Detection of Ochratoxin a Using Molecular Beacons and Real-Time PCR Thermal Cycler

被引:31
|
作者
Sanzani, Simona Marianna [1 ]
Reverberi, Massimo [2 ]
Fanelli, Corrado [2 ]
Ippolito, Antonio [1 ]
机构
[1] Univ Bari Aldo Moro, Dept Soil Plant & Food Sci, I-70126 Bari, Italy
[2] Univ Roma La Sapienza, Dept Environm Biol, I-00185 Rome, Italy
来源
TOXINS | 2015年 / 7卷 / 03期
关键词
OTA detection; fluorescent dyes; aptabeacon; Real-time PCR thermal cycler; food safety; PENICILLIUM-EXPANSUM; DNA APTAMER; APTASENSOR; BIOSENSOR; PATULIN; ASSAY;
D O I
10.3390/toxins7030812
中图分类号
TS2 [食品工业];
学科分类号
0832 ;
摘要
We developed a simple and cheap assay for quantitatively detecting ochratoxin A (OTA) in wine. A DNA aptamer available in literature was used as recognition probe in its molecular beacon form, i.e., with a fluorescence-quenching pair at the stem ends. Our aptabeacon could adopt a conformation allowing OTA binding, causing a fluorescence rise due to the increased distance between fluorophore and quencher. We used real-time PCR equipment for capturing the signal. With this assay, under optimized conditions, the entire process can be completed within 1 h. In addition, the proposed system exhibited a good selectivity for OTA against other mycotoxins (ochratoxin B and aflatoxin M1) and limited interference from aflatoxin B1 and patulin. A wide linear detection range (0.2-2000 mu M) was achieved, with LOD = 13 nM, r = 0.9952, and R-2 = 0.9904. The aptabeacon was also applied to detect OTA in red wine spiked with the same dilution series. A linear correlation with a LOD = 19 nM, r = 0.9843, and R-2 = 0.9708 was observed, with recoveries in the range 63%-105%. Intra- and inter-day assays confirmed its reproducibility. The proposed biosensor, although still being finalized, might significantly facilitate the quantitative detection of OTA in wine samples, thus improving their quality control from a food safety perspective.
引用
收藏
页码:812 / 820
页数:9
相关论文
共 50 条
  • [31] Real-time investigation of nucleic acids phosphorylation process using molecular beacons
    Tang, ZW
    Wang, KM
    Tan, WH
    Ma, CB
    Li, J
    Liu, LF
    Guo, QP
    Meng, XX
    NUCLEIC ACIDS RESEARCH, 2005, 33 (11) : 1 - 6
  • [32] Real-time PCR with molecular beacons provides a highly accurate assay for detection of Tay-Sachs alleles in single cells
    Rice, JE
    Sanchez, JA
    Pierce, KE
    Wangh, LJ
    PRENATAL DIAGNOSIS, 2002, 22 (12) : 1130 - 1134
  • [33] The detection of horse and donkey using real-time PCR
    Chisholm, J
    Conyers, C
    Booth, C
    Lawley, W
    Hird, H
    MEAT SCIENCE, 2005, 70 (04) : 727 - 732
  • [34] Detection of Krill in Foods Using Real-Time PCR
    Eischeid, Anne C.
    FOOD ANALYTICAL METHODS, 2022, 15 (11) : 3189 - 3195
  • [35] Detection of Krill in Foods Using Real-Time PCR
    Anne C. Eischeid
    Food Analytical Methods, 2022, 15 : 3189 - 3195
  • [36] Molecular beacon real-time PCR detection of swine viruses
    McKillen, John
    Hjertner, Benit
    Millar, Andrena
    McNeilly, Francis
    Beldak, Sdndor
    Adair, Brian
    Allan, Gordon
    JOURNAL OF VIROLOGICAL METHODS, 2007, 140 (1-2) : 155 - 165
  • [37] Real- time PCR assay by light cycler for the detection of plasmodium species
    Dupont, S.
    Berry, A.
    Fondere, J. M.
    Segarra, C.
    Maugard, C.
    Levayer, T.
    VOX SANGUINIS, 2006, 91 : 79 - 79
  • [38] Rapid detection of Shiga toxin-producing bacteria in feces by multiplex PCR with molecular beacons on the smart cycler
    Bélanger, SD
    Boissinot, M
    Ménard, C
    Picard, FJ
    Bergeron, MG
    JOURNAL OF CLINICAL MICROBIOLOGY, 2002, 40 (04) : 1436 - 1440
  • [39] Molecular detection of benzimidazole resistance in Haemonchus contortus using real-time PCR and pyrosequencing
    von Samson-Himmelstjerna, G.
    Walsh, T. K.
    Donnan, A. A.
    Carriere, S.
    Jackson, F.
    Skuce, P. J.
    Rohn, K.
    Wolstenholme, A. J.
    PARASITOLOGY, 2009, 136 (03) : 349 - 358
  • [40] Real-time PCR detection of telomerase activity using specific molecular beacon probes
    Deming Kong
    Yawei Jin
    Yuji Yin
    Huaifeng Mi
    Hanxi Shen
    Analytical and Bioanalytical Chemistry, 2007, 388 : 699 - 709