This product is an aptamer which binds to the Adenosine and ATP with an affinity of <10 µM.
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| Target Category | Small Organic |
| Target | Adenosine and ATP |
| Target Overview | Adenosine is a chemical found in human cells. There are three different forms: adenosine, adenosine monophosphate (AMP), and adenosine triphosphate (ATP). |
| Chemical Modification | DNA |
| Length | 20-40 nt |
| Affinity (Kd) | <10 µM |
| Binding Conditions/Buffer | 300 mM NaC1, 5 mM MgCl22, 20 mM Tris (pH 7.6). |
| GC Content | 0.64 |
| Molecular Weight | 7868.16 g/mole |
| Extinction Coefficient | 251000 L/(mole·cm) |
| nmoles/OD260 | 3.98 |
We've used it in various applicationsExcellentThe binding affinity of the aptamer to ATP is remarkable, and it has significantly enhanced the accuracy of our measurements. The product's stability and robustness have also been noteworthy, maintaining its performance across different experimental conditions. Customer support was very helpful in addressing our initial queries about the product's applications.
The product's quality and consistency have been top-notchExcellentWe incorporated it into our fluorescence-based detection assays, and the results were outstanding, with minimal background noise and high signal-to-noise ratio. This aptamer has enabled us to advance our research on nucleotide signaling pathways significantly.
Customer service has been responsive and helpful in addressing our queriesExcellentWe have used it in various applications, including bioluminescence assays and HPLC, and it has consistently delivered reliable results. The aptamer's stability over time has also been impressive, with no noticeable degradation even after prolonged storage.
Ease of use and reliabilityExcellentThe aptamer's high affinity for ATP has allowed us to precisely quantify ATP levels in various biological samples. Its performance in both in vitro and in vivo experiments has been consistent and reliable. We appreciate the detailed product information and technical support provided, which has been invaluable in optimizing our protocols.