Back to results
Bibliographic record · Consultation and access
Artículo

High-sensitive and disposable myocardial infarction biomarker immunosensor with optofluidic microtubule lasing

Niu Panpan et al · Wiley · 2022

Open access available
Quick overview. Review the resource’s basic details, then access the content using the main button. This page shows only the information needed to identify, cite, and open the work.
Serial publication

3-D near-field imaging of guided modes in nanophotonic waveguides

This serial publication contains 146 related contents.

Resource access

Open the content from the main option or choose another available source.

DOAJ DOAJ Articles
Entrar por DOAJ
Main access

Open access available

Recurso identificado como acceso abierto, sin confirmar automáticamente si es texto completo directo.
Open resource

Summary

Descripción general del contenido del recurso.

The early diagnosis of myocardial infarction can significantly improve the survival rate in emergency treatment, which is mainly implemented by the immunoassay for myocardial infarction biomarkers such as cardiac troponins in blood. In this work, a disposable optofluidic microtubule whispering gallery mode (WGM) immunosensor for label-free cardiac troponin I-C (cTnI-C) complex detection has been proposed and demonstrated with active interrogation enhancement. The disposable microtubule is simply fabricated by a silica capillary with pressurized tapering technology for thin-wall, and the cTnI antibodies are immobilized on the inner wall surface of the microtubule through the self-adherent polydopamine substrate. By configuring the two coupling microfibers, the double-fiber-coupled microtubule cavity can serve as a tunable filter for the mutual-coupled polarimetric fiber ring laser (FRL), whose output laser wavelength is determined by the cTnI-C concentration in the optofluidic microtubule with inherent microfluidic channel. Due to the cyclic-cumulative gain of the FRL, the characteristic resonant peak of optical sensing signal is enhanced in the spectral width compression and the optical signal-to-noise ratio improvement, and therefore the optical immunosensor for cTnI-C can be achieved by tracking the output laser wavelength of the FRL conveniently. The dynamic binding and unbinding process of cTnI-C antigen–antibody is illustrated by monitoring the lasing peak wavelength continuously. Our all-fiber immunosensor demonstrated here has the advantages of fast label-free detection, real-time monitor, high sensitivity and disposable sensing element, which can be an innovative detecting tool in early diagnosis of myocardial infarction.

How to cite

Elegí el formato que necesitás y copiá la referencia al portapapeles.

APA 7

al, N. P. E. (2022). High-sensitive and disposable myocardial infarction biomarker immunosensor with optofluidic microtubule lasing. https://doi.org/10.1515/nanoph-2022-0208

MLA

al, Niu Panpan et. "High-sensitive and disposable myocardial infarction biomarker immunosensor with optofluidic microtubule lasing." 2022. https://doi.org/10.1515/nanoph-2022-0208.

Chicago

al, Niu Panpan et. 2022. "High-sensitive and disposable myocardial infarction biomarker immunosensor with optofluidic microtubule lasing.". https://doi.org/10.1515/nanoph-2022-0208.

Harvard

al, N. P. E. 2022, High-sensitive and disposable myocardial infarction biomarker immunosensor with optofluidic microtubule lasing, Wiley, available at: https://doi.org/10.1515/nanoph-2022-0208 [Accessed 5 Aug. 2026].

Share and print

Save the record, copy its permanent link, or print it as a PDF.

Export reference

You can export the record in common formats for use in a reference manager.

Resource details

Bibliographic information to help confirm that this is the correct material.

Title
High-sensitive and disposable myocardial infarction biomarker immunosensor with optofluidic microtubule lasing
Author / contributors
Niu Panpan et al
Publisher
Wiley
Publication year
2022
ISSN
2192-8614
ISSN
2192-8614
Language
English

Subjects

Explore related resources through these subjects.

Copied