Sheep red blood cells have been washed free of sheep complement proteins, and were not coated with hemolysin antibodies.
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| Application | Sheep red blood cells can be used as negative controls for assays of the human classical and alternative complement pathways in serum samples. |
| Form | Liquid |
| Concentration | 5 x 108 cells/mL |
| Storage | Store at 4°C and avoid freezing. |
I wouldn't hesitate to recommend these to my colleaguesExcellentSheep erythrocytes have been a staple in my lab for years. This particular batch stands out for its high quality and consistency. The cells maintain their integrity throughout the assays, which is crucial for obtaining accurate data. It's clear that great care is taken during the production process to ensure the best results.
It's a reliable product that has become a cornerstone in my researchExcellentThese sheep erythrocytes are essential for my complement pathway assays. The negative control results are always consistent, allowing me to confidently interpret my data. The packaging ensures that the cells arrive in perfect condition, ready to use.
Highly recommend for complement pathway studiesExcellentThese sheep erythrocytes have proven to be an excellent choice for our serum sample assays. The erythrocytes are of high quality, with a low rate of hemolysis. The clear instructions provided with the product ensure ease of use, even for our junior researchers. Consistent performance in our classical and alternative pathway assays.
A valuable addition to our laboratoryExcellentThe products we received were in excellent condition, and they have been very effective as negative controls in our assays. The cells maintain integrity over extended periods, and we've observed minimal clumping. The results have been reproducible, which is a key factor for us. Definitely a reliable product.
We are extremely satisfied with the performance of these erythrocytesExcellentWe've been using these erythrocytes for our complement pathway assays, and they have not disappointed. The cells are uniform and exhibit minimal clumping. This has greatly reduced our experimental variability, leading to more accurate and reproducible results.