High Binding Elisa Plates 1GG0001
The design of High Binding Elisa Plates needs to take into account adsorption performance, optical uniformity and operational convenience, and is widely used in clinical diagnosis, biopharmaceuticals, food safety testing and other fields. The specially treated surface can maximize the passive adsorption of proteins (antigens or antibodies), which is suitable for enhancing sensitivity, but it is prone to causing non-specific reactions.
| Volume/ml |
0.3ml |
| Colour |
Transparent |
| Style |
Whole board |
| Sterile |
No |
| Binding Force |
Moderate |
| Packaging specification |
10 pieces per pack, 20 packs per box |
Features:
1.Medical-grade polystyrene material
2. Detachable, specifically designed for ELISA experiments
3. Comply with the ANSI-SBS standard, with inter-hole CV values <5%
4. Free of DNase and RNase, and endotoxin
5. Transparent plate: Suitable for both quantitative and qualitative solid-phase immunoassay and binding detection, as well as light absorption detection, such as cell culture and routine colorimetric analysis
6. White plate: Suitable for self-luminescence and chemiluminescence, with high reflectivity, it is ideal for chemiluminescence and substrate color development detection
7. Black plate: It is suitable for fluorescence immunoassay and binding detection. It has strong light absorption characteristics and is suitable for fluorescence detection, reducing background interference
8. It is used for ELISA to detect and quantify various biomolecules (proteins, antibodies, hormones, drugs) in complex samples.
9. The high binding ELISA plate (High Binding ELISA Plate) is a type of microplate specifically designed for enzyme-linked immunosorbent assay (ELISA). Its core feature is that the surface has undergone special chemical treatment, which enables efficient and strong adsorption of proteins (such as antigens, antibodies, enzyme-labeled secondary antibodies, etc.), thereby ensuring high sensitivity, low background, and good repeatability in ELISA experiments.
10. The surface has a high density of charges and strong hydrophobicity, making it suitable for direct coating of proteins or polypeptides, and requiring high sensitivity.
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