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The application advantages of plasma cleaning equipment in cell culture dishes

source:本站author:超级管理员time:2024-12-23views:987612

Why is plasma cleaning technology a new method of material surface modification!


Plasma cleaning technology is a new type of material surface modification method: due to its low functional consumption, low pollution, short solution time, and significant effect, plasma cleaning is effective. Among various modification methods of plasma cleaning machines, plasma cleaning equipment has many advantages compared to other methods. Today, let's learn together about the application advantages of plasma cleaning machines in the biological field. During the plasma treatment process, some active functional groups (such as hydroxyl,

 carboxyl, etc.) are introduced on the surface of the culture dish, which help enhance the biocompatibility of the culture dish surface and promote the interaction between cells and culture dishes. Plasma cleaning machines can remove organic pollutants and impurities on the surface of cell culture dishes through the action of high-energy ion beams, and introduce polar functional groups to improve the hydrophilicity, wettability, and biocompatibility of the material surface.


Plasma cleaning equipment plays several important roles in the application of cell culture dishes, including:


1. Plasma cleaning equipment belongs to dry cleaning machines, which saves essential processes such as drying and wastewater treatment in wet chemical treatment; For example, compared to other drying methods, Electronic Oriental solutions, and other solutions, the unique position of plasma cleaning machines is that their impact on materials only occurs within a range of tens to thousands of angstroms thick on their surface, which can not only change the surface properties of materials, but also alter the characteristics of the body.

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2. Plasma cleaning equipment can handle various materials, whether they are metals, semiconductors, oxides, or polymer materials. Specially suitable for materials that are not resistant to high temperatures or solvents, and can also selectively perform local cleaning on overall, local, or complex structures.

3. The application of low-temperature plasma cleaning machines in the biomedical industry includes: surface modification of biomaterials, cleaning of medical equipment. Plasma cleaning machines can be used to clean culture dishes and improve surface lubrication.

On the surface, it inhibits the growth of cells.


4. Plasma treatment can introduce functional groups, improve the adhesion of material surfaces to cells, and promote cell growth and proliferation. After being treated with a plasma cleaning machine, not only can the surface be cleaned well, but it can also improve the surface permeability of the matrix material and enhance the adhesion of cells:


5. Plasma cleaning technology can thoroughly remove small particles, organic matter, and other pollutants from the surface of the culture dish, providing a clean and sterile growth environment for cells and enhancing biocompatibility


6. Plasma cleaning equipment can significantly improve the surface hydrophilicity of cell culture dishes, making it easier for cells to adhere and grow. The improvement of hydrophilicity helps to evenly distribute cells on the culture dish, thereby enhancing the growth efficiency and culture quality of cells.


7. The plasma surface treatment equipment itself is a very environmentally friendly equipment that does not produce any pollution, and the treatment process does not produce any pollution. It can be matched with the original production line to achieve fully automatic online production.


The treatment effect of plasma cleaning is very uniform and stable, and the effect remains good for a long time after conventional sample treatment.


For samples with complex shapes, plasma cleaning can find suitable solutions.


In summary, plasma cleaning equipment provides multiple advantages in the application of cell culture dishes, including cleaning, surface modification, improved biocompatibility, and hydrophilicity. It is one of the indispensable technologies in cell culture experiments.


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