Nanomole example sentences

Related (8): nanomole, nanomolar, micromole, picomole, femtomole, attomole, zeptomole, yoctomole

"Nanomole" Example Sentences

1. The concentration of the molecule was measured in nanomoles per liter.
2. The experiment required the use of only a few nanomoles of the substance.
3. The device was able to detect nanomoles of the analyte with high precision.
4. The lab technician measured the nanomole quantity of the sample before proceeding with the experiment.
5. The drug was administered at a dose of 10 nanomoles per kilogram of body weight.
6. The test kit was designed to measure nanomoles of specific molecules in a biological sample.
7. The research team synthesized a new inhibitor that binds to the target molecule at nanomolar concentrations.
8. The concentration of the drug in the bloodstream was in the nanomolar range.
9. The reaction required the addition of a few nanomoles of a catalyst to proceed.
10. The nanomole sensitivity of the assay made it suitable for detecting low levels of the analyte in blood.
11. The scientist compared the activity of two enzymes by measuring nanomoles of the product they generated.
12. The production of reactive oxygen species was measured in nanomoles per minute using a fluorescence assay.
13. The study demonstrated that the compound is active at nanomolar concentrations against the target protein.
14. The nanomole-scale synthesis of the compound was achieved using a microfluidic device.
15. The researchers discovered a new protein that binds selectively to nanomolar concentrations of a specific ligand.
16. The enzyme was found to be most active at nanomolar concentrations of substrate.
17. The amount of the impurity in the sample was quantitated in nanomoles per gram of material.
18. The nanomole detection limit of the sensor was sufficient to detect trace amounts of the analyte in water.
19. The mutagenic potential of the compound was tested at nanomolar concentrations using a bacterial assay.
20. The nanomolar affinity of the antibody for the antigen was determined by surface plasmon resonance.
21. The study showed that the compound inhibited the target enzyme at nanomolar concentrations.
22. The drug exhibited nanomolar toxicity against cancer cells in culture.
23. The lab manual instructed the students to measure the nanomole amount of a certain compound in a mixture.
24. The reaction rate constant was calculated to be in the order of nanomoles per liter per second.
25. The nanomolar potency of the inhibitor was tested in a cell-based assay.
26. The patient's serum had abnormally high levels of a certain metabolite measured in nanomoles per liter.
27. The accuracy of the measurement was verified by analyzing nanomole standards of the analyte.
28. The nanomole-sized vesicles were used as drug carriers for targeted delivery to cancer cells.
29. The compound was designed based on a nanomolar structure-activity relationship with the target receptor.
30. The fluorescent signal generated by the assay was proportional to the nanomole amount of the analyte in the sample.

Common Phases

1. The reaction requires only a few nanomoles of enzyme;
2. The concentration of the toxin was determined to be in the nanomole range;
3. The sample was diluted to a nanomole concentration;
4. The drug was administered in nanomole doses;
5. The binding affinity of the receptor was measured in nanomoles;
6. The detection limit for the assay was in the nanomole range;
7. The amount of DNA present in the sample was quantified in nanomoles;
8. The potency of the compound was assessed in terms of nanomoles;
9. The amount of neurotransmitter released was in the nanomole range;
10. The synthesis of the nanomole-sized particles required precise reaction conditions.

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