2019
DOI: 10.1088/1757-899x/474/1/012060
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Chitosan blend iron oxide nanostructure-based biosensor for healthy & malignant tissue glucose/urea detection

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Cited by 12 publications
(6 citation statements)
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“…[26][27][28] Apart from GO, CS extracted from natural sources has also shown promising potential in biosensing applications. 29 Owing to the pH-sensitivity, the hydrophilic/hydrophobic properties of CS switch in response to pH change. [30][31][32] Among other pH-sensitive hydrogels, chitosan has a faster rate of responsiveness.…”
Section: Nanoscale Horizonsmentioning
confidence: 99%
“…[26][27][28] Apart from GO, CS extracted from natural sources has also shown promising potential in biosensing applications. 29 Owing to the pH-sensitivity, the hydrophilic/hydrophobic properties of CS switch in response to pH change. [30][31][32] Among other pH-sensitive hydrogels, chitosan has a faster rate of responsiveness.…”
Section: Nanoscale Horizonsmentioning
confidence: 99%
“…Biosensors have also been widely employed in tissue engineering to modulate cell polarity, to tune the cellular functions, detection of biomolecules, and diagnosis of tissue disease 228 . Recently, various hybrid materials prepared using chitosan, gold NPs, graphene, and IONPs have been utilized to design novel biosensors for glucose detection, 229 ROS detection, 230 catecholamine neurotransmitters in brain tissues, 231 extracellular vesicles detection, 232 cellular detection of hydrogen peroxide, 233 glucose/urea detection, 234 tumor necrosis factor‐α, 235 and multiple immune biomarkers 236 in biological samples.…”
Section: Applicationsmentioning
confidence: 99%
“…The urease enzyme was entrapped on iron oxide nanoparticle with the help of PPy by nanofabrication technique. This nanocomposite urea biosensor has a potential application in clinical diagnosis [ 117 ]. Another direct current voltage based unsophisticated graphene polymorphs sensor was fabricated.…”
Section: Classification Of Urea Biosensorsmentioning
confidence: 99%