Synthesis of novel monomeric graphene quantum dots and corresponding nanocomposite with molecularly imprinted polymer for electrochemical detection of an anticancerous ifosfamide drug.
暂无分享,去创建一个
[1] A. Paci,et al. Anodic oxidation of ifosfamide and cyclophosphamide: a biomimetic metabolism model of the oxazaphosphorinane anticancer drugs. , 2001, Bioorganic & medicinal chemistry letters.
[2] Nana Zhou,et al. Graphene quantum dot as a green and facile sensor for free chlorine in drinking water. , 2012, Analytical chemistry.
[3] Xiaoling Yang,et al. Graphene quantum dots: emergent nanolights for bioimaging, sensors, catalysis and photovoltaic devices. , 2012, Chemical communications.
[4] Sudip Malik,et al. Graphene quantum dot-doped polyaniline nanofiber as high performance supercapacitor electrode materials. , 2015, Chemical communications.
[5] Hamed Ghaedi,et al. Fabrication of a new electrochemical sensor based on a new nano-molecularly imprinted polymer for highly selective and sensitive determination of tramadol in human urine samples. , 2013, Biosensors & bioelectronics.
[6] I. Onal,et al. Nonconvulsive Status Epilepticus Due to Ifosfamide , 2006, The Annals of pharmacotherapy.
[7] D. Shinde,et al. Electrochemical resolution of multiple redox events for graphene quantum dots. , 2013, Angewandte Chemie.
[8] M. Sangaranarayanan,et al. Electroanalytical Sensor Based on Unmodified Screen-Printed Carbon Electrode for the Determination of Levo-Thyroxine , 2015 .
[9] Camelia Bala,et al. Screen-printed electrodes with electropolymerized Meldola Blue as versatile detectors in biosensors. , 2003, Biosensors & bioelectronics.
[10] G. Poggi,et al. Simultaneous determination of cyclophosphamide, ifosfamide, doxorubicin, epirubicin and daunorubicin in human urine using high-performance liquid chromatography/electrospray ionization tandem mass spectrometry: bioanalytical method validation. , 2008, Rapid communications in mass spectrometry : RCM.
[11] X. Qu,et al. Recent advances in graphene quantum dots for sensing , 2013 .
[12] Giovanni De Micheli,et al. Electrochemical Detection of Anti-Breast-Cancer Agents in Human Serum by Cytochrome P450-Coated Carbon Nanotubes , 2012, Sensors.
[13] G. Shen,et al. Renewable amperometric immunosensor for Schistosoma japonium antibody assay. , 2001, Analytical chemistry.
[14] A. Craft,et al. Ifosfamide, mesna, and nephrotoxicity in children. , 1993, Journal of clinical oncology : official journal of the American Society of Clinical Oncology.
[15] A. Paci,et al. Liquid chromatography-mass spectrometry assay for quantitation of ifosfamide and its N-deschloroethylated metabolites in rat microsomal medium. , 2005, Journal of chromatography. B, Analytical technologies in the biomedical and life sciences.
[16] K. Novoselov,et al. A roadmap for graphene , 2012, Nature.
[17] Jing Zhao,et al. Graphene quantum dots-based platform for the fabrication of electrochemical biosensors , 2011 .
[18] Liangxu Lin,et al. Creating high yield water soluble luminescent graphene quantum dots via exfoliating and disintegrating carbon nanotubes and graphite flakes. , 2012, Chemical communications.
[19] Jianrong Chen,et al. Surface functionalization of graphene quantum dots with small organic molecules from photoluminescence modulation to bioimaging applications: an experimental and theoretical investigation , 2013 .
[20] Feng Tan,et al. An electrochemical sensor based on molecularly imprinted polypyrrole/graphene quantum dots composite for detection of bisphenol A in water samples , 2016 .
[21] A. Paci,et al. Simultaneous quantification of preactivated ifosfamide derivatives and of 4-hydroxyifosfamide by high performance liquid chromatography-tandem mass spectrometry in mouse plasma and its application to a pharmacokinetic study. , 2015, Journal of chromatography. B, Analytical technologies in the biomedical and life sciences.
[22] Haluk Bingol,et al. Graphene Quantum Dots-based Photoluminescent Sensor: A Multifunctional Composite for Pesticide Detection. , 2015, ACS applied materials & interfaces.
[23] H. Razmi,et al. Graphene quantum dots as a new substrate for immobilization and direct electrochemistry of glucose oxidase: application to sensitive glucose determination. , 2013, Biosensors & bioelectronics.
[24] Chunru Wang,et al. Eco-friendly synthesis of size-controllable amine-functionalized graphene quantum dots with antimycoplasma properties. , 2013, Nanoscale.
[25] Miguel Valcárcel,et al. Graphene quantum dots in analytical science , 2015 .
[26] M. Prato,et al. A glutathione amperometric biosensor based on an amphiphilic fullerene redox mediator immobilised within an amphiphilic polypyrrole film , 2002 .
[27] M. Roushani,et al. Novel electrochemical sensor based on graphene quantum dots/riboflavin nanocomposite for the detection of persulfate , 2014 .
[28] Sergey A. Piletsky,et al. Electrochemical Sensors Based on Molecularly Imprinted Polymers , 2002 .
[29] Tianshu Zhou,et al. A novel composite of graphene quantum dots and molecularly imprinted polymer for fluorescent detection of paranitrophenol. , 2014, Biosensors & bioelectronics.
[30] H. Jürgens,et al. Unilateral nephrectomy and cisplatin as risk factors of ifosfamide-induced nephrotoxicity: analysis of 120 patients. , 1994, Journal of clinical oncology : official journal of the American Society of Clinical Oncology.
[31] Da Chen,et al. Graphene oxide: preparation, functionalization, and electrochemical applications. , 2012, Chemical reviews.
[32] Xiaoya Liu,et al. A facile approach for synthesizing molecularly imprinted graphene for ultrasensitive and selective electrochemical detecting 4-nitrophenol. , 2015, Analytica chimica acta.
[33] T. Sheppard,et al. Recent developments in amide synthesis: direct amidation of carboxylic acids and transamidation reactions , 2013 .
[34] S Zhang,et al. Materials and techniques for electrochemical biosensor design and construction. , 2000, Biosensors & bioelectronics.
[35] G. Shi,et al. Aryl-modified graphene quantum dots with enhanced photoluminescence and improved pH tolerance. , 2013, Nanoscale.
[36] Xi Zhou,et al. Facile Synthesis of Molecularly Imprinted Graphene Quantum Dots for the Determination of Dopamine with Affinity-Adjustable. , 2015, ACS applied materials & interfaces.