Fluorescence sensing platform based on ruthenium(II) complexes as high 3S (sensitivity, specificity, speed) and “on-off-on” sensors for the miR-185 detection
-
Add time:08/30/2019 Source:sciencedirect.com
Inspired by the enormous importance attributed to the biological function of miRNA, we pour our attention into the design and synthesis of four ruthenium(II) complexes and evaluate their applications as miR-185 detection agents by spectroscopic measurements. It was found that all complexes can form sensing platform for the detection of the complementary target miR-185 through the introduction of carboxyfluorescein (FAM) labeled single stranded DNA (P-DNA), giving the detection limits of 0.42 nM for Ru 1, 0.28 nM for Ru 2, 0.32 nM for Ru 3, 0.85 nM for Ru 4, all with instantaneous detection time in 1 min. The results of the binding constant, fluorescence anisotropy (FA) and polyacrylamide gel electrophoresis experiments (PAGE) revealed that the ruthenium(II) complexes prefer to bind P-DNA other than hybrid duplexes [email protected] upon recognition, resulting in the detection of miR-185. These results provide useful suggestions in the new type of metal-based miRNA detection agents.
We also recommend Trading Suppliers and Manufacturers of Reactive yellow 185 (cas 111211-44-0). Pls Click Website Link as below: cas 111211-44-0 suppliers
Prev:Reactive sputtering for highly oriented HfN film growth on Si (100) substrate
Next:A pyramidal Tin(II) dication and its reactivity studies) - 【Back】【Close 】【Print】【Add to favorite 】
- Related Information
- BaselineTrace elements in biomaterials and soils from a Yellow-legged gull (Larus michahellis) colony in the Atlantic Islands of Galicia National Park (NW Spain)09/02/2019
- Crystal structure determination of Scylla paramamosain arginine kinase, an allergen that may cause cross-reactivity among invertebrates09/01/2019
- A pyramidal Tin(II) dication and its reactivity studies08/31/2019
- Reactive sputtering for highly oriented HfN film growth on Si (100) substrate08/29/2019
-
Health and Chemical more >


