The invention relates to the scattering of cells one by one, at a certain speed and direction, on the agarose layer on the lame in SCGE assays.
In the state of the art, the “Single Cell Gel Electrophoresis” (SCGE) technique is a sensitive, fast and inexpensive method used for the detection of DNA breaks. The SCGE technique is also called “Comet Assay” or “Microgel Electrophoretic Technique”.
Although there are many methods used in the said technique, in all methods, the cells used are mixed with low boiling agarose (LMP) (37° C.) with a pipette and transferred onto the agarose layer on the lame. To date, there is no device that automates this process. Cells cannot be transferred individually and regularly onto LMP, cells are randomly scattered on the agarose layer on the lame, and the scattering of cells on the agarose layer on the lame cannot be controlled. How often, how deep and with which pattern the cells will be placed is not known. These problems impose limitations on SCGE analysis.
In SCGE assays, cells are simply scattered onto LMA with pipette. It cannot be predicted how and in what distances the cells will be scattered on the agarose layer on the lame. Shaking the cells does not solve this problem definitively. The lack of a balanced scattering of cells with an appropriate frequency is a major problem in SCGE analysis. Due to this problem, preparations with unsuitable cell scattering and/or some of the preparations cannot be evaluated in SCGE analyses.
The present invention relates to a device that allows cells to be scattered on the LMA (agarose) at the appropriate depth and pattern in order to eliminate the above disadvantages and bring new advantages to the related technical field.
This invention provides cells individually onto the LMA by hydrodynamic focusing, how deep the LMA will penetrate is determined based on the electro-magnetic guidance strength. In addition, by means of Electro-magnetic orientation the scattering of cell on the LMA is performed depending on the desired order.
Depending on the user's request, droplet and cell scattering are performed in different patterns and depths.
The present invention places cells at the desired frequency, pattern and appropriate depth on the agarose layer on the lame in SCGE (single cell gel electrophoresis) analyses. In addition, the invention allows performing SCGE analysis with very few cells.
The system allows SCGE analyses to be performed in a fast and reproducible manner and be reliable with less labour.
For a better understanding of the invention in question,
For a better understanding of the present invention, the elements and their reference numbers are given below.
In this detailed explanation, the innovation that is the subject of the invention is only explained for a better understanding of the subject with examples that will not have any limiting effect.
The present invention relates to single cell gel electrophoresis flow cytometry. The invention includes (1) Electro-magnetic focusing system, (1) droplet nozzle moving with electro-magnetic guidance (2), electric winding that creates electromagnetic field for electro-magnetic charging (3), electric motor providing the movement of the lame (4) electro-magnetic focusing system and control system (15) that controls the electric motor.
The present invention guides the cells in the LMA at the appropriate temperature in the electric field with electro-magnetic focusing and sprays them onto the lame that is constantly moving at low speed with an electric motor. The scattering of the cells and their depth in the lame differ depending on the speed of the electric motor, the movement of the moving nozzle due to electro-magnetic focusing, the spray speed in the nozzle, the amount of current sent and current loads of the electric windings that provide electro-magnetic focusing, and in this way, regular and repeatable cell scattering in the desired pattern, frequency and depth are provided.
Based on the detailed explanations above, the present invention is a system that allows cells to scatter on the LMA at the appropriate depth and pattern, including;
Other embodiments of the invention are;
Number | Date | Country | Kind |
---|---|---|---|
2020/18906 | Nov 2020 | TR | national |
This application is the national phase entry of International Application No. PCT/TR2021/051177, filed on Nov. 10, 2021, which is based upon and claims priority to Turkish Patent Application No. 2020/18906, filed on Nov. 24, 2020, the entire contents of which are incorporated herein by reference.
Filing Document | Filing Date | Country | Kind |
---|---|---|---|
PCT/TR2021/051177 | 11/10/2021 | WO |