Continuous separation and purification device for extracellular vesicles and application method
A technology for separation and purification of vesicles, applied in the field of extracellular vesicle separation and purification, can solve the problems of complex operation, difficult size classification, and time-consuming separation and purification of extracellular vesicles, so as to overcome the effect of concentration polarization and reduce Attenuation rate, the effect of restoring filtration efficiency
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Embodiment 1
[0071] combine figure 1 and figure 2 As shown, this embodiment proposes a continuous separation and purification device for extracellular vesicles, including an extracellular vesicle separation and purification device and a main control module, the extracellular vesicle separation and purification device is electrically connected to the main control module, and the cell The external vesicle separation and purification device includes an ultrafilter module, a pressurized liquid inlet module, a concentrated end negative pressure suction module, a filter end negative pressure suction module and a pipeline temperature control module, an ultrafilter module and a pressurized liquid inlet module. , The negative pressure suction module at the concentration end and the negative pressure suction module at the filtering end are connected by pipelines, and the pipelines involved in the extracellular vesicle separation and purification device are provided with pipeline temperature control...
Embodiment 2
[0109] combine figure 1 and image 3 As shown, this embodiment proposes a device for continuous separation and purification of extracellular vesicles, including a two-stage device for separation and purification of extracellular vesicles and a main control module in series. The device for separation and purification of extracellular vesicles is electrically connected to the main control module. The connected, two-stage extracellular vesicle separation and purification device includes an ultrafilter module, a pressurized liquid inlet module, a concentrated end negative pressure suction module, a filter end negative pressure suction module, a pipeline temperature control module, and an ultrafilter module. It is connected with the pipeline of the pressurized liquid inlet module, the negative pressure suction module at the concentration end, and the negative pressure suction module at the filtering end. The pipeline involved in the extracellular vesicle separation and purification...
Embodiment 3
[0165] combine Figure 4 The content shown, in this embodiment, the ultrafilter is a flat serpentine tube dynamic ultrafilter, and the upper chamber cavity of the ultrafilter in the flat serpentine tube dynamic ultrafilter is a repeatedly bent serpentine lumen, and the serpentine One end of the lumen is connected with the liquid inlet pipeline, the other end of the serpentine lumen is connected with the concentrated liquid port pipeline, and the lower chamber of the ultrafiltration membrane is connected with the filtrate port pipeline. The vesicle liquid enters the repeatedly bent serpentine lumen from the liquid inlet. The booster pump provides positive pressure ultrafiltration power, and the negative pressure suction device at the filter end provides negative pressure suction ultrafiltration power. The liquid containing extracellular vesicles to be separated is described above. Under the action of positive pressure pushing and negative pressure suction, impurities with a par...
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