Selection and application of ssDNA aptamers against spermine based on Capture-SELEX
-
Add time:09/03/2019 Source:sciencedirect.com
Spermine contamination ranks as one of the food safety issues, it will cause some adverse reactions if the intake of spermine is excessive in human body. So it is of great significance to establish fast and efficient analysis method to detect spermine in foods. In this study, the spermine aptamers with high affinity and specificity were obtained by the capture systematic evolution of ligands by exponential enrichment (Capture-SELEX) technique. Forty-one aptamer sequences were obtained by cloning and sequencing, and were divided into eight families based on homology and secondary structure analysis. The affinity and specificity of candidate aptamers was analyzed by isothermal titration calorimetry (ITC) and fluorescence assay. The aptamers named APJ-6 was picked out as the optimal aptamer that recognizes spermine specifically with the Kd value of 9.648 ± 0.896 nM. In order to verify the practicability of the selected aptamers, the sensitive aptamer-based fluorescene assay was designed. Under optimized conditions, this aptasensor exhibited a low detection limit of 0.052 nM, as well as a linear within the range of 0.1–20 nM. Besides, it has been further applied for the determination of spermine in pork samples and the recoveries ranged from 86.45% to 98.15%, showing its great potential for sensitive analysis in food safety control.
We also recommend Trading Suppliers and Manufacturers of N(1)-(azidobenzamidino)spermine (cas 133009-20-8). Pls Click Website Link as below: cas 133009-20-8 suppliers
Prev:Selective fluorescent probes for spermine and 1-adamantanamine based on the supramolecular structure formed between AIE-active molecule and cucurbit[n]urils
Next:Common traffic routes for imported spermine and endosomal glypican-1-derived heparan sulfate in fibroblasts) - 【Back】【Close 】【Print】【Add to favorite 】
- Related Information
- Research articleCharacterization of maize spermine synthase 1 (ZmSPMS1): Evidence for dimerization and intracellular location09/24/2019
- Spermine detection from urine and blood serum using ionic self-assembly of benzimidazolium based dipod and dodecylsulfate09/10/2019
- Spermine-NBD as fluorescent probe for studies of the polyamine transport system in Leishmania donovani09/09/2019
- Fluorescence turn-off detection of spermine in biofluids using pepsin mediated synthesis of gold nanoclusters as a probe09/08/2019
- Spermine and spermidine are cytotoxic towards intestinal cell cultures, but are they a health hazard at concentrations found in foods?09/07/2019
- Colorimetric sensing towards spermine based on supramolecular pillar[5]arene reduced and stabilized gold nanoparticles09/06/2019
- The protective role of spermine against male reproductive aberrations induced by exposure to electromagnetic field – An experimental investigation in the rat09/05/2019
- Common traffic routes for imported spermine and endosomal glypican-1-derived heparan sulfate in fibroblasts09/04/2019
- Selective fluorescent probes for spermine and 1-adamantanamine based on the supramolecular structure formed between AIE-active molecule and cucurbit[n]urils09/02/2019


