A reliable ratiometric fluorescence sensing of heparin and its antidote based on cationic carbon quantum dots and acid red 87
暂无分享,去创建一个
Mohamed M. El-wekil | M. Alanazi | Khalid Alhazzani | Abdulaziz A Alsayyari | Saleh A. Alanazi | A. Alaseem | S. A. Al Awadh | Alanazi A.Z. | Saleh A. Alanazi
[1] Mohamed M. El-wekil,et al. Functionalized vanadium disulfide quantum dots as a novel dual-mode sensor for ultrasensitive and highly selective determination of rutin , 2023, Microchemical Journal.
[2] Xiangke Wang,et al. Economical amidoxime-functionalized non-porous β-cyclodextrin polymer for selective detection and extraction of uranium , 2023, Chemical Engineering Journal.
[3] H. Hassan,et al. Bifunctional ratiometric sensor based on highly fluorescent nitrogen and sulfur biomass-derived carbon nanodots fabricated from manufactured dairy product as a precursor. , 2023, Spectrochimica acta. Part A, Molecular and biomolecular spectroscopy.
[4] Mohamed M. El-wekil,et al. Bifunctional nanoprobe for dual-mode detection based on blue emissive iron and nitrogen co-doped carbon dots as a peroxidase-mimic platform , 2022, Talanta.
[5] Xiaoyan Liu,et al. Flower-like ZIF-8 enhance the peroxidase-like activity of nanoenzymes at neutral pH for detection of heparin and protamine. , 2022, Talanta.
[6] Ramadan H. Ali,et al. Fluorometric and electrochemical dual-mode detection of toxic flavonoid rutin based on new nitrogen and sulfur co-doped carbon dots: Enhanced selectivity based on masking the interfering flavonoids with BSA complexation , 2022, Journal of Food Composition and Analysis.
[7] Ramadan H. Ali,et al. Double-signal quantification of amoxicillin based on interaction with 4-aminoantipyrine at copper and nitrogen co-doped carbon quantum dots as an artificial nanozyme , 2022, Microchimica Acta.
[8] Xiang-Juan Kong,et al. Terbium metal-organic framework/bovine serum albumin capped gold nanoclusters-based dual-emission reverse change ratio fluorescence nanoplatform for fluorimetric and colorimetric sensing of heparin and chondroitin sulfate , 2021, Sensors and Actuators B: Chemical.
[9] Xiaoling Zhang,et al. An electrostatically regulated organic self-assembly for rapid and sensitive detection of heparin in serum. , 2021, Analytical methods : advancing methods and applications.
[10] Xia Cheng,et al. PEI modified orange emissive carbon dots with excitation-independent fluorescence emission for cellular imaging and siRNA delivery , 2021 .
[11] A. Alanazi,et al. Ultrasensitive and selective molecularly imprinted electrochemical oxaliplatin sensor based on a novel nitrogen-doped carbon nanotubes/Ag@cu MOF as a signal enhancer and reporter nanohybrid , 2021, Microchimica Acta.
[12] Mohamed M. El-wekil,et al. Simultaneous electrochemical detection of azithromycin and hydroxychloroquine based on VS2 QDs embedded N, S @graphene aerogel/cCNTs 3D nanostructure , 2021, Microchemical Journal.
[13] Mohamed M. El-wekil,et al. Design of "Turn On" fluorometric nanoprobe based on nitrogen doped graphene quantum dots modified with β-cyclodextrin and vitamin B6 cofactor for selective sensing of dopamine in human serum. , 2020, Spectrochimica acta. Part A, Molecular and biomolecular spectroscopy.
[14] Mohamed M. El-wekil,et al. Nitrogen and sulfur co-doped graphene quantum dots/nanocellulose nanohybrid for electrochemical sensing of anti-schizophrenic drug olanzapine in pharmaceuticals and human biological fluids. , 2020, International journal of biological macromolecules.
[15] Ramadan H. Ali,et al. Enzyme-free and label-free strategy for electrochemical oxaliplatin aptasensing by using rGO/MWCNTs loaded with AuPd nanoparticles as signal probes and electro-catalytic enhancers. , 2020, Talanta.
[16] C. Huang,et al. Resonance light scattering technique for sensitive detection of heparin using plasmonic Cu2-xSe nanoparticles. , 2020, Talanta.
[17] H. R. Ali,et al. Development of dual function polyamine-functionalized carbon dots derived from one step green synthesis for quantitation of Cu2+ and S2− ions in complicated matrices with high selectivity , 2020, Analytical and Bioanalytical Chemistry.
[18] H. R. Ali,et al. Colorimetric and fluorimetric (dual-mode) nanoprobe for the determination of pyrogallol based on the complexation with copper(II)- and nitrogen-doped carbon dots , 2019, Microchimica Acta.
[19] Mohamed M. El-wekil,et al. Modification of N,S co-doped graphene quantum dots with p-aminothiophenol-functionalized gold nanoparticles for molecular imprint-based voltammetric determination of the antiviral drug sofosbuvir , 2019, Microchimica Acta.
[20] Tao Zhang,et al. PEGylated protamine-based adsorbing improves the biological properties and stability of tetrahedral framework nucleic acids. , 2019, ACS applied materials & interfaces.
[21] Mohamed M. El-wekil,et al. Tunable ternary nanocomposite prepared by electrodeposition for biosensing of centrally acting reversible acetyl cholinesterase inhibitor donepezil hydrochloride in real samples , 2019, Colloids and Surfaces A: Physicochemical and Engineering Aspects.
[22] Mohamed M. El-wekil,et al. Applications of Fourier transform infrared spectroscopic method for simultaneous quantitation of some hypoglycemic drugs in their binary mixtures. , 2019, Spectrochimica acta. Part A, Molecular and biomolecular spectroscopy.
[23] Shingo Nakamura,et al. Polyelectrolyte Complexes of Natural Polymers and Their Biomedical Applications , 2019, Polymers.
[24] Lian Xia,et al. Aggregation-induced emission enhancement of gold nanoclusters triggered by silicon nanoparticles for ratiometric detection of protamine and trypsin. , 2019, Analytica chimica acta.
[25] Chen-zhong Li,et al. Fluorometric determination of hydroquinone by using blue emitting N/S/P-codoped carbon dots , 2018, Microchimica Acta.
[26] H. R. Ali,et al. A rapid Fourier transform infrared spectroscopic method for analysis of certain proton pump inhibitors in binary and ternary mixtures. , 2018, Spectrochimica acta. Part A, Molecular and biomolecular spectroscopy.
[27] Li Li,et al. Simple and selective determination of 6-thioguanine by using polyethylenimine (PEI) functionalized carbon dots. , 2018, Talanta.
[28] Hanbing Rao,et al. Colorimetric and fluorometric detection of protamine by using a dual-mode probe consisting of carbon quantum dots and gold nanoparticles , 2017, Microchimica Acta.
[29] H. R. Ali,et al. Highly sensitive and selective complexation based voltammetric methods for the analysis of rabeprazole sodium in real samples , 2017 .
[30] S. Yao,et al. “Turn on-off” fluorescent sensor for protamine and heparin based on label-free silicon quantum dots coupled with gold nanoparticles , 2015 .
[31] Shouzhuo Yao,et al. Gold nanoparticle coupled with fluorophore for ultrasensitive detection of protamine and heparin. , 2013, Talanta.
[32] H. Luo,et al. A turn-on fluorescent sensor for sensitive and selective detection of sodium dodecyl sulfate based on the eosin Y/polyethyleneimine system. , 2013, Analytical chemistry.
[33] Q. Liao,et al. Determination of Heparin in Plasma by HPLC Coupled with Resonance Light Scattering Detection , 2013, Chromatographia.
[34] M. Meistrich,et al. Roles of transition nuclear proteins in spermiogenesis , 2003, Chromosoma.
[35] G. Gravlee,et al. Anticoagulation monitoring during cardiac surgery: a review of current and emerging techniques. , 1999, Anesthesiology.
[36] T. Wakefield,et al. Protamine pretreatment attenuation of hemodynamic and hematologic effects of heparin-protamine interaction. A prospective randomized study in human beings undergoing aortic reconstructive surgery. , 1986, Journal of vascular surgery.
[37] Mohamed M. El-wekil,et al. A VALIDATED SPECTROFLUORIMETRIC METHOD FOR THE ASSAY OF SOME PROTON PUMP INHBITORS USING SODIUM 1, 2- NAPHTOQUINONE-4-SULPHONATE , 2014 .
[38] Raz Jelinek,et al. Carbohydrate biosensors. , 2004, Chemical reviews.
[39] D. Hoppensteadt,et al. An update on heparins at the beginning of the new millennium. , 2000, Seminars in thrombosis and hemostasis.