TY - JOUR
T1 - Biomimetic magnetic sensor for electrochemical determination of scombrotoxin in fish
AU - Hassan, Amal H.A.
AU - Sappia, Luciano
AU - Moura, Silio Lima
AU - Ali, Fatma H.M.
AU - Moselhy, Walaa A.
AU - Sotomayor, Maria del Pilar Taboada
AU - Pividori, Maria Isabel
N1 - Publisher Copyright:
© 2018 Elsevier B.V.
PY - 2019/3/1
Y1 - 2019/3/1
N2 - This work addresses a novel, rapid and cost-effective approach for the electrochemical sensing of scombrotoxin (histamine) in fish based on magnetic molecularly imprinted polymer (magnetic-MIP). The histamine magnetic-MIP was synthesized by the core-shell method using histamine as a template, and 2-vinyl pyridine as functional monomer. The magnetic-MIP was characterized by TEM, SEM, and confocal microscopy. Additionally, the binding capacity of magnetic-MIP towards histamine was investigated and compared with magnetic non-molecularly imprinted polymer (magnetic-NIP). This biomimetic material merged the advantages of MIPs and magnetic particles (MPs), including low cost of production, stability, high binding capacity and can be easily separated by the aid of a permanent magnet. The magnetic-MIP was integrated into magneto-actuated electrodes for the direct electrochemical detection of histamine preconcentrated from fish samples. The results revealed that this approach succeeded in the preconcentration and determination of histamine with a LOD as low as 1.6 x 10(-6) mg L-1, much lower than the index for fish spoilage (50 mg kg(-1)) accordingly to the legislation. Furthermore, the analytical performance was validated for the determination of histamine in scombroid fish samples with recovery values ranging from 96.8 to 102.0 %, confirm so it can be applied easily for routine food examination.
AB - This work addresses a novel, rapid and cost-effective approach for the electrochemical sensing of scombrotoxin (histamine) in fish based on magnetic molecularly imprinted polymer (magnetic-MIP). The histamine magnetic-MIP was synthesized by the core-shell method using histamine as a template, and 2-vinyl pyridine as functional monomer. The magnetic-MIP was characterized by TEM, SEM, and confocal microscopy. Additionally, the binding capacity of magnetic-MIP towards histamine was investigated and compared with magnetic non-molecularly imprinted polymer (magnetic-NIP). This biomimetic material merged the advantages of MIPs and magnetic particles (MPs), including low cost of production, stability, high binding capacity and can be easily separated by the aid of a permanent magnet. The magnetic-MIP was integrated into magneto-actuated electrodes for the direct electrochemical detection of histamine preconcentrated from fish samples. The results revealed that this approach succeeded in the preconcentration and determination of histamine with a LOD as low as 1.6 x 10(-6) mg L-1, much lower than the index for fish spoilage (50 mg kg(-1)) accordingly to the legislation. Furthermore, the analytical performance was validated for the determination of histamine in scombroid fish samples with recovery values ranging from 96.8 to 102.0 %, confirm so it can be applied easily for routine food examination.
KW - Electrochemical determination
KW - Fish
KW - Food safety
KW - Histamine
KW - Magnetic-MIP
KW - Scombrotoxin
UR - http://www.scopus.com/inward/record.url?scp=85056723247&partnerID=8YFLogxK
U2 - 10.1016/j.talanta.2018.10.066
DO - 10.1016/j.talanta.2018.10.066
M3 - Article
C2 - 30609635
SN - 0039-9140
VL - 194
SP - 997
EP - 1004
JO - Talanta
JF - Talanta
ER -