A highly sensitive electrochemical biosensor for chlorpyrifos pesticide detection using the adsorbent nanomatrix contain the human serum albumin and the Pd:CdTe quantum dots
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[1] Meysam Safari,et al. Signal amplification of novel sandwich-type genosensor via catalytic redox-recycling on platform MWCNTs/Fe3O4@TMU-21 for BRCA1 gene detection. , 2021, Talanta.
[2] Y. Yamini,et al. Application of magnetic nanomaterials in magnetic in-tube solid-phase microextraction. , 2021, Talanta.
[3] M. Gholivand,et al. Label-free electrochemical immunosensor for sensitive HER2 biomarker detection using the core-shell magnetic metal-organic frameworks , 2020 .
[4] D. Tian,et al. Three-dimensional mesoporous dendritic fibrous nanosilica as a highly efficient DNA amplification platform for ultrasensitive detection of chlorpyrifos residues , 2020 .
[5] Fangquan Xia,et al. Sensitive electrochemiluminescence aptasensor for chlorpyrifos detection based on resonance energy transfer between MoS2/CdS nanospheres and Ag/CQDs , 2020 .
[6] M. Kamyabi,et al. An ultra-sensitive electrochemiluminescence platform based on ZnONPs/Ni-foam and K2S2O8 for detection of chlorpyrifos , 2020 .
[7] Zahra Mehrani,et al. Determination of copper in food and water sources using poly m-phenylenediamine/CNT electrospun nanofiber , 2019, Microchemical Journal.
[8] E. Levin,et al. PERINATAL DIAZINON EXPOSURE COMPROMISES THE DEVELOPMENT OF ACETYLCHOLINE AND SEROTONIN SYSTEMS. , 2019, Toxicology.
[9] Xiaobo Zhang,et al. Sandwich-type electrochemical immunosensor based on Au@Pt DNRs/NH2-MoSe2 NSs nanocomposite as signal amplifiers for the sensitive detection of alpha-fetoprotein. , 2019, Bioelectrochemistry.
[10] A. Erdem,et al. PAMAM dendrimer modified screen printed electrodes for impedimetric detection of miRNA-34a , 2019, Microchemical Journal.
[11] M. Shahlaei,et al. Facile aqueous synthesis of Ni-doped CdTe quantum dots as fluorescent probes for detecting pyrazinamide in plasma , 2019, Microchemical Journal.
[12] I. Costabeber,et al. Validation of a multi-residue method and estimation of measurement uncertainty of pesticides in drinking water using gas chromatography-mass spectrometry and liquid chromatography-tandem mass spectrometry. , 2019, Journal of chromatography. A.
[13] E. Rodríguez-Castellón,et al. Application of a nickel hydroxide gold nanoparticles screen-printed electrode for impedimetric sensing of glucose in artificial saliva , 2019, Journal of Electroanalytical Chemistry.
[14] M. Shahlaei,et al. Rapid determination of the anti-cancer agent Gemcitabine in biological samples by fluorescence sensor based on Au-doped CdTe , 2018, Journal of Molecular Liquids.
[15] Mojtaba Shamsipur,et al. Modification of gold surface by electrosynthesized mono aza crown ether substituted catechol-terminated alkane dithiol and its application as a new electrochemical sensor for trace detection of cadmium ions. , 2018, Colloids and surfaces. B, Biointerfaces.
[16] Jagriti Narang,et al. Ultrasensitive electrochemical immuno-sensing platform based on gold nanoparticles triggering chlorpyrifos detection in fruits and vegetables. , 2018, Biosensors & bioelectronics.
[17] Min-Ho Lee,et al. Label-Free Impedance Sensing of Aflatoxin B1 with Polyaniline Nanofibers/Au Nanoparticle Electrode Array , 2018, Sensors.
[18] S. Mittal,et al. A Surface Expressed Alkaline phosphatase Biosensor modified with Flower shaped ZnO for the Detection of Chlorpyrifos , 2018 .
[19] J. Paton,et al. Neuroreflex control of cardiovascular function is impaired after acute poisoning with chlorpyrifos, an organophosphorus insecticide: Possible short and long term clinical implications. , 2018, Toxicology.
[20] Mei Yang,et al. A regenerative and selective electrochemical aptasensor based on copper oxide nanoflowers-single walled carbon nanotubes nanocomposite for chlorpyrifos detection. , 2018, Talanta.
[21] Xiangyou Wang,et al. Electrochemical acetylcholinesterase biosensor based on multi-walled carbon nanotubes/dicyclohexyl phthalate modified screen-printed electrode for detection of chlorpyrifos , 2017 .
[22] Muhammet Guler,et al. Determination of malation, methidathion, and chlorpyrifos ethyl pesticides using acetylcholinesterase biosensor based on Nafion/Ag@rGO-NH2 nanocomposites , 2017 .
[23] J. Zhao,et al. A nanostructured electrochemical aptasensor for highly sensitive detection of chlorpyrifos , 2017 .
[24] Mojtaba Shamsipur,et al. Impedimetric monitoring of apoptosis using cytochrome-aptamer bioconjugated silver nanocluster. , 2017, Biosensors & bioelectronics.
[25] Meenakshi Sharma,et al. Biocompatible ZrO2- reduced graphene oxide immobilized AChE biosensor for chlorpyrifos detection , 2016 .
[26] Jing-Fu Qiu,et al. A novel electrochemical immunosensor for highly sensitive detection of aflatoxin B1 in corn using single-walled carbon nanotubes/chitosan. , 2016, Food chemistry.
[27] F. Jiang,et al. Spectroscopic, structural and thermodynamic properties of chlorpyrifos bound to serum albumin: A comparative study between BSA and HSA. , 2012, Journal of photochemistry and photobiology. B, Biology.
[28] Shi Li,et al. Amperometric biosensor for aflatoxin B1 based on aflatoxin-oxidase immobilized on multiwalled carbon nanotubes , 2011 .
[29] M. Aldissi,et al. Challenges of electrochemical impedance spectroscopy in protein biosensing. , 2009, Analytical chemistry.
[30] D. Ray,et al. Albumin binding as a potential biomarker of exposure to moderately low levels of organophosphorus pesticides , 2008, Biomarkers.
[31] Xingguo Chen,et al. Probing the binding of scutellarin to human serum albumin by circular dichroism, fluorescence spectroscopy, FTIR, and molecular modeling method. , 2004, Biomacromolecules.
[32] K. Racke,et al. Factors Affecting the Hydrolytic Degradation of Chlorpyrifos in Soil , 1996 .