Detection of chloramphenicol using a novel apta-sensing platform based on aptamer terminal-lock in milk samples

In this paper, a novel apta-sensing colorimetric platform for rapid detection of chloramphenicol (CAP) in raw milk was developed. The AuNPs are stabilized by short-sequences aptamers against salt induced aggregation and this is the base of most colorimetric aptasensors development. However, the stat...

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Veröffentlicht in:Analytica chimica acta 2018-12, Vol.1039, p.116-123
Hauptverfasser: Javidi, Mahbobeh, Housaindokht, Mohammad Reza, Verdian, Asma, Razavizadeh, Bibi Marzieh
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Sprache:eng
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Zusammenfassung:In this paper, a novel apta-sensing colorimetric platform for rapid detection of chloramphenicol (CAP) in raw milk was developed. The AuNPs are stabilized by short-sequences aptamers against salt induced aggregation and this is the base of most colorimetric aptasensors development. However, the statute shows low sensitivity for the long-sequence aptamers. Herein, we propose an alternative strategy that use intact long-sequence aptamers for develop a highly sensitive AuNP-based colorimetric aptasensor. Determination of CAP in animal derived foods is an urgent demanded in the effort to minimize food safety risk. Therefore, we chose it as the representative model to construct the colorimetric sensing platform based on aptamer terminal-lock (ATL). In the ATL, intact aptamer was used as a molecular recognition element and a short-sequence oligonucleotide serving as a locker probe (LP) which is complementary of aptamer terminal fragments. By formation of aptamer/target complex, the LP leaves the ATL and adsorbs on the surface of AuNPs, leading to the AuNPs stabilization against salt-induced aggregation. This aptasensor shows a low limit of detection (0.03 nM) with high selectivity toward CAP. Moreover, the designed sensing platform was successfully applied to detect CAP in the milk samples. These results demonstrate our introduced label-free method for CAP detection is simple, sensitive, and highly selective. [Display omitted] •For the first time, structure terminal-lock molecular switch for detection CAP was used.•A method for applying of long aptamers with high sensitivity was provided.•This colorimetric aptasensor has limit of detection as low as 18.3 pM.•Aptasensor was used for the determination of CAP in real samples.
ISSN:0003-2670
1873-4324
DOI:10.1016/j.aca.2018.07.041