Pathogenic microorganism rapid concentration device and method
The present invention discloses a pathogenic microorganisms rapid concentration device and method. The device comprises an electrode and a microchannel for passing a sample, wherein the microchannel comprises a concentration channel and a sample channel, between which a filter element is provided, the electrode comprises a positive electrode and a negative electrode, the positive electrode comprises several sub-positive electrodes, after the sample flows into the microchannel, under the action of the electrode, pathogenic microorganisms in the sample are regionally enriched on a positive electrode side of the concentration channel to form a concentrated sample. The present invention provides a substantial increase in the rate and efficiency of purification of samples containing pathogenic microorganisms through precise electrical control. The concentration of pathogenic microorganisms can be achieved accurately and efficiently by controlling the voltage applied by the sub-positive electrode, which provides a good basis for the integration, automation, rapid and continuous sampling, and detection.
1 . A pathogenic microorganisms rapid concentration device, comprising an electrode and a microchannel for passing a sample, wherein the microchannel comprises a concentration channel and a sample channel, between which a filter element is provided, the electrode comprises a positive electrode and a negative electrode, the positive electrode comprises a plurality of sub-positive electrodes provided in a spaced array on a side close to the concentration channel, the negative electrode is provided on a side close to the sample channel, wherein when a fluctuating voltage greater than zero is applied to one of the plurality of sub-positive electrodes, the voltage of another of the plurality of sub-positive electrodes adjacent to the one of the plurality of sub-positive electrodes alternates with the fluctuating voltage to form a varying potential difference between the one and the another of the plurality of sub-positive electrodes to regionally enrich pathogenic microorganisms in the sample flowing into the microchannel on a positive electrode side of the concentration channel to form one or more enrichment regions with the pathogenic microorganisms in the concentration channel.
2 . The pathogenic microorganisms rapid concentration device according to claim 1 , wherein a pair of driving electrodes are provided at an outlet and an inlet of the microchannel.
3 . The pathogenic microorganisms rapid concentration device according to claim 1 , wherein the fluctuation form of fluctuation voltage greater than zero comprises rectangular wave, and/or triangular wave, and/or sine wave, or the superposition wave of the first three waves.
4 . The pathogenic microorganisms rapid concentration device according to claim 1 , wherein the filter element is a semi-permeable membrane, and/or an array of micro-columns, and/or a gel polymer, and is a filter structure with voids.
5 . The pathogenic microorganisms rapid concentration device according to claim 1 , wherein the concentration channel has a width smaller than that of the sample channel.
6 . The automatic pathogen-from-expiration detection system according to claim 5 , wherein the width L1 of the sample channel and the width L2 of the concentration channel satisfy:
L 1 V 1/ L 2 V 2≥ X
wherein V1 is a flow rate of the sample channel, V2 is a flow rate of the concentration channel, and X is a ratio of the concentration of the concentrated sample to the concentration of the sample before concentration.
7 . The pathogenic microorganisms rapid concentration device according to claim 1 , wherein the microchannel is made of polymethyl methacrylate (PMMA), polyethylene (Tygon), poly (ethylene-co-propylene) (FEP) or poly (tetrafluoroethylene) (PTFE), COC/COP cyclic olefin copolymer, polycarbonate (PC).
8 . A pathogenic microorganisms rapid concentration method based on the pathogenic microorganisms rapid concentration device according to claim 1 , comprising:
making the sample enter the microchannel, under the action of the positive electrode and the negative electrode, gradually biasing the pathogenic microorganisms to one side of the positive electrode, and making the pathogenic microorganisms enter the concentration channel via the filter element;
applying a fluctuating voltage greater than zero on a single sub-positive electrode, wherein the voltage of the sub-positive electrode adjacent thereto alternates with the fluctuating voltage and forms a varying potential difference between the adjacent sub-positive electrodes, and pathogenic microorganisms reciprocate between the two adjacent sub-positive electrodes and gradually enrich in the middle region of the two adjacent sub-positive electrodes; and
obtaining a concentrated sample at the outlet of the concentration channel.
9 . The automatic pathogen-from-expiration detection method according to claim 8 , wherein several sub-positive electrodes are provided, wherein some or all the single sub-positive electrodes are applied with a fluctuating voltage, and a fluctuating electric field is formed among a number of sub-positive electrodes therein, forming one or more enrichment regions, and the number of electrodes supplying voltage during enrichment can also be gradually reduced to form fewer enrichment regions for further enrichment.