Semiconductor quantum dots as fluorescent probes for <i>in vitro</i> and <i>in vivo</i> bio-molecular and cellular imaging

Sarwat Rizvi, Shirin Ghaderi, Mo Keshtgar, Alexander M. Seifalian

Nano Reviews · 2010 · 142 citations · 58 references

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TL;DR

Biological imaging has progressed to nanometre resolution through functionalised nanoparticles, and quantum dots—luminescent semiconductor nanocrystals—present a promising next‑generation fluorophore for cellular and molecular studies. This paper reviews the fundamentals of quantum dots and their application as fluorescent probes. It examines how QDs are synthesized, functionalised, and their optical properties that facilitate imaging. The review highlights potential clinical applications of QDs and outlines the limitations that must be addressed.

Abstract

Over the years, biological imaging has seen many advances, allowing scientists to unfold many of the mysteries surrounding biological processes. The ideal imaging resolution would be in nanometres, as most biological processes occur at this scale. Nanotechnology has made this possible with functionalised nanoparticles that can bind to specific targets and trace processes at the cellular and molecular level. Quantum dots (QDs) or semiconductor nanocrystals are luminescent particles that have the potential to be the next generation fluorophores. This paper is an overview of the basics of QDs and their role as fluorescent probes for various biological imaging applications. Their potential clinical applications and the limitations that need to be overcome have also been discussed.

References

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