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Electromagnetic Piezoelectric Acoustic Sensor Detection of Extracellular Vesicles through Interaction with Detached Vesicle Proteins

机译:通过与分离囊泡蛋白相互作用的细胞外囊的电磁压电声学传感器检测

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摘要

An electromagnetic piezoelectric acoustic sensor (EMPAS) was used to study the non-specific adsorption of human red blood cell-derived extracellular vesicle preparations. Vesicle storage history (temperature and duration) highly affected the obtained results: The signal change, namely the frequency decrease of the crystal measured at 20 °C, was negligibly small (<1 s−2) when the vesicle solutions had previously been stored at 4 °C, and was in the order of 10 s−2 when the vesicle solutions had been stored at −30 °C. Moreover, the rate of frequency decrease increased exponentially with the storage time at −30 °C. Upon a 4 °C storage period following the −30 °C storage period of the same sample, the measured frequency decrease dropped, suggesting a partial relaxation of the system. The results are explained by the disintegration of the vesicles triggered by the freeze–thaw cycle, likely due to the detachment of proteins from the vesicle surface as was proved by size-exclusion chromatography. Surface modification of the sensor crystal provided the possibility of signal enhancement, as the maximum rate of the frequency change for the same vesicle concentrations was higher on hydrophobic, octadecyl trichlorosilane–modified quartz than on hydrophilic, bare quartz. The EMPAS signal has been associated with the amount of detached proteins, which in turn is proportional to the originating vesicle concentration.
机译:使用电磁压电声学传感器(EMPA)研究人红细胞衍生的细胞外囊泡制剂的非特异性吸附。囊泡存储历史(温度和持续时间)高度影响所得到的结果:信号变化,即在20℃下测量的晶体的频率降低,当囊泡溶液先前储存时,忽略于小(<1 s-2)当囊泡溶液储存在-30℃时,4°C,在10S-2的顺序上。此外,在-30°C的存储时间下,频率率降低呈指数增加。在相同样本的-30°C存储周期之后的4°C存储时段,测量的频率降低掉落,表明系统的部分松弛。结果是通过冻融循环触发的囊泡的崩解来解释,可能由于粒度除去囊泡表面的蛋白质分离而导致的粒子。传感器晶体的表面改性提供了信号增强的可能性,因为疏水性,十二烷基三氯硅烷改性石英中相同囊泡浓度的频率变化的最大速率比亲水性裸曲石英更高。 EMPAS信号与分离的蛋白质的量有关,其又与源囊泡浓度成比例。

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