Electroanalysis · 2007 · 212 citations · 132 references
NanoparticlesNanosensorsEngineeringMagnetic ParticlesAnalytical MicrosystemsBiomedical EngineeringBiosensorsMagnetic SensorBiosensing SystemsBioanalysisNano‐ Magnetic ParticlesAnalytical ChemistryNanosensorBiophysicsSensor ApplicationsElectrochemical BiosensorsBiomedical SensorsMagnetic NanoparticlesBiomedical DiagnosticsTiny ParticlesElectroanalytical SensorMedicineNanomagnetism
Magnetic particles at micro- and nanoscale, with high surface area and paramagnetic or superparamagnetic properties, enable purification and detection of biomolecules across diverse samples. The article reviews electrochemical biosensors that use magnetic particles to detect biomolecules and cells. The review describes electrochemical strategies that integrate magnetic particles as labels, enabling simultaneous magnetic separation and electrochemical detection of bioentities.
Abstract This article reviews the development of electrochemical biosensors, incorporating magnetic particles, for detecting biomolecules (nucleic acids and proteins) and cells. Magnetic particles (MPs) of micro‐ and nanoscale, mimicking the size of molecules in nature, possess interesting characteristics that facilitate the purification and detection of biomolecules in a wide range of samples. In particular, the high surface area and the paramagnetic or superparamagnetic properties of these tiny particles provide an attractive technology platform for the design of electrochemical biosensors. Examples of electrochemistry‐based approaches to achieve the separation and detection of bioentities utilizing MPs are described. Emphasis is placed on the strategies to incorporate the electrochemical labels to the MPs and the methods to achieve the dual function of electrochemical detection and magnetic separation. The protocols to make MPs as labels in biological sensors are also discussed.
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In vitro selection of RNA molecules that bind specific ligands
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Biology, Magnetism, Engineering +11