HORIZONTAL ELECTROPHORESIS APPARATUS
20220397550 · 2022-12-15
Inventors
- Sung Hyun Kang (Daejeon, KR)
- Jong Taek Park (Daejeon, KR)
- Dong Woo Lim (Sejong-si, KR)
- Woo Jong Ha (Sejong-si, KR)
- Heung Seon Shin (Sejong-si, KR)
Cpc classification
International classification
Abstract
A horizontal electrophoresis apparatus according to the present invention comprises a first electrode and a second electrode arranged at respective sides of an electrophoretic gel and each in close contact with one side of the electrophoretic gel. By using the first electrode and the second electrode each in close contact with one side of the electrophoretic gel, the horizontal electrophoresis apparatus enables electric current to flow across the entire cross section of the electrophoretic gel, and thus can prevent an electric current difference from occurring between the upper and lower ends of the electrophoretic gel and solve the problem of a reduction in the resolution of protein bands.
Claims
1. A horizontal electrophoresis apparatus comprising: a first electrode and a second electrode disposed on both lateral sides of an electrophoretic gel, the first electrode and the second electrode being in close contact with one side of the electrophoretic gel.
2. The horizontal electrophoresis apparatus of claim 1, wherein the first electrode and the second electrode are in close contact with both lateral sides of the electrophoretic gel to face each other with the electrophoretic gel interposed therebetween.
3. The horizontal electrophoresis apparatus of claim 1, wherein the electrophoretic gel is a polymer gel such as polyacrylamide or agar.
4. The horizontal electrophoresis apparatus of claim 1, wherein one of the first electrode and the second electrode is electrically connected to a positive terminal of an external power supply, and the other is electrically connected to a negative terminal of the external power supply.
5. The horizontal electrophoresis apparatus of claim 1, wherein the cross-sections of the first electrode and the second electrode surround the upper, lower, and lateral sides of the edge of the electrophoretic gel.
6. The horizontal electrophoresis apparatus of claim 1, wherein each of the first electrode and the second electrode comprises an upper electrode and a lower electrode in contact with the upper and lower sides of the electrophoretic gel.
7. The horizontal electrophoresis apparatus of claim 6, wherein the interval between the upper electrodes disposed on the upper side of the electrophoretic gel and the interval between the lower electrodes disposed on the lower side of the electrophoretic gel can be adjusted to control the amount of electric current flowing through the electrophoretic gel.
8. The horizontal electrophoresis apparatus of claim 1, wherein a wick is disposed between each of the first electrode and the second electrode and the electrophoretic gel, and the wick comprises an electrolyte.
Description
DESCRIPTION OF DRAWINGS
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MODE FOR INVENTION
[0036] Hereinafter, exemplary embodiments of the present invention will be described in detail with reference to the accompanying drawings. First of all, it should be noted that in giving reference numerals to elements of each drawing, like reference numerals refer to like elements even though like elements are shown in different drawings. It should be understood that although the exemplary embodiments of the present invention are described hereafter, the spirit of the present disclosure is not limited thereto and may be practiced by those skilled in the art.
[0037] Hereinafter, a horizontal electrophoresis apparatus according to one embodiment of the present invention will be described with reference to
[0038] Referring to
[0039] Here, the electrophoretic gel 10 may be a polymer gel such as polyacrylamide, agar, etc. The polyacrylamide gel is a porous material which is much denser than an agar gel and thus can be used to separate samples with small molecular weights and small size differences compared to the use of agar. For example, the electrophoretic gel 10 may be a polyacrylamide gel (10% resolving gel), but is not limited thereto.
[0040] Moreover, the first electrode 20a and the second electrode 20b may be in close contact with one side of the electrophoretic gel 10.
[0041] As shown in
[0042] Furthermore, the first electrode 20a and the second electrode 20b may be connected to an electric wire to be supplied with electricity from an external power supply. Here, one of the first electrode 20a and the second electrode 20b may be electrically connected to a positive terminal of the external power supply, and the other may be electrically connected to a negative terminal of the external power supply.
[0043] In addition, each of the first electrode 20a and the second electrode 20b may be a surface electrode made of a conductive material such as platinum, aluminum, etc.
[0044] For the electrophoresis process, when a protein sample is injected into wells h of the electrophoretic gel 10 and an electric current is supplied from an external power supply to the first electrode 20a and the second electrode 20b through the electric wire, the electric current flows through the electrophoretic gel 10 in close contact with the first electrode 20a and the second electrode 20b, which causes the protein sample to migrate, thereby causing protein separation and performing the electrophoresis.
[0045] As such, unlike the conventional horizontal electrophoresis apparatus as shown in
[0046] That is, the electric current flows uniformly over the entire cross section of the electrophoretic gel 10 through the first electrode 20a and the second electrode 20b, and thus it is possible to solve the problem that a certain portion of the protein band becomes particularly thick as a result of the electrophoresis, which results in a reduced resolution.
[0047] Meanwhile, according to the horizontal electrophoresis apparatus 1 of the present invention, the position where the first electrode 20a and the second electrode 20b are in close contact with the electrophoretic gel 10 is not limited to both lateral sides as shown in
[0048] In addition, when the first electrode 20a and the second electrode 20b of the present invention are used for two-dimensional polyacrylamide gel electrophoresis (2D PAGE), the electric current flows uniformly, which increases the number of protein spots, which serve as a standard for quality assessment of electrophoretic separation.
[0049] Next, the structure of a horizontal electrophoresis apparatus according to another embodiment of the present invention will be described with reference to
[0050] According to the horizontal electrophoresis apparatus 1 of another embodiment of the present invention, the cross sections of the first electrode 20a and the second electrode 20b may surround the upper, lower, and lateral sides of the edge of the electrophoretic gel 10. Here, a wick w may be disposed between each of the first electrode 20a and the second electrode 20b and the electrophoretic gel 10, and the wick w may comprise an electrolyte.
[0051] Specifically, the wick w may comprise a stack of filter papers and may be immersed in an electrolyte solution to allow the electric current to flow. With the wick w, the first and second electrodes 20a and 20b and the gel 10 do not directly contact one another, thereby preventing damage to the gel 10 and providing an electrolyte necessary for electrophoresis.
[0052] Moreover, a PVC film f may be disposed between the first electrode 20a and the second electrode 20b to support the lower side of the electrophoretic gel (10), whereby the electrophoretic gel (10) can be level between the first electrode 20a and the second electrode 20b.
[0053]
[0054] At this time, a pre-stained protein marker was used as a sample, and the sample migrated from top to bottom in the case of the upper side image and from left to right in the case of the lateral cross-sectional image.
[0055] As shown in
[0056]
[0057] As shown in
[0058] That is, since the conventional horizontal electrophoresis apparatus has a configuration in which the wire electrodes are disposed only on both top sides of the gel, the electric current strength on the upper side of the gel is higher than that on the lower side, which causes the protein bands to be particularly thick only in a specific region, resulting in a reduced resolution.
[0059] Meanwhile, heat generated in the electrophoretic gel 10 during the electrophoresis process may serve to interfere with the electrophoresis.
[0060] However, according to the horizontal electrophoresis apparatus 1 of the present invention, sufficient electric current can be also supplied to the lower side of the electrophoretic gel 10 through the first electrode 20a and the second electrode 20b of which the cross sections surround the upper, lower, and lateral sides of the edge of the electrophoretic gel 10.
[0061] Therefore, the present invention can not only prevent the protein bands from being skewed, but also reduce the temperature difference between the top, middle and bottom of the electrophoretic gel 10, thereby further improving the quality of electrophoresis.
[0062] Next, the structure of a horizontal electrophoresis apparatus according to another embodiment of the present invention will be described with reference to
[0063] According to the horizontal electrophoresis apparatus 1 of another embodiment of the present invention, each of the first electrode 20a and the second electrode 20b may comprise an upper electrode 20a1, 20b1 and a lower electrode 20a2, 20b2, which are in contact with the upper and lower sides of the electrophoretic gel 10, respectively.
[0064] Specifically, the first electrode 20a disposed on the left side of the electrophoretic gel 10 as shown in
[0065] Here, the first electrode 20a and the second electrode 20b may be spaced about 1 cm and made of titanium coated with platinum.
[0066] As such, since each of the first electrode 20a and the second electrode 20b comprises the upper electrode 20a1, 20b1 and the lower electrode 20a2, 20b2, respectively, which are in contact with the upper and lower sides of the electrophoretic gel 10, the process of bringing the electrodes into contact with the electrophoretic gel 10 becomes easy.
[0067]
[0068] As a result of the measurement, it can be seen that, in the case where both the upper electrodes 20a1 and 20b1 and the lower electrodes 20a2 and 20b2 were used as shown in
[0069] Moreover, it is possible to precisely control the position or thickness of the protein bands by allowing different amounts of electric current to flow through the upper electrodes 20a1 and 20b1 and the lower electrodes 20a2 and 20b2 during the electrophoresis.
[0070] Specifically, referring to
[0071] Here, the upper electrodes 20a1 and 20b1 and the lower electrodes 20a2 and 20b2 may be connected at their both ends to the rods 130 of the electrophoresis platform 100, respectively, to move their positions, and may be electrically connected to the power supply connected to the electrical terminals 110, 120 through the rods 130.
[0072] Referring to
[0073] As such, according to the horizontal electrophoresis apparatus 1 of another embodiment of the present invention, it is possible to adjust the interval between the upper electrodes 20a1 and 20b1 disposed on the upper side of the electrophoretic gel 10 and the interval between the lower electrodes 20a2 and 20b2 disposed on the lower side of the electrophoretic gel 10.
[0074]
[0075] As shown in
[0076] Referring to
[0077] That is, as shown in
[0078] Referring to
[0079] Referring to
[0080] Referring to
[0081] The above-mentioned results shown in
[0082] Unlike the electrophoresis performed using the 3 mm thick gel 10, in the case where the 1 mm thick gel 10 was used, even if the upper electrodes 20a1 and 20b1 and the lower electrodes 20a2 and 20b2 are aligned in the same position, the protein bands were shown to be skewed in the direction of migration.
[0083] To solve this problem, the interval between the lower electrodes 20a2 and 20b2 was further narrowed by 1 cm to increase the amount of electric current flowing to the bottom of the gel 10, and as a result, the problem that the protein bands were skewed has been improved as shown in
[0084] That is, it can be seen that the quality of electrophoresis can be improved by adjusting the interval between the upper electrodes 20a1 and 20b1 and the interval between the lower electrodes 20a2 and 20b2 to control the amounts of electric current at the top and bottom.
[0085] The invention has been described in detail with reference to preferred embodiments thereof. However, it will be appreciated by those skilled in the art that changes may be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.