Fluorescent Nanosensors

Fluorescent nanosensors are nanoscale devices that detect chemical or biological targets through measurable changes in fluorescence, enabling sensitive analysis in complex environments. They typically combine a fluorescent material with a recognition element that binds a specific analyte, altering fluorescence intensity, wavelength, or lifetime through mechanisms such as energy transfer, quenching, or aggregation. In bioengineering, these sensors support real-time monitoring of ions, metabolites, pH, and disease-related biomarkers in cells, tissues, and engineered biological systems. Their small size and optical readout can improve spatial resolution while minimizing sample disruption, advancing diagnostics, therapeutic monitoring, and the study of dynamic cellular processes.

Fluorescent Nanosensors - Related Videos

Research

JoVE EoE - Immunodiagnostics

Detecting Bacterial Contamination Using Magneto-fluorescent Nanosensors

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2025

This video demonstrates a technique to detect bacterial contaminants in food and water samples using nanosensors. The target pathogenic bacteria are detected through a combination of magnetic relaxation and fluorescence emission modalities.

Foodborne Pathogen Screening Using Magneto-fluorescent Nanosensor: Rapid Detection of E. Coli O157:H7

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Cited by 14 •

2017

The overall goal of this protocol is to synthesize functional nanosensors for the portable, cost-effective, and rapid detection of specifically targeted pathogenic bacteria through a combination of magnetic relaxation and fluorescence emission modalities.

Research

JoVE Journal - Bioengineering
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Fluorescent Nanoparticles for the Measurement of Ion Concentration in Biological Systems

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Cited by 24 •

2011

Fluorescent nanoparticles produced in our lab are used for imaging ion concentrations and ion fluxes in biological systems such as cells during signaling and interstitial fluid during physiological homeostasis.

Nanosensors to Detect Protease Activity In Vivo for Noninvasive Diagnostics

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Cited by 9 •

2018

Proteases are tightly regulated enzymes involved in fundamental biological processes, and dysregulated protease activity drives progression of complex diseases such as cancer. This method's goal is to create nanosensors that measure protease activity in vivo by producing a cleavage signal that is detectable from host urine and discriminates disease.

In vivo Near Infrared Fluorescence (NIRF) Intravascular Molecular Imaging of Inflammatory Plaque, a Multimodal Approach to Imaging of Atherosclerosis

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Cited by 32 •

2011

We detail a new near-infrared fluorescence (NIRF) catheter for 2-dimensional intravascular molecular imaging of plaque biology in vivo. The NIRF catheter can visualize key biological processes such as inflammation by reporting on the presence of plaque-avid activatable and targeted NIR fluorochromes. The catheter utilizes clinical engineering and power requirements and is targeted for application in human coronary arteries. The following research study describes a multimodal imaging strategy...

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