Abstract
This investigation presents an overview of various optical biosensors utilized for the detection of cancer cells. It covers a comprehensive range of technologies, including surface plasmon resonance (Formula presented.) sensors, which exploit changes in refractive index (Formula presented.) at the sensor surface to detect biomolecular interactions. Localized surface plasmon resonance (Formula presented.) sensors offer high sensitivity and versatility in detecting cancer biomarkers. Colorimetric sensors, based on color changes induced via specific biochemical reactions, provide a cost-effective and simple approach to cancer detection. Sensors based on fluorescence work using the light emitted from fluorescent molecules detect cancer-specific targets with specificity and high sensitivity. Photonics and waveguide sensors utilize optical waveguides to detect changes in light propagation, offering real-time and label-free detection of cancer biomarkers. Raman spectroscopy-based sensors utilize surface-enhanced Raman scattering (Formula presented.) to provide molecular fingerprint information for cancer diagnosis. Lastly, fiber optic sensors offer flexibility and miniaturization, making them suitable for in vivo and point-of-care applications in cancer detection. This study provides insights into the principles, applications, and advancements of these optical biosensors in cancer diagnostics, highlighting their potential in improving early detection and patient outcomes.
| Original language | English |
|---|---|
| Article number | 292 |
| Journal | Biosensors |
| Volume | 15 |
| Issue number | 5 |
| DOIs | |
| State | Published - 5 May 2025 |
| Externally published | Yes |
Bibliographical note
Publisher Copyright:© 2025 by the authors.
UN SDGs
This output contributes to the following UN Sustainable Development Goals (SDGs)
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SDG 3 Good Health and Well-being
Keywords
- LSPR sensors
- SERS
- SPR sensors
- colorimetric sensors
- fiber optic sensors
- fluorescence-based sensors
- photonics and waveguide sensors
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