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Differentiating and quantifying exosome secretion from a single cell using quasi-bound states in the continuum

Ndao Abdoulaye et al · Wiley · 2020

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One of the key challenges in biology is to understand how individual cells process information and respond to perturbations. However, most of the existing single-cell analysis methods can only provide a glimpse of cell properties at specific time points and are unable to provide cell secretion and protein analysis at single-cell resolution. To address the limits of existing methods and to accelerate discoveries from single-cell studies, we propose and experimentally demonstrate a new sensor based on bound states in the continuum to quantify exosome secretion from a single cell. Our optical sensors demonstrate high-sensitivity refractive index detection. Because of the strong overlap between the medium supporting the mode and the analytes, such an optical cavity has a figure of merit of 677 and sensitivity of 440 nm/RIU. Such results facilitate technological progress for highly conducive optical sensors for different biomedical applications.

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APA 7

al, N. A. E. (2020). Differentiating and quantifying exosome secretion from a single cell using quasi-bound states in the continuum. https://doi.org/10.1515/nanoph-2020-0008

MLA

al, Ndao Abdoulaye et. "Differentiating and quantifying exosome secretion from a single cell using quasi-bound states in the continuum." 2020. https://doi.org/10.1515/nanoph-2020-0008.

Chicago

al, Ndao Abdoulaye et. 2020. "Differentiating and quantifying exosome secretion from a single cell using quasi-bound states in the continuum.". https://doi.org/10.1515/nanoph-2020-0008.

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al, N. A. E. 2020, Differentiating and quantifying exosome secretion from a single cell using quasi-bound states in the continuum, Wiley, available at: https://doi.org/10.1515/nanoph-2020-0008 [Accessed 29 Jun. 2026].

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Título
Differentiating and quantifying exosome secretion from a single cell using quasi-bound states in the continuum
Autor / colaboradores
Ndao Abdoulaye et al
Editorial
Wiley
Año de publicación
2020
ISSN
2192-8606
ISSN
2192-8606
Idioma
eng

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