microbubbles. The collection distance showed a marked influence on stability of the microbubbles. Near-monodisperse particle-reinforced microbubbles were formed with various concentrations of 2,2′-azobis- (isobutyramidine) dihydrochloride (AIBA)?polystyrene particle in BSA solution. The bubble size and the size distribution showed negligible change over a period of time irrespective of the concentration of particles at the bubble surface. The compression stiffness of the microbubbles was determined using nanoindentation at ambient temperature and showed that the stiffness of the microbubbles increased from 8 N/m to 20 N/m upon changing the concentration of BSA solution from 5 wt % to 15 wt %.
机译:牛血清白蛋白(BSA)微气泡是使用同轴浓度的BSA溶液使用同轴电动流体雾化(CEDHA)生成的。通过调整工艺参数和收集介质,研究了微泡的气泡特性和长期稳定性。以受控方式获得40-800μm范围内的气泡,增加BSA溶液的流速会降低微气泡的多分散性。与BSA溶液收集介质相比,使用蒸馏水-戊二醛,甘油和甘油-Tween 80收集介质可显着改善气泡稳定性。开发了可能的物理机制来解释微泡的稳定性。收集距离显示出对微泡稳定性的显着影响。在BSA溶液中,用各种浓度的2,2'-偶氮二-(异丁酰胺)二盐酸盐(AIBA)-聚苯乙烯颗粒形成了近单分散的颗粒增强微气泡。气泡尺寸和尺寸分布在一段时间内的变化可忽略不计,而与气泡表面的颗粒浓度无关。使用纳米压痕在环境温度下确定微泡的压缩刚度,并显示出在将BSA溶液的浓度从5 wt%更改为15 wt%时,微泡的刚度从8 N / m增加到20 N / m。

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