2022
DOI: 10.1016/j.snb.2022.132062
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Near-field electrospinning of polymer/phage whispering gallery mode microfiber resonators for label-free biosensing

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Cited by 15 publications
(5 citation statements)
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“…This paper-based material is easy to prepare and can be used for in situ detection. In another example, a streptavidin-binding peptide was displayed on the pVIII protein of M13 phages for the label-fee optical detection of streptavidin [65]. Polymer biosensor PVA/M13 fibers were prepared in a one-step process using a blend near-field electrospinning technique (blend NFES), with the streptavidin-specific M13 phage as affinity capture agent, and rhodamine 6G as a high-yield fluorescent signal source.…”
Section: M13 Phage As Capture Antibodymentioning
confidence: 99%
“…This paper-based material is easy to prepare and can be used for in situ detection. In another example, a streptavidin-binding peptide was displayed on the pVIII protein of M13 phages for the label-fee optical detection of streptavidin [65]. Polymer biosensor PVA/M13 fibers were prepared in a one-step process using a blend near-field electrospinning technique (blend NFES), with the streptavidin-specific M13 phage as affinity capture agent, and rhodamine 6G as a high-yield fluorescent signal source.…”
Section: M13 Phage As Capture Antibodymentioning
confidence: 99%
“…Whispering gallery mode (WGM) resonators have garnered interest as optical biosensors because of their ability to quickly identify substances without the need for labeling [90]. Polyvinyl alcohol (PVA) bioreceptors containing M13 bacteriophage were prepared by near-field electrospinning [91]. Streptavidin-binding phage and rhodamine 6 G were used as representative virus-based biocapture agents and potent fluorescent sources, respectively.…”
Section: Optical Biosensorsmentioning
confidence: 99%
“…[121] Chen et al on the other hand, introduced an artificial neural network technique to compensate the nonlinear error due to temperature-induced geometrical deformation of the MKR when it is used for current sensing, which provides an effective and flexible method to improve the performance of the sensor in real time. [122] So far, some microfiber-based resonators have also proved to be useful for biomass detection, for example, a label-free methylation-specific sensor based on a silicon micro-ring resonator can be used for the detection and quantification of DNA methylation biomarkers in bladder cancer, [123] functionalized whispering gallery mode resonators exhibit specific labelfree biosensing of streptavidin, [124] encapsulated thin-walled microbubble resonators can perform label-free detection of cardiac troponin-I for label-free specific detection [125] and so on. In addition, since MKRs are sensitive to external refractive index changes, MKRs as a type of fiber-optic micro-resonators also have excellent potential for biometric measurements.…”
Section: Other Sensingmentioning
confidence: 99%
“…So far, some microfiber‐based resonators have also proved to be useful for biomass detection, for example, a label‐free methylation‐specific sensor based on a silicon micro‐ring resonator can be used for the detection and quantification of DNA methylation biomarkers in bladder cancer, [ 123 ] functionalized whispering gallery mode resonators exhibit specific label‐free biosensing of streptavidin, [ 124 ] encapsulated thin‐walled microbubble resonators can perform label‐free detection of cardiac troponin‐I for label‐free specific detection [ 125 ] and so on. In addition, since MKRs are sensitive to external refractive index changes, MKRs as a type of fiber‐optic micro‐resonators also have excellent potential for biometric measurements.…”
Section: Mkr Sensing Applicationsmentioning
confidence: 99%