Carbon nanotube biosensors
Биосенсоры на основе углеродных нанотрубок
2015-10-27
SCID: 54.1/e8wvrsdr
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biocompatibility and toxicitybiomolecule immobilizationcancer biomarker detectioncarbon nanotube biosensorsnanomaterial functionalization
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Abstract (AI)
Nanomaterials possess unique features which make them particularly attractive for biosensing applications. In particular, carbon nanotubes (CNTs) can serve as scaffolds for immobilization of biomolecules at their surface, and combine several exceptional physical, chemical, electrical, and optical characteristics properties which make them one of the best suited materials for the transduction of signals associated with the recognition of analytes, metabolites, or disease biomarkers. Here we provide a comprehensive review on these carbon nanostructures, in which we describe their structural and physical properties, functionalization and cellular uptake, biocompatibility, and toxicity issues. We further review historical developments in the field of biosensors, and describe the different types of biosensors which have been developed over time, with specific focus on CNT-conjugates engineered for biosensing applications, and in particular detection of cancer biomarkers.
Key Findings
1
CNT-conjugate biosensors have been developed for diverse detection approaches, with particular emphasis on cancer biomarker detection.
2
CNTs combine distinctive physical, chemical, electrical, and optical properties, making them highly suitable materials for biosensor development.
3
Carbon nanotubes provide surfaces for biomolecule immobilization and efficient transduction of analyte, metabolite, and disease-biomarker recognition signals.
4
The paper surveys historical biosensor development and the structural and physical properties underlying carbon nanotube-based sensing.
5
The review examines CNT functionalization, cellular uptake, biocompatibility, and toxicity as critical factors governing biosensor applications.
Research Object
carbon nanotube-based biosensors and CNT conjugates for biosensing applications
Research Subject
their structural, physical, functionalization, biocompatibility, toxicity, signal-transduction, and cancer-biomarker detection characteristics
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2015-10-27
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